CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Music

Music therapy is the clinical and evidence-based use of music interventions to accomplish individualized goals within a therapeutic relationship by a credentialed professional who has completed an approved music therapy program. Music therapy is one of the expressive therapies, consisting of a process in which a music therapist uses music and all of its facets—physical, emotional, mental, social, aesthetic, and spiritual—to help clients improve their physical and mental health. Music therapists primarily help clients improve their health in several domains, such as cognitive functioning, motor skills, emotional development, social skills, and quality of life by using both active and passive music experiences such as free improvisation, song, dance, listening, and discussion of music to achieve treatment goals. There is a wide qualitative and quantitative research literature base which incorporates clinical therapy, psychotherapy, biomusicology, musical acoustics, music theory, psychoacoustics, embodied music cognition, aesthetics of music, sensory integration, and comparative musicology.

Some commonly found practices include developmental work (communication, motor skills, etc.) with individuals with special needs, songwriting and listening in reminiscence/orientation work with the elderly, processing and relaxation work, and rhythmic entrainment for physical rehabilitation in stroke victims. Music therapy is also used in some medical hospitals, cancer centers, schools, alcohol and drug recovery programs, psychiatric hospitals, and correctional facilities "About Music Therapy & AMTA". American Music Therapy Association, 2011. November 9, 2011.

Music therapy comes in two different forms: active and receptive. In active therapy, the therapist and patient actively participate in creating music with instruments, their voice, or other objects. This allows for the patient to be creative and expressive through the art of music. Receptive therapy takes place in a more relaxed setting where the therapist plays or makes music to the patient who is free to draw, listen or meditate. Usually the therapist determines the method unless specifically requested by the patient.

Music has been found to be an effective tool for music therapists through extensive research. It is beneficial for any individual, both physically and mentally, through improved heart rate, reduced anxiety, stimulation of the brain, and improved learning. Music therapists use their techniques to help their patients in many areas, ranging from stress relief before and after surgeries, to neuropathologies such as Alzheimer's disease. One study found that children who listened to music while having an IV inserted into their arms showed less distress and felt less pain than the children who did not listen to music while having an IV inserted. Studies have been carried out on patients diagnosed different mental disorders such as anxiety, depression and schizophrenia and there has been a visible improvement in their mental health after the therapy.

Approaches used in music therapy that have emerged from the field of music education include Orff-Schulwerk (Orff), Dalcroze Eurhythmics,and Kodály Method. Models that developed directly out of music therapy are neurologic music therapy (NMT), Nordoff-Robbins music therapy and the Bonny method of guided imagery and music.

Music therapists may work with individuals who have behavioral-emotional disorders. To meet the needs of this population, music therapists have taken current psychological theories and used them as a basis for different types of music therapy. Different models include behavioral therapy, cognitive behavioral therapy, and psychodynamic therapy. The therapist has an ongoing responsibility to evaluate the extent to which the client is achieving the goals of therapy and whether the methods of therapy being used are helping or hindering the client.

One therapy model based on neuroscience, called "neurological music therapy" (NMT), is "based on a neuroscience model of music perception and production, and the influence of music on functional changes in non-musical brain and behavior functions". In other words, NMT studies how the brain is without music, how the brain is with music, measures the differences, and uses these differences to cause changes in the brain through music that will eventually affect the client non-musically. As Michael Thaut put it: "The brain that engages in music is changed by engaging in music." NMT trains motor responses (i.e. tapping foot or fingers, head movement, etc.) to better help clients develop motor skills that help "entrain the timing of muscle activation patterns".

  • Music as an Adjunct to Opioid-Based Analgesia.

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    Abstract Title:

    Music as an Adjunct to Opioid-Based Analgesia.

    Abstract Source:

    J Med Toxicol. 2017 Jun 23. Epub 2017 Jun 23. PMID: 28646359

    Abstract Author(s):

    Peter R Chai, Stephanie Carreiro, Megan L Ranney, Ketki Karanam, Marko Ahtisaari, Robert Edwards, Kristin L Schreiber, Lubabah Ben-Ghaly, Timothy B Erickson, Edward W Boyer

    Article Affiliation:

    Peter R Chai

    Abstract:

    Epidemic increases in opioid use in the USA and globally highlight the need for effective adjunctive therapies to opioid-based analgesia. Given the shortcomings of behavioral adjuncts to opioid-based pain treatment, an urgent need exists for pain-related behavioral interventions that resonate with broad patient populations, can be delivered confidentially in any environment, and can incorporate new content automatically. Understanding the potential for automated behavioral therapies like music therapy in modulating the experience of pain may unlock methods to transition patients to lower doses of pharmacologic therapy or provide alternatives to opioids during acute exacerbations of pain. This manuscript describes the neurologic mechanism of action, theoretical basis, and potential applications of personalized music as a smartphone-based mHealth intervention for acute and chronic pain management.

  • Music Attenuated a Decrease in Parasympathetic Nervous System Activity after Exercise📎

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    Abstract Title:

    Music Attenuated a Decrease in Parasympathetic Nervous System Activity after Exercise.

    Abstract Source:

    PLoS One. 2016 ;11(2):e0148648. Epub 2016 Feb 3. PMID: 26840532

    Abstract Author(s):

    Tiantian Jia, Yoshiko Ogawa, Misa Miura, Osamu Ito, Masahiro Kohzuki

    Article Affiliation:

    Tiantian Jia

    Abstract:

    Music and exercise can both affect autonomic nervous system activity. However, the effects of the combination of music and exercise on autonomic activity are poorly understood. Additionally, it remains unknown whether music affects post-exercise orthostatic tolerance. The aim of this study was to evaluate the effects of music on autonomic nervous system activity in orthostatic tolerance after exercise. Twenty-six healthy graduate students participated in four sessions in a random order on four separate days: a sedentary session, a music session, a bicycling session, and a bicycling with music session. Participants were asked to listen to their favorite music and to exercise on a cycle ergometer. We evaluated autonomic nervous system activity before and after each session using frequency analysis of heart rate variability. High frequency power, an index of parasympathetic nervous system activity, was significantly increased in the music session. Heart rate was increased, and high frequency power was decreased, in the bicycling session. There was no significant difference in high frequency power before and after the bicycling with music session, although heart rate was significantly increased. Additionally, both music and exercise did not significantly affect heart rate, systolic blood pressure or also heart rate variability indices in the orthostatic test. These data suggest that music increased parasympathetic activity and attenuated the exercise-induced decrease in parasympathetic activity without altering the orthostatic tolerance after exercise. Therefore, music may be an effective approach for improving post-exercise parasympathetic reactivation, resulting in a faster recovery and a reduction in cardiac stress after exercise.

  • Music during caesarean section under regional anaesthesia for improving maternal and infant outcomes.

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    Abstract Title:

    Music during caesarean section under regional anaesthesia for improving maternal and infant outcomes.

    Abstract Source:

    Cochrane Database Syst Rev. 2009 Apr 15;(2):CD006914. PMID: 19370660

    Abstract Author(s):

    Malinee Laopaiboon, Pisake Lumbiganon, Ruth Martis, Patravoot Vatanasapt, Busaba Somjaivong

    Abstract:

    BACKGROUND: Evidence on the benefits of music during caesarean section under regional anaesthesia to improve clinical and psychological outcomes for mothers and infants has not been established. OBJECTIVES: To evaluate the effectiveness of music during caesarean section under regional anaesthesia for improving clinical and psychological outcomes for mothers and infants. SEARCH STRATEGY: We searched the Cochrane Pregnancy and Childbirth Group's Trials Register (30 September 2008). SELECTION CRITERIA: We included randomised controlled trials comparing music added to standard care during caesarean section under regional anaesthesia to standard care alone. DATA COLLECTION AND ANALYSIS: Two review authors, Malinee Laopaiboon and Ruth Martis, independently assessed eligibility, risk of bias in included trials and extracted data. We analysed continuous outcomes using a mean difference (MD) with a 95% confidence interval (CI). MAIN RESULTS: One trial involving 76 women who planned to have their babies delivered by caesarean section met the inclusion criteria, but data were available for only 64 women. This trial was of low quality with unclear allocation concealment and only a few main clinical outcomes reported for the women. The trial did not report any infant outcomes. It appears that music added to standard care during caesarean section under regional anaesthesia had some impact on pulse rate at the end of maternal contact with the neonate in the intra-operative period (MD -7.50 fewer beats per minute, 95% CI -14.08 to -0.92) and after completion of skin suture for the caesarean section (MD -7.37 fewer beats per minute, 95% CI -13.37 to -1.37). There was also an improvement in the birth satisfaction score (maximum possible score of 35) (MD of 3.38, 95%CI 1.59 to 5.17). Effects on other outcomes were either not significant or not reported in the one included trial. AUTHORS' CONCLUSIONS: The findings indicate that music during planned caesarean section under regional anaesthesia may improve pulse rate and birth satisfaction score. However, the magnitude of these benefits is small and the methodological quality of the one included trial is questionable. Therefore, the clinical significance of music is unclear. More research is needed to investigate the effects of music during caesarean section under regional anaesthesia on both maternal and infant outcomes, in various ethnic pregnant women, and with adequate sample sizes.

  • Music facilitate the neurogenesis, regeneration and repair of neurons.

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    Abstract Title:

    Music facilitate the neurogenesis, regeneration and repair of neurons.

    Abstract Source:

    Med Hypotheses. 2008 Nov;71(5):765-9. Epub 2008 Aug 8. PMID: 18692321

    Abstract Author(s):

    Hajime Fukui, Kumiko Toyoshima

    Abstract:

    Experience has shown that therapy using music for therapeutic purposes has certain effects on neuropsychiatric disorders (both functional and organic disorders). However, the mechanisms of action underlying music therapy remain unknown, and scientific clarification has not advanced. While that study disproved the Mozart effect, the effects of music on the human body and mind were not disproved. In fact, more scientific studies on music have been conducted in recent years, mainly in the field of neuroscience, and the level of interest among researchers is increasing. The results of past studies have clarified that music influences and affects cranial nerves in humans from fetus to adult. The effects of music at a cellular level have not been clarified, and the mechanisms of action for the effects of music on the brain have not been elucidated. We propose that listening to music facilitates the neurogenesis, the regeneration and repair of cerebral nerves by adjusting the secretion of steroid hormones, ultimately leading to cerebral plasticity. Music affects levels of such steroids as cortisol (C), testosterone (T) and estrogen (E), and we believe that music also affects the receptor genes related to these substances, and related proteins. In the prevention of Alzheimer's disease and dementia, hormone replacement therapy has been shown to be effective, but at the same time, side effects have been documented, and the clinical application of hormone replacement therapy is facing a serious challenge. Conversely, music is noninvasive, and its existence is universal and mundane. Thus, if music can be used in medical care, the application of such a safe and inexpensive therapeutic option is limitless.

  • Music for stress and anxiety reduction in coronary heart disease patients. 📎

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    Abstract Title:

    Music for stress and anxiety reduction in coronary heart disease patients.

    Abstract Source:

    Cochrane Database Syst Rev. 2013 Dec 28(12):CD006577. Epub 2013 Dec 28. PMID: 24374731

    Abstract Author(s):

    Joke Bradt, Cheryl Dileo, Noah Potvin

    Article Affiliation:

    Joke Bradt

    Abstract:

    BACKGROUND:Individuals with coronary heart disease (CHD) often suffer from severe distress due to diagnosis, hospitalization, surgical procedures, uncertainty of outcome, fear of dying, doubts about progress in recovery, helplessness and loss of control. Such adverse effects put the cardiac patient at greater risk for complications, including sudden cardiac death. It is therefore of crucial importance that the care of people with CHD focuses on psychological as well as physiological needs.Music interventions have been used to reduce anxiety and distress and improve physiological functioning in medical patients; however its efficacy for people with CHD needs to be evaluated.

    OBJECTIVES:To update the previously published review that examined the effects of music interventions with standard care versus standard care alone on psychological and physiological responses in persons with CHD.

    SEARCH METHODS:We searched the Cochrane Central Register of Controlled Trials (CENTRAL) on The Cochrane Library (2012, Issue 10), MEDLINE (OvidSP, 1950 to October week 4 2012), EMBASE (OvidSP, 1974 to October week 5 2012), CINAHL (EBSCOhost, 1982 to 9 November 2012), PsycINFO (OvidSP, 1806 to October week 5 2012), LILACS (Virtual Health Library, 1982 to 15 November 2012), Social Science Citation Index (ISI, 1974 to 9 November 2012), a number of other databases, and clinical trial registers. We also conducted handsearching of journals and reference lists. We applied no language restrictions.

    SELECTION CRITERIA:We included all randomized controlled trials and quasi-randomized trials that compared music interventions and standard care with standard care alone for persons with confirmed CHD.

    DATA COLLECTION AND ANALYSIS:Two review authors independently extracted data and assessed methodological quality, seeking additional information from the trial researchers when necessary. We present results using weighted mean differences for outcomes measured by the same scale, and standardized mean differences for outcomes measured by different scales. We used post-intervention scores. In cases of significant baseline difference, we used change scores (changes from baseline).

    MAIN RESULTS:We identified four new trials for this update. In total, the evidence for this review rests on 26 trials (1369 participants). Listening to music was the main intervention used, and 23 of the studies did not include a trained music therapist.Results indicate that music interventions have a small beneficial effect on psychological distress in people with CHD and this effect is consistent across studies (MD = -1.26, 95% CI -2.30 to -0.22, P = 0.02, I² = 0%). Listening to music has a moderate effect on anxiety in people with CHD; however results were inconsistent across studies (SMD = -0.70, 95% CI -1.17 to -0.22, P = 0.004, I² = 77%). Studies that used music interventions in people with myocardial infarction found more consistent anxiety-reducing effects of music, with an average anxiety reduction of 5.87 units on a 20 to 80 point score range (95% CI -7.99 to -3.75, P<0.00001, I² = 53%). Furthermore, studies that used patient-selected music resulted in greater anxiety-reducing effects that were consistent across studies (SMD = -0.89, 95% CI -1.42 to -0.36, P = 0.001, I² = 48%). Findings indicate that listening to music reduces heart rate (MD = -3.40, 95% CI -6.12 to -0.69, P = 0.01), respiratory rate (MD = -2.50, 95% CI -3.61 to -1.39, P<0.00001) and systolic blood pressure (MD = -5.52 mmHg, 95% CI - 7.43 to -3.60, P<0.00001). Studies that included two or more music sessions led to a small and consistent pain-reducing effect (SMD = -0.27, 95% CI -0.55 to -0.00, P = 0.05). The results also suggest that listening to music may improve patients' quality of sleep following a cardiac procedure or surgery (SMD = 0.91, 95% CI 0.03 to 1.79, P = 0.04).We found no strong evidence for heart rate variability and depression. Only one study considered hormone levels and quality of life as an outcome variable. A small number of studies pointed to a possible beneficial effect of music on opioid intake after cardiac procedures or surgery, but more research is needed to strengthen this evidence.

    AUTHORS' CONCLUSIONS:This systematic review indicates that listening to music may have a beneficial effect on anxiety in persons with CHD, especially those with a myocardial infarction. Anxiety-reducing effects appear to be greatest when people are given a choice of which music to listen to.Furthermore, listening to music may have a beneficial effect on systolic blood pressure, heart rate, respiratory rate, quality of sleep and pain in persons with CHD. However, the clinical significance of these findings is unclear. Since many of the studies are at high risk of bias, these findings need to be interpreted with caution. More research is needed into the effects of music interventions offered by a trained music therapist.

  • Music improves sleep quality in older adults.

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    Abstract Title:

    Music improves sleep quality in older adults.

    Abstract Source:

    J Adv Nurs. 2005 Feb;49(3):234-44. PMID: 15660547

    Abstract Author(s):

    Hui-Ling Lai, Marion Good

    Article Affiliation:

    Community Health Center, Buddhist Tzu-Chi General Hospital, Hualien, Taiwan, ROC.

    Abstract:

    AIM: The aim of this paper is to report an investigation of the effects of soft music on sleep quality in older community-dwelling men and women in Taiwan. BACKGROUND: Sleep is a complex rhythmic state that may be affected by the ageing process. Few studies have focused on the effects of music, a non-pharmacological method of improving the quality of sleep in older adults. METHOD: A randomized controlled trial was used with a two-group repeated measures design. Sixty people aged 60-83 years with difficulty in sleeping were recruited through community leaders and screened using the Pittsburgh Sleep Quality Index (PSQI) and Epworth Sleepiness Scale. Those reporting depression, cognitive impairment, medical or environmental problems that might interfere with sleep; and those who used sleeping medications, meditation, or caffeine at bedtime were excluded. Participants listened to their choice among six 45-minute sedative music tapes at bedtime for 3 weeks. There were five types of Western and one of Chinese music. Sleep quality was measured with the PSQI before the study and at three weekly post-tests. Groups were comparable on demographic variables, anxiety, depressive symptoms, physical activity, bedtime routine, herbal tea use, napping, pain, and pretest overall sleep quality. RESULTS: Music resulted in significantly better sleep quality in the experimental group, as well as significantly better components of sleep quality: better perceived sleep quality, longer sleep duration, greater sleep efficiency, shorter sleep latency, less sleep disturbance and less daytime dysfunction (P = 0.04-0.001). Sleep improved weekly, indicating a cumulative dose effect. CONCLUSION: The findings provide evidence for the use of soothing music as an empirically-based intervention for sleep in older people.

  • Music improves sleep quality in students.

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    Abstract Title:

    Music improves sleep quality in students.

    Abstract Source:

    J Adv Nurs. 2008 May;62(3):327-35. PMID: 18426457

    Abstract Author(s):

    László Harmat, Johanna Takács, Róbert Bódizs

    Abstract:

    AIM: This paper is a report of a study to investigate the effects of music on sleep quality in young participants with poor sleep. BACKGROUND: Sleep disorders may result in fatigue, tiredness, depression and problems in daytime functioning. Music can reduce sympathetic nervous system activity, decrease anxiety, blood pressure, heart and respiratory rate and may have positive effects on sleep via muscle relaxation and distraction from thoughts. Control groups have not been used in most previous studies. METHODS: We used a three-group repeated measures design. Ninety-four students (aged between 19 and 28 years) with sleep complaints were studied in 2006. Participants listened for 45 minutes either to relaxing classical music (Group 1) or an audiobook (Group 2) at bedtime for 3 weeks. The control group (Group 3) received no intervention. Sleep quality was measured using the Pittsburg Sleep Quality Index before the study and weekly during the intervention. Depressive symptoms in experimental group participants were measured using the Beck Depression Inventory. RESULTS: Repeated measures anova revealed a main effect of TIME (P < 0.0001) and an interaction between TIME and GROUPS (P < 0.0001). Post hoc tests with Bonferroni correction showed that music statistically significantly improved sleep quality (P < 0.0001). Sleep quality did not improve statistically significantly in the audiobook and the control group. Depressive symptoms decreased statistically significantly in the music group (P < 0.0001), but not in the group listening to audiobooks. CONCLUSION: Relaxing classical music is an effective intervention in reducing sleeping problems. Nurses could use this safe, cheap and easy to learn method to treat insomnia.

  • Music Intervention Leads to Increased Insular Connectivity and Improved Clinical Symptoms in Schizophrenia. 📎

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    Abstract Title:

    Music Intervention Leads to Increased Insular Connectivity and Improved Clinical Symptoms in Schizophrenia.

    Abstract Source:

    Front Neurosci. 2017 ;11:744. Epub 2018 Jan 23. PMID: 29410607

    Abstract Author(s):

    Hui He, Mi Yang, Mingjun Duan, Xi Chen, Yongxiu Lai, Yang Xia, Junming Shao, Bharat B Biswal, Cheng Luo, Dezhong Yao

    Article Affiliation:

    Hui He

    Abstract:

    Schizophrenia is a syndrome that is typically accompanied by delusions and hallucinations that might be associated with insular pathology. Music intervention, as a complementary therapy, is commonly used to improve psychiatric symptoms in the maintenance stage of schizophrenia. In this study, we employed a longitudinal design to assess the effects of listening to Mozart music on the insular functional connectivity (FC) in patients with schizophrenia. Thirty-six schizophrenia patients were randomly divided into two equal groups as follows: the music intervention (MTSZ) group, which received a 1-month music intervention series combined with antipsychotic drugs, and the no-music intervention (UMTSZ) group, which was treated solely with antipsychotic drugs. Resting-state functional magnetic resonance imaging (fMRI) scans were performed at the following three timepoints: baseline, 1 month after baseline and 6 months after baseline. Nineteen healthy participants were recruited as controls. An FC analysis seeded in the insular subregions and machine learning techniques were used to examine intervention-related changes. After 1 month of listening to Mozart music, the MTSZ showed increased FC in the dorsal anterior insula (dAI) and posterior insular (PI) networks, including the dAI-ACC, PI-pre/postcentral cortices, and PI-ACC connectivity. However, these enhanced FCs had vanished in follow-up visits after 6 months. Additionally, a support vector regression on the FC of the dAI-ACC at baseline yielded a significant prediction of relative symptom remission in response to music intervention. Furthermore, the validation analyses revealed that 1 month of music intervention could facilitate improvement of the insular FC in schizophrenia. Together, these findings revealed that the insular cortex could potentially be an important region in music intervention for patients with schizophrenia, thus improving the patients' psychiatric symptoms through normalizing the salience and sensorimotor networks.

  • Music interventions for improving psychological and physical outcomes in cancer patients. 📎

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    Abstract Title:

    Music interventions for improving psychological and physical outcomes in cancer patients.

    Abstract Source:

    Cochrane Database Syst Rev. 2016 ;8:CD006911. Epub 2016 Aug 15. PMID: 27524661

    Abstract Author(s):

    Joke Bradt, Cheryl Dileo, Lucanne Magill, Aaron Teague

    Article Affiliation:

    Joke Bradt

    Abstract:

    BACKGROUND:Having cancer may result in extensive emotional, physical and social suffering. Music interventions have been used to alleviate symptoms and treatment side effects in cancer patients.

    OBJECTIVES:To assess and compare the effects of music therapy and music medicine interventions for psychological and physical outcomes in people with cancer.

    SEARCH METHODS:We searched the Cochrane Central Register of Controlled Trials (CENTRAL) (2016, Issue 1), MEDLINE, Embase, CINAHL, PsycINFO, LILACS, Science Citation Index, CancerLit, CAIRSS, Proquest Digital Dissertations, ClinicalTrials.gov, Current Controlled Trials, the RILM Abstracts of Music Literature, http://www.wfmt.info/Musictherapyworld/ and the National Research Register. We searched all databases, except for the last two, from their inception to January 2016; the other two are no longer functional, so we searched them until their termination date. We handsearched music therapy journals, reviewed reference lists and contacted experts. There was no language restriction.

    SELECTION CRITERIA:We included all randomized and quasi-randomized controlled trials of music interventions for improving psychological and physical outcomes in adult and pediatric patients with cancer. We excluded participants undergoing biopsy and aspiration for diagnostic purposes.

    DATA COLLECTION AND ANALYSIS:Two review authors independently extracted the data and assessed the risk of bias. Where possible, we presented results in meta-analyses using mean differences and standardized mean differences. We used post-test scores. In cases of significant baseline difference, we used change scores.

    MAIN RESULTS:We identified 22 new trials for inclusion in this update. In total, the evidence of this review rests on 52 trials with a total of 3731 participants. We included music therapy interventions offered by trained music therapists, as well as music medicine interventions, which are defined as listening to pre-recorded music, offered by medical staff. We categorized 23 trials as music therapy trials and 29 as music medicine trials.The results suggest that music interventions may have a beneficial effect on anxiety in people with cancer, with a reported average anxiety reduction of 8.54 units (95% confidence interval (CI) -12.04 to -5.05, P<0.0001) on the Spielberger State Anxiety Inventory - State Anxiety (STAI-S) scale (range 20 to 80) and -0.71 standardized units (13 studies, 1028 participants; 95% CI -0.98 to -0.43, P<0.00001; low quality evidence) on other anxiety scales, a moderate to strong effect. Results also suggested a moderately strong, positive impact on depression (7 studies, 723 participants; standardized mean difference (SMD): -0.40, 95% CI -0.74 to -0.06, P = 0.02; very low quality evidence), but because of the very low quality of the evidence for this outcome, this result needs to be interpreted with caution. We found no support for an effect of music interventions on mood or distress.Music interventions may lead to small reductions in heart rate, respiratory rate and blood pressure but do not appear to impact oxygen saturation level. We found a large pain-reducing effect (7 studies, 528 participants; SMD: -0.91, 95% CI -1.46 to -0.36, P = 0.001, low quality evidence). In addition, music interventions had a small to moderate treatment effect on fatigue (6 studies, 253 participants; SMD: -0.38, 95% CI -0.72 to -0.04, P = 0.03; low quality evidence), but we did not find strong evidence for improvement in physical functioning.The results suggest a large effect of music interventions on patients' quality of life (QoL), but the results were highly inconsistent across studies, and the pooled effect size for the music medicine and music therapy studies was accompanied by a large confidence interval (SMD: 0.98, 95% CI -0.36 to 2.33, P = 0.15, low quality evidence). A comparison between music therapy and music medicine interventions suggests a moderate effect of music therapy interventions for patients' quality of life (QoL) (3 studies, 132 participants; SMD: 0.42, 95% CI 0.06 to 0.78, P = 0.02; very low quality evidence), but we found no evidence of an effect for music medicine interventions. A comparison between music therapy and music medicine studies was also possible for anxiety, depression and mood, but we found no difference between the two types of interventions for these outcomes.The results of single studies suggest that music listening may reduce the need for anesthetics and analgesics as well as decrease recovery time and duration of hospitalization, but more research is needed for these outcomes.We could not draw any conclusions regarding the effect of music interventions on immunologic functioning, coping, resilience or communication outcomes because either we could not pool the results of the studies that included these outcomes or we could only identify one trial. For spiritual well-being, we found no evidence of an effect in adolescents or young adults, and we could not draw any conclusions in adults.The majority of studies included in this review update presented a high risk of bias, and therefore the quality of evidence is low.

    AUTHORS' CONCLUSIONS:This systematic review indicates that music interventions may have beneficial effects on anxiety, pain, fatigue and QoL in people with cancer. Furthermore, music may have a small effect on heart rate, respiratory rate and blood pressure. Most trials were at high risk of bias and, therefore, these results need to be interpreted with caution.

  • Music listening enhances cognitive recovery and mood after middle cerebral artery stroke. 📎

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    Abstract Title:

    Music listening enhances cognitive recovery and mood after middle cerebral artery stroke.

    Abstract Source:

    Brain. 2008 Mar;131(Pt 3):866-76. PMID: 18287122

    Abstract Author(s):

    Teppo Särkämö, Mari Tervaniemi, Sari Laitinen, Anita Forsblom, Seppo Soinila, Mikko Mikkonen, Taina Autti, Heli M Silvennoinen, Jaakko Erkkilä, Matti Laine, Isabelle Peretz, Marja Hietanen

    Abstract:

    We know from animal studies that a stimulating and enriched environment can enhance recovery after stroke, but little is known about the effects of an enriched sound environment on recovery from neural damage in humans. In humans, music listening activates a wide-spread bilateral network of brain regions related to attention, semantic processing, memory, motor functions, and emotional processing. Music exposure also enhances emotional and cognitive functioning in healthy subjects and in various clinical patient groups. The potential role of music in neurological rehabilitation, however, has not been systematically investigated. This single-blind, randomized, and controlled trial was designed to determine whether everyday music listening can facilitate the recovery of cognitive functions and mood after stroke. In the acute recovery phase, 60 patients with a left or right hemisphere middle cerebral artery (MCA) stroke were randomly assigned to a music group, a language group, or a control group. During the following two months, the music and language groups listened daily to self-selected music or audio books, respectively, while the control group received no listening material. In addition, all patients received standard medical care and rehabilitation. All patients underwent an extensive neuropsychological assessment, which included a wide range of cognitive tests as well as mood and quality of life questionnaires, one week (baseline), 3 months, and 6 months after the stroke. Fifty-four patients completed the study. Results showed that recovery in the domains of verbal memory and focused attention improved significantly more in the music group than in the language and control groups. The music group also experienced less depressed and confused mood than the control group. These findings demonstrate for the first time that music listening during the early post-stroke stage can enhance cognitive recovery and prevent negative mood. The neural mechanisms potentially underlying these effects are discussed.

  • Music making as a tool for promoting brain plasticity across the life span. 📎

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    Abstract Title:

    Music making as a tool for promoting brain plasticity across the life span.

    Abstract Source:

    J Agric Food Chem. 1999 Mar;47(3):840-4. PMID: 20889966

    Abstract Author(s):

    Catherine Y Wan, Gottfried Schlaug

    Article Affiliation:

    Department of Neurology, Music and Neuroimaging Laboratory, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, Massachusetts 02215, USA.

    Abstract:

    Playing a musical instrument is an intense, multisensory, and motor experience that usually commences at an early age and requires the acquisition and maintenance of a range of skills over the course of a musician's lifetime. Thus, musicians offer an excellent human model for studying the brain effects of acquiring specialized sensorimotor skills. For example, musicians learn and repeatedly practice the association of motor actions with specific sound and visual patterns (musical notation) while receiving continuous multisensory feedback. This association learning can strengthen connections between auditory and motor regions (e.g., arcuate fasciculus) while activating multimodal integration regions (e.g., around the intraparietal sulcus). We argue that training of this neural network may produce cross-modal effects on other behavioral or cognitive operations that draw on this network. Plasticity in this network may explain some of the sensorimotor and cognitive enhancements that have been associated with music training. These enhancements suggest the potential for music making as an interactive treatment or intervention for neurological and developmental disorders, as well as those associated with normal aging.

  • Music therapy and Alzheimer's disease: Cognitive, psychological, and behavioural effects. 📎

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    Abstract Title:

    Music therapy and Alzheimer's disease: Cognitive, psychological, and behavioural effects.

    Abstract Source:

    Neurologia. 2016 Feb 17. Epub 2016 Feb 17. PMID: 26896913

    Abstract Author(s):

    M Gómez Gallego, J Gómez García

    Article Affiliation:

    M Gómez Gallego

    Abstract:

    INTRODUCTION:Music therapy is one of the types of active ageing programmes which are offered to elderly people. The usefulness of this programme in the field of dementia is beginning to be recognised by the scientific community, since studies have reported physical, cognitive, and psychological benefits. Further studies detailing the changes resulting from the use of music therapy with Alzheimer patients are needed.

    OBJECTIVES:Determine the clinical improvement profile of Alzheimer patients who have undergone music therapy.

    PATIENTS AND METHODS:Forty-two patients with mild to moderate Alzheimer disease underwent music therapy for 6 weeks. The changes in results on the Mini-mental State Examination, Neuropsychiatric Inventory, Hospital Anxiety and Depression Scale and Barthel Index scores were studied. We also analysed whether or not these changes were influenced by the degree of dementia severity.

    RESULTS:Significant improvement was observed in memory, orientation, depression and anxiety (HAD scale) in both mild and moderate cases; in anxiety (NPI scale) in mild cases; and in delirium, hallucinations, agitation, irritability, and language disorders in the group with moderate Alzheimer disease. The effect on cognitive measures was appreciable after only 4 music therapy sessions.

    CONCLUSIONS:In the sample studied, music therapy improved some cognitive, psychological, and behavioural alterations in patients with Alzheimer disease. Combining music therapy with dance therapy to improve motor and functional impairment would be an interesting line of research.

  • Music therapy for acquired brain injury.

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    Abstract Title:

    Music therapy for acquired brain injury.

    Abstract Source:

    Cochrane Database Syst Rev. 2010(7):CD006787. Epub 2010 Jul 7. PMID: 20614449

    Abstract Author(s):

    Joke Bradt, Wendy L Magee, Cheryl Dileo, Barbara L Wheeler, Emer McGilloway

    Article Affiliation:

    The Arts and Quality of Life Research Center, Boyer College of Music and Dance, Temple University, Presser Hall, 2001 North 13 Street, Philadelphia, USA.

    Abstract:

    BACKGROUND: Acquired brain injury (ABI) can result in impairments in motor function, language, cognition, sensory processing and emotional disturbances. This may severely reduce a survivor's quality of life. Music therapy has been used in rehabilitation to stimulate brain functions involved in movement, cognition, speech, emotions and sensory perceptions. A systematic review is needed to gauge the efficacy of music therapy as a rehabilitation intervention for people with ABI. OBJECTIVES: To examine the effects of music therapy with standard care versus standard care alone or standard care combined with other therapies on gait, upper extremity function, communication, mood and emotions, social skills, pain, behavioral outcomes, activities of daily living and adverse events. SEARCH STRATEGY: We searched the Cochrane Stroke Group Trials Register (February 2010), the Cochrane Central Register of Controlled Trials (The Cochrane Library Issue 2, 2009), MEDLINE (July 2009), EMBASE (August 2009), CINAHL (March 2010), PsycINFO (July 2009), LILACS (August 2009), AMED (August 2009) and Science Citation Index (August 2009). We handsearched music therapy journals and conference proceedings, searched dissertation and specialist music databases, trials and research registers, reference lists, and contacted experts and music therapy associations. There was no language restriction. SELECTION CRITERIA: Randomized and quasi-randomized controlled trials that compared music therapy interventions and standard care with standard care alone or combined with other therapies for people older than 16 years of age who had acquired brain damage of a non-degenerative nature and were participating in treatment programs offered in hospital, outpatient or community settings. DATA COLLECTION AND ANALYSIS: Two review authors independently assessed methodological quality and extracted data. We present results using mean differences (using post-test scores) as all outcomes were measured with the same scale. MAIN RESULTS: We included seven studies (184 participants). The results suggest that rhythmic auditory stimulation (RAS) may be beneficial for improving gait parameters in stroke patients, including gait velocity, cadence, stride length and gait symmetry. These results were based on two studies that received a low risk of bias score. There were insufficient data to examine the effect of music therapy on other outcomes. AUTHORS' CONCLUSIONS: RAS may be beneficial for gait improvement in people with stroke. These results are encouraging, but more RCTs are needed before recommendations can be made for clinical practice. More research is needed to examine the effects of music therapy on other outcomes in people with ABI.

  • Music therapy for autistic spectrum disorder.

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    Abstract Title:

    Music therapy for autistic spectrum disorder.

    Abstract Source:

    Cochrane Database Syst Rev. 2006(2):CD004381. Epub 2006 Apr 19. PMID: 16625601

    Abstract Author(s):

    C Gold, T Wigram, C Elefant

    Abstract:

    BACKGROUND: The central impairments of people with autistic spectrum disorder (ASD) include social interaction and communication. Music therapy uses music and its elements to enable communication and expression, thus attempting to address some of the core problems of people with ASD. OBJECTIVES: To review the effects of music therapy for individuals with autistic spectrum disorders. SEARCH STRATEGY: The following databases were searched: CENTRAL, 2005, (Issue 3); Medline, (1966 to July 2004); Embase, (1980 to July 2004); LILACS, (1982 to July 2004); PsycINFO, (1872 to July 2004); CINAHL, (1982 to July 2004); ERIC, (1966 to July 2004); ASSIA, (1987 to July 2004); Sociofile, (1963 to July 2004); Dissertation Abstracts International, (late 1960's to July 2004). These searches were supplemented by searching specific sources for music therapy literature and manual searches of reference lists. Personal contacts to some investigators were made. SELECTION CRITERIA: All randomised controlled trials or controlled clinical trials comparing music therapy or music therapy added to standard care to "placebo" therapy, no treatment or standard care. DATA COLLECTION AND ANALYSIS: Studies were independently selected, quality assessed and data extracted by two authors. Continuous outcomes were synthesised using a standardised mean difference (SMD) in order to enable a meta-analysis combining different scales, and to facilitate the interpretation of effect sizes. Heterogeneity was assessed using the I(2) statistic. MAIN RESULTS: Three small studies were included (total n = 24). These examined the short-term effect of brief music therapy interventions (daily sessions over one week) for autistic children. Music therapy was superior to "placebo" therapy with respect to verbal and gestural communicative skills (verbal: 2 RCTs, n = 20, SMD 0.36 CI 0.15 to 0.57; gestural: 2 RCTs, n = 20, SMD 0.50 CI 0.22 to 0.79). Effects on behavioural problems were not significant. AUTHORS' CONCLUSIONS: The included studies were of limited applicability to clinical practice. However, the findings indicate that music therapy may help children with autistic spectrum disorder to improve their communicative skills. More research is needed to examine whether the effects of music therapy are enduring, and to investigate the effects of music therapy in typical clinical practice.

  • Music therapy for dementia and higher cognitive dysfunction: a review

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    Abstract Title:

    [Music therapy for dementia and higher cognitive dysfunction: a review].

    Abstract Source:

    Brain Nerve. 2011 Dec ;63(12):1370-7. PMID: 22147456

    Abstract Author(s):

    Masayuki Satoh

    Article Affiliation:

    Masayuki Satoh

    Abstract:

    Music is known to affect the human mind and body. Music therapy utilizes the effects of music for medical purposes. The history of music therapy is quite long, but only limited evidence supports its usefulness in the treatment of higher cognitive dysfunction. As for dementia, some studies conclude that music therapy is effective for preventing cognitive deterioration and the occurrence of behavioral and psychological symptoms of dementia (BPSD). In patients receiving music therapy for the treatment of higher cognitive dysfunction, aphasia was reported as the most common symptom. Many studies have been conducted to determine whether singing can improve aphasic symptoms: singing familiar and/or unfamiliar songs did not show any positive effect on aphasia. Melodic intonation therapy (MIT) is a method that utilizes melody and rhythm to improve speech output. MIT is a method that is known to have positive effects on aphasic patients. Some studies of music therapy for patients with unilateral spatial neglect; apraxia; hemiparesis; and walking disturbances, including parkinsonian gait, are available in the literature. Studies showed that the symptoms of unilateral spatial neglect and hemiparesis significantly improved when musical instruments were played for several months as a part of the music therapy. Here, I describe my study in which mental singing showed a positive effect on parkinsonian gait. Music is interesting, and every patient can go through training without any pain. Future studies need to be conducted to establish evidence of the positive effects of music therapy on neurological and neuropsychological symptoms.

  • Music therapy for dementia and higher cognitive dysfunction: a review

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    Abstract Title:

    [Music therapy for dementia and higher cognitive dysfunction: a review].

    Abstract Source:

    Brain Nerve. 2011 Dec ;63(12):1370-7. PMID: 22147456

    Abstract Author(s):

    Masayuki Satoh

    Article Affiliation:

    Masayuki Satoh

    Abstract:

    Music is known to affect the human mind and body. Music therapy utilizes the effects of music for medical purposes. The history of music therapy is quite long, but only limited evidence supports its usefulness in the treatment of higher cognitive dysfunction. As for dementia, some studies conclude that music therapy is effective for preventing cognitive deterioration and the occurrence of behavioral and psychological symptoms of dementia (BPSD). In patients receiving music therapy for the treatment of higher cognitive dysfunction, aphasia was reported as the most common symptom. Many studies have been conducted to determine whether singing can improve aphasic symptoms: singing familiar and/or unfamiliar songs did not show any positive effect on aphasia. Melodic intonation therapy (MIT) is a method that utilizes melody and rhythm to improve speech output. MIT is a method that is known to have positive effects on aphasic patients. Some studies of music therapy for patients with unilateral spatial neglect; apraxia; hemiparesis; and walking disturbances, including parkinsonian gait, are available in the literature. Studies showed that the symptoms of unilateral spatial neglect and hemiparesis significantly improved when musical instruments were played for several months as a part of the music therapy. Here, I describe my study in which mental singing showed a positive effect on parkinsonian gait. Music is interesting, and every patient can go through training without any pain. Future studies need to be conducted to establish evidence of the positive effects of music therapy on neurological and neuropsychological symptoms.

  • Music therapy for people with schizophrenia and schizophrenia-like disorders.

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    Abstract Title:

    Music therapy for people with schizophrenia and schizophrenia-like disorders.

    Abstract Source:

    Cochrane Database Syst Rev. 2011 ;12:CD004025. Epub 2011 Dec 7. PMID: 22161383

    Abstract Author(s):

    Karin Mössler, Xijing Chen, Tor Olav Heldal, Christian Gold

    Article Affiliation:

    GAMUT, University of Bergen, Lars Hilles Gt. 3, Bergen, Norway.

    Abstract:

    BACKGROUND:Music therapy is a therapeutic method that uses musical interaction as a means of communication and expression. The aim of the therapy is to help people with serious mental disorders to develop relationships and to address issues they may not be able to using words alone.

    OBJECTIVES:To review the effects of music therapy, or music therapy added to standard care, compared with 'placebo' therapy, standard care or no treatment for people with serious mental disorders such as schizophrenia.

    SEARCH METHODS:We searched the Cochrane Schizophrenia Group Trials Register (December 2010) and supplemented this by contacting relevant study authors, handsearching of music therapy journals and manual searches of reference lists.

    SELECTION CRITERIA:All randomised controlled trials (RCTs) that compared music therapy with standard care, placebo therapy, or no treatment.

    DATA COLLECTION AND ANALYSIS:Studies were reliably selected, quality assessed and data extracted. We excluded data where more than 30% of participants in any group were lost to follow-up. We synthesised non-skewed continuous endpoint data from valid scales using a standardised mean difference (SMD). If statistical heterogeneity was found, we examined treatment 'dosage' and treatment approach as possible sources of heterogeneity.

    MAIN RESULTS:We included eight studies (total 483 participants). These examined effects of music therapy over the short- to medium-term (one to four months), with treatment 'dosage' varying from seven to 78 sessions. Music therapy added to standard care was superior to standard care for global state (medium-term, 1 RCT, n = 72, RR 0.10 95% CI 0.03 to 0.31, NNT 2 95% CI 1.2 to 2.2). Continuous data identified good effects on negative symptoms (4 RCTs, n = 240, SMD average endpoint Scale for the Assessment of Negative Symptoms (SANS) -0.74 95% CI -1.00 to -0.47); general mental state (1 RCT, n = 69, SMD average endpoint Positive and Negative Symptoms Scale (PANSS) -0.36 95% CI -0.85 to 0.12; 2 RCTs, n=100, SMD average endpoint Brief Psychiatric Rating Scale (BPRS) -0.73 95% CI -1.16 to -0.31); depression (2 RCTs, n = 90, SMD average endpoint Self-Rating Depression Scale (SDS) -0.63 95% CI -1.06 to -0.21; 1 RCT, n = 30, SMD average endpoint Hamilton Depression Scale (Ham-D) -0.52 95% CI -1.25 to -0.21 ); and anxiety (1 RCT, n = 60, SMD average endpoint SAS -0.61 95% CI -1.13 to -0.09). Positive effects were also found for social functioning (1 RCT, n = 70, SMD average endpoint Social Disability Schedule for Inpatients (SDSI) score -0.78 95% CI -1.27 to -0.28). Furthermore, some aspects of cognitive functioning and behaviour seem to develop positively through music therapy. Effects, however, were inconsistent across studies and depended on the number of music therapy sessions as well as the quality of the music therapy provided.

    AUTHORS' CONCLUSIONS:Music therapy as an addition to standard care helps people with schizophrenia to improve their global state, mental state (including negative symptoms) and social functioning if a sufficient number of music therapy sessions are provided by qualified music therapists. Further research should especially address the long-term effects of music therapy, dose-response relationships, as well as the relevance of outcomes measures in relation to music therapy.

  • Music therapy for schizophrenia or schizophrenia-like illnesses.

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    Abstract Title:

    Music therapy for schizophrenia or schizophrenia-like illnesses.

    Abstract Source:

    Cochrane Database Syst Rev. 2005(2):CD004025. Epub 2005 Apr 18. PMID: 15846692

    Abstract Author(s):

    C Gold, T O Heldal, T Dahle, T Wigram

    Abstract:

    BACKGROUND: Music therapy is a psychotherapeutic method that uses musical interaction as a means of communication and expression. The aim of the therapy is to help people with serious mental illness to develop relationships and to address issues they may not be able to using words alone. OBJECTIVES: To review the effects of music therapy, or music therapy added to standard care, compared to placebo, standard care or no treatment for people with serious mental illnesses such as schizophrenia. SEARCH STRATEGY: The Cochrane Schizophrenia Group's Register (July 2002) was searched. This was supplemented by hand searching of music therapy journals, manual searches of reference lists, and contacting relevant authors. SELECTION CRITERIA: All randomised controlled trials that compared music therapy with standard care or other psychosocial interventions for schizophrenia. DATA COLLECTION AND ANALYSIS: Studies were reliably selected, quality assessed and data extracted. Data were excluded where more than 30% of participants in any group were lost to follow up. Non-skewed continuous endpoint data from valid scales were synthesised using a standardised mean difference (SMD). If statistical heterogeneity was found, treatment 'dosage' and treatment approach were examined as possible sources of heterogeneity. MAIN RESULTS: Four studies were included. These examined the effects of music therapy over the short to medium term (1 to 3 months), with treatment 'dosage' varying from 7 to 78 sessions. Music therapy added to standard care was superior to standard care alone for global state (medium term, 1 RCT, n = 72, RR 0.10 CI 0.03 to 0.31, NNT 2 CI 1.2 to 2.2). Continuous data suggested some positive effects on general mental state (1 RCT, n=69, SMD average endpoint PANSS -0.36 CI -0.85 to 0.12; 1 RCT, n=70, SMD average endpoint BPRS -1.25 CI -1.77 to -0.73),on negative symptoms (3 RCTs, n=180, SMD average endpoint SANS -0.86 CI -1.17 to -0.55) and social functioning (1 RCT, n=70, SMD average endpoint SDSI score -0.78 CI -1.27 to -0.28). However these latter effects were inconsistent across studies and depended on the number of music therapy sessions. All results were for the 1-3 month follow up. AUTHORS' CONCLUSIONS: Music therapy as an addition to standard care helps people with schizophrenia to improve their global state and may also improve mental state and functioning if a sufficient number of music therapy sessions are provided. Further research should address the dose-effect relationship and the long-term effects of music therapy.

  • Music therapy helps people survive after a heart attack

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    Music therapy helps people survive after a heart attack image

    Music can be the perfect medicine after a heart attack. Listening to 30 minutes of soothing music every day lowers the chances of a second episode, researchers have discovered.

    Music therapy can play a key role in helping someone survive a heart attack, say researchers from the University of Belgrade School of Medicine. As well as helping prevent a second attack by 23 percent, it reduces the rate of heart failure by 18 percent, lowers the risk of coronary artery bypass surgery by 20 percent, and lessens the chances of cardiac death by 16 percent.

  • Music therapy is a potential intervention for cognition of Alzheimer's Disease: a mini-review. 📎

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    Abstract Title:

    Music therapy is a potential intervention for cognition of Alzheimer's Disease: a mini-review.

    Abstract Source:

    Transl Neurodegener. 2017 ;6:2. Epub 2017 Jan 25. PMID: 28149509

    Abstract Author(s):

    Rong Fang, Shengxuan Ye, Jiangtao Huangfu, David P Calimag

    Article Affiliation:

    Rong Fang

    Abstract:

    Alzheimer's Disease (AD) is a global health issue given the increasing prevalence rate and the limitations of drug effects. As a consequent, non-pharmacological interventions are of importance. Music therapy (MT) is a non-pharmacological way with a long history of use and a fine usability for dementia patients. In this review, we will summarize different techniques, diverse clinical trials, and the mechanisms of MT as it is helpful to the cognition in AD, providing reference for future research. Many articles have demonstrated that MT can reduce cognitive decline especially in autobiographical and episodic memories, psychomotor speed, executive function domains, and global cognition. MT is a promising intervention for strategy of dementia especially of AD and it must be started as early as possible. However, more evidences with prospective, randomized, blinded, uniform and rigorous methodological investigations are needed. And we should consider to combine MT with other cognitive stimulations such as dance, physical exercise, video game, art and so on.

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