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Research progress of modern rehabilitation therapy in cognitive impairment |
XUE Zhiyuan XU Ping▲ |
Zunyi Medical University, Guizhou Province, Zunyi 563000, China |
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Abstract Cognitive impairment is a cognitive impairment caused by various reasons, including learning, memory impairment or accompanied by aphasia, misuse, and loss of recognition. Previously, drugs were used as first-line treatments. With the rapid development of rehabilitation medicine, new technologies for rehabilitation therapy emerge one after another. The effects of modern rehabilitation techniques such as physical therapy, rehabilitation robots and remote rehabilitation on cognitive function have become hot spots in clinical research and treatment. This article reviews the commonly used cognitive rehabilitation treatment methods in recent years, in order to provide new thinking for clinical treatment of the disease.
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[1] Ohman H,Savikko N,Strandberg TE,et al. Effect of physical exercise on cognitive performance in older adults with mild cognitive impairment or dementia:a systematic review [J]. Dement Geriatr Cogn Disord,2014,38(5/6):347-365.
[2] Listunova L,Roth C,Bartolovic M,et al. Cognitive Impairment Along the Course of Depression:Non-Pharmacological Treatment Options [J]. Psychopathology,2018,51(5):295-305.
[3] da Silva FC,Iop RDR,de Oliveira LC,et al. Effects of physical exercise programs on cognitive function in Parkinson′s disease patients:A systematic review of randomized controlled trials of the last 10 years [J]. PLoS One,2018, 13(2):e0193113.
[4] Vadas D,Kalichman L,Hadanny A,et al. Hyperbaric Oxygen Environment Can Enhance Brain Activity and Multitasking Performance [J]. Front Integr Neurosci,2017,11:25.
[5] Tal S,Hadanny A,Sasson E,et al. Hyperbaric Oxygen Therapy Can Induce Angiogenesis and Regeneration of Nerve Fibers in Traumatic Brain Injury Patients [J]. Front Hum Neurosci,2017,11:508.
[6] Hadanny A,Golan H,Fishlev G,et al. Hyperbaric oxygen can induce neuroplasticity and improve cognitive functions of patients suffering from anoxic brain damage [J]. Restor Neurolo Neurosci,2015,33(4):471-486.
[7] Lanza G,Bramanti P. Vascular Cognitive Impairment through the Looking Glass of Transcranial Magnetic Stimulation [J]. Behav Neurol,2017(2):1-16.
[8] Lee J,Choi BH,Oh E,et al. Treatment of Alzheimer′s Disease with Repetitive Transcranial Magnetic Stimulation Combined with Cognitive Training:A Prospective,Randomized,Double-Blind,Placebo-Controlled Study [J]. J Clin Neurol,2016,12(1):57-64.
[9] Bikson M,Grossman P,Thomas C,et al. Safety of Transcranial Direct Current Stimulation:Evidence Based Update 2016 [J]. Brain stimul,2016,9(5):641-661.
[10] Cocco S,Podda MV,Grassi C. Role of BDNF Signaling in Memory Enhancement Induced by Transcranial Direct Current Stimulation [J]. Front Neurosci,2018,12:427.
[11] Pope PA. Modulating cognition using transcranial direct current stimulation of the cerebellum [J]. J Vis Exp,2015(96):52302.
[12] Jackson MP,Rahman A,Lafon B,et al. Animal models of transcranial direct current stimulation:Methods and mechanisms [J]. Clin Neurophysiol,2016,127(11):3425-3454.
[13] Renton T,Tibbles A,Topolovec-Vranic J. Neurofeedback as a form of cognitive rehabilitation therapy following stroke:A systematic review [J]. PLoS One,2017,12(5):e0177290.
[14] Kober SE,Schweiger D,Reichert JL,et al. Upper Alpha Based Neurofeedback Training in Chronic Stroke:Brain Plasticity Processes and Cognitive Effects [J]. Appl Psychophysiol Biofeedback,2017,42(1):69-83.
[15] Hegde S. Music-based cognitive remediation therapy for patients with traumatic brain injury [J]. Front Neurol,2014,5:34.
[16] Sarkamo T,Laitinen S,Numminen A,et al. Pattern of Emotional Benefits Induced by Regular Singing and Music Listening in Dementia [J]. J Am Geriatr Soc,2016,64(2):439-400.
[17] Chanda ML,Levitin DJ. The neurochemistry of music [J]. Trends Cog Sci,2013,17(4):179-193.
[18] Sakamoto M,Ando H,Tsutou A. Comparing the effects of different individualized music interventions for elderly individuals with severe dementia [J]. Int Psychogeriat,2013,25(5):775-784.
[19] Gomez-Romero M,Jimenez-Palomares M,Rodriguez-Mansilla J,et al. Benefits of music therapy on behaviour disorders in subjects diagnosed with dementia:a systematic review [J]. Neurologia,2017,32(4):253-263.
[20] Boot WR,Kramer AF. The brain-games conundrum:does cognitive training really sharpen the mind?[J]. Cerebrum,2014,2014:15.
[21] Mohammadi MR,Keshavarzi Z,Talepasand S. The effectiveness of computerized cognitive rehabilitation training program in improving cognitive abilities of schizophrenia clients [J]. Iran J Psychiatry,2014,9(4):209-215.
[22] Morimoto T,Matsuda Y,Matsuoka K,et al. Computer-assisted cognitive remediation therapy increases hippocampal volume in patients with schizophrenia:a randomized controlled trial [J]. BMC Psychiatry,2018,18(1):83.
[23] Gassert R,Dietz V. Rehabilitation robots for the treatment of sensorimotor deficits:a neurophysiological perspective [J]. J Neuroeng Rehabili,2018,15(1):46.
[24] Kim GH,Jeon S,Im K,et al. Structural brain changes after traditional and robot-assisted multi-domain cognitive training in community-dwelling healthy elderly [J]. PLoS One,2015,10(4):e0123251.
[25] Ackerman MJ,Filart R,Burgess LP,et al. Developing next-generation telehealth tools and technologies:patients,systems,and data perspectives [J] .Teleme J E Health,2010,16(1):93-95.
[26] Richmond T,Peterson C,Cason J,et al. American Tele-medicine Association′s Principles for Delivering Telerehabilitation Services [J]. Int J Telerehabil,2017,9(2):63-68. |
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