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      뇌졸중 후 상지 기능 개선을 위한 재활치료의 전략 = Optimal Strategies of Upper Limb Motor Rehabilitation after Stroke

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      https://www.riss.kr/link?id=A101591615

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      다국어 초록 (Multilingual Abstract)

      The purpose of this review is to provide a comprehensive approach for optimal strategies of upperlimb motor rehabilitation after stroke. Stroke is a common, serious, and disabling global health-careproblem. Optimal organization of rehabilitation for s...

      The purpose of this review is to provide a comprehensive approach for optimal strategies of upperlimb motor rehabilitation after stroke. Stroke is a common, serious, and disabling global health-careproblem. Optimal organization of rehabilitation for stroke patients has been extensively documented.
      However, between 30% and 66% of individuals with stroke do not obtain satisfactory motor recoveryof the affected upper limb with rehabilitative interventions. The recovery of the affected upper extremitydepends on intensity, task progression, and repetition to neural plasticity, namely, the ability of centralnervous system cells to modify their structure and function in response to external stimuli. Recently,constraint-induced movement therapy, motor imagery, action observation, or mirror therapy has emergedas interesting options as add-on interventions to standard physical therapies. In this review, we willdiscuss to establish a framework by which several promising interventions for neural plasticity.

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      참고문헌 (Reference)

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      2 Braun SM, "The effects of mental practice in stroke rehabilitation: a systematic review" 87 : 842-852, 2006

      3 Gi Jeong Yun, "The Synergic Effects of Mirror Th erapy and Neuromuscular Electrical Stimulation for Hand Function in Stroke Patients" 대한재활의학회 35 (35): 316-321, 2011

      4 Wolf SL, "The EXCITE stroke trial: comparing early and delayed constraint-induced movement therapy" 41 : 2309-2315, 2010

      5 Ramachandran VS, "Synaesthesia in phantom limbs induced with mirrors" 263 : 377-386, 1996

      6 Langhorne P, "Stroke rehabilitation" 377 : 1693-1702, 2011

      7 Tomasino B, "Selective deficit of motor imagery as tapped by a left-right decision of visually presented hands" 53 : 376-380, 2003

      8 Frost SB, "Reorganization of remote cortical regions after ischemic brain injury: a potential substrate for stroke recovery" 89 : 3205-3214, 2003

      9 Liu Z, "Remodeling of the corticospinal innervation and spontaneous behavioral recovery after ischemic stroke in adult mice" 40 : 2546-2551, 2009

      10 Dromerick AW, "Relationships between upperlimb functional limitation and self-reported disability 3months after stroke" 43 : 401-408, 2006

      1 Brogardh C, "What is the long-term benefit of constraint-induced movement therapy? A four-year follow-up" 23 : 418-423, 2009

      2 Braun SM, "The effects of mental practice in stroke rehabilitation: a systematic review" 87 : 842-852, 2006

      3 Gi Jeong Yun, "The Synergic Effects of Mirror Th erapy and Neuromuscular Electrical Stimulation for Hand Function in Stroke Patients" 대한재활의학회 35 (35): 316-321, 2011

      4 Wolf SL, "The EXCITE stroke trial: comparing early and delayed constraint-induced movement therapy" 41 : 2309-2315, 2010

      5 Ramachandran VS, "Synaesthesia in phantom limbs induced with mirrors" 263 : 377-386, 1996

      6 Langhorne P, "Stroke rehabilitation" 377 : 1693-1702, 2011

      7 Tomasino B, "Selective deficit of motor imagery as tapped by a left-right decision of visually presented hands" 53 : 376-380, 2003

      8 Frost SB, "Reorganization of remote cortical regions after ischemic brain injury: a potential substrate for stroke recovery" 89 : 3205-3214, 2003

      9 Liu Z, "Remodeling of the corticospinal innervation and spontaneous behavioral recovery after ischemic stroke in adult mice" 40 : 2546-2551, 2009

      10 Dromerick AW, "Relationships between upperlimb functional limitation and self-reported disability 3months after stroke" 43 : 401-408, 2006

      11 Altschuler EL, "Rehabilitation of hemiparesis after stroke with a mirror" 353 : 2035-2036, 1999

      12 Bowden MG, "Promoting neuroplasticity and recovery after stroke: future directions for rehabilitation clinical trials" 26 : 37-42, 2013

      13 Porro CA, "Primary motor and sensory cortex activation during motor performance and motor imagery: a functional magnetic resonance imaging study" 16 : 7688-7698, 1996

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      15 Gerardin E, "Partially overlapping neural networks for real and imagined hand movements" 10 : 1093-1104, 2000

      16 Ertelt D, "Observation and execution of upper-limb movements as a tool for rehabilitation of motor deficits in paretic stroke patients: protocol of a randomized clinical trial" 12 : 42-, 2012

      17 Nudo RJ, "Neural substrates for the effects of rehabilitative training on motor recovery after ischemic infarct" 272 : 1791-1794, 1996

      18 Decety J, "Neural mechanisms subserving the perception of human actions" 3 : 172-178, 1999

      19 Richards LG, "Movement-dependent stroke recovery: a systematic review and meta-analysis of TMS and fMRI evidence" 46 : 3-11, 2008

      20 Langhorne P, "Motor recovery after stroke: a systematic review" 8 : 741-754, 2009

      21 Binkofski F, "Motor functions of the Broca's region" 89 : 362-369, 2004

      22 Fadiga L, "Motor facilitation during action observation: a magnetic stimulation study" 73 : 2608-2611, 1995

      23 Zemke AC, "Motor cortex organization after stroke is related to side of stroke and level of recovery" 34 : e23-e28, 2003

      24 Pekna M, "Modulation of neural plasticity as a basis for stroke rehabilitation" 43 : 2819-2828, 2012

      25 Page SJ, "Modified constraintinduced therapy after subacute stroke: a preliminary study" 16 : 290-295, 2002

      26 Treger I, "Modified constraint-induced movement therapy improved upper limb function in subacute poststroke patients: a small-scale clinical trial" 19 : 287-293, 2012

      27 Yavuzer G, "Mirror therapy improves hand function in subacute stroke: a randomized controlled trial" 89 : 393-398, 2008

      28 Thieme H, "Mirror therapy for improving motor function after stroke" 3 : CD008449-, 2012

      29 Ietswaart M, "Mental practice with motor imagery in stroke recovery: randomized controlled trial of efficacy" 134 : 1373-1386, 2011

      30 Barclay-Goddard RE, "Mental practice for treating upper extremity deficits in individuals with hemiparesis after stroke" CD005950-, 2011

      31 Wieloch T, "Mechanisms of neural plasticity following brain injury" 16 : 258-264, 2006

      32 Duncan PW, "Measurement of motor recovery after stroke. Outcome assessment and sample size requirements" 23 : 1084-1089, 1992

      33 Rizzolatti G, "Localization of grasp representations in humans by PET: 1. Observation versus execution" 111 : 246-252, 1996

      34 Hayward K, "Interventions to promote upper limb recovery in stroke survivors with severe paresis:a systematic review" 32 : 1973-1986, 2010

      35 Ehrsson HH, "Imagery of voluntary movement of fingers, toes, and tongue activates corresponding body-part-specific motor representations" 90 : 3304-3316, 2003

      36 Kleim JA, "Functional reorganization of the rat motor cortex following motor skill learning" 80 : 3321-3325, 1998

      37 Hanakawa T, "Functional properties of brain areas associated with motor execution and imagery" 89 : 989-1002, 2003

      38 Rizzolatti G, "Functional organization of inferior area 6 in the macaque monkey. II. Area F5 and the control of distal movements" 71 : 491-507, 1988

      39 Enzinger C, "Functional MRI correlates of lower limb function in stroke victims with gait impairment" 39 : 1507-1513, 2008

      40 Nichols-Larsen DS, "Factors influencing stroke survivors' quality of life during subacute recovery" 36 : 1480-1484, 2005

      41 Zimmermann-Schlatter A, "Efficacy of motor imagery in post-stroke rehabilitation:a systematic review" 5 : 8-, 2008

      42 Miltner WH, "Effects of constraint-induced movement therapy on patients with chronic motor deficits after stroke: a replication" 30 : 586-592, 1999

      43 Peurala SH, "Effectiveness of constraint-induced movement therapy on activity and participation after stroke: a systematic review and meta-analysis of randomized controlled trials" 26 : 209-223, 2012

      44 Dromerick AW, "Does the application of constraint-induced movement therapy during acute rehabilitation reduce arm impairment after ischemic stroke?" 31 : 2984-2988, 2000

      45 Tomasino B, "Dissociation between the mental rotation of visual images and motor images in unilateral brain-damaged patients" 51 : 368-371, 2003

      46 Rossi S, "Corticospinal excitability modulation during mental simulation of wrist movements in human subjects" 243 : 147-151, 1998

      47 Ehrsson HH, "Cortical activity in precision- versus powergrip tasks: an fMRI study" 83 : 528-536, 2000

      48 Sirtori V, "Constraint-induced movement therapy for upper extremities in stroke patients" CD004433-, 2009

      49 Nakayama H, "Compensation in recovery of upper extremity function after stroke: the Copenhagen Stroke Study" 75 : 852-857, 1994

      50 Petrides M, "Comparative cytoarchitectonic analysis of the human and the macaque ventrolateral prefrontal cortex and corticocortical connection patterns in the monkey" 16 : 291-310, 2002

      51 Franceschini M, "Clinical relevance of action observation in upper-limb stroke rehabilitation: a possible role in recovery of functional dexterity. A randomized clinical trial" 26 : 456-462, 2012

      52 Wo Rah WO, "Clinical Practice Guidekine for Stroke Rehabilitation in Korea 2012" 7 (7): 2014

      53 Deiber MP, "Cerebral processes related to visuomotor imagery and generation of simple finger movements studied with positron emission tomography" 7 : 73-85, 1998

      54 Buccino G, "Action observation activates premotor and parietal areas in a somatotopic manner: an fMRI study" 13 : 400-404, 2001

      55 Binkofski F, "A parieto-premotor network for object manipulation:evidence from neuroimaging" 128 : 210-213, 1999

      56 Braun SM, "A multicenter randomized controlled trial to compare subacute 'treatment as usual' with and without mental practice among persons with stroke in Dutch nursing homes" 13 : 85 e1-85 e7, 2012

      57 Binkofski F, "A fronto-parietal circuit for object manipulation in man: evidence from an fMRI-study" 11 : 3276-3286, 1999

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