scholarly journals Constraint-Induced Movement Therapy (CIMT): Current Perspectives and Future Directions

2012 ◽  
Vol 2012 ◽  
pp. 1-8 ◽  
Author(s):  
Aimee P. Reiss ◽  
Steven L. Wolf ◽  
Elizabeth A. Hammel ◽  
Erin L. McLeod ◽  
Erin A. Williams

Constraint-induced movement therapy (CIMT) has gained considerable popularity as a treatment technique for upper extremity rehabilitation among patients with mild-to-moderate stroke. While substantial evidence has emerged to support its applicability, issues remain unanswered regarding the best and most practical approach. Following the establishment of what can be called the “signature” CIMT approach characterized by intense clinic/laboratory-based practice, several distributed forms of training, collectively known as modified constraint therapy (mCIMT), have emerged. There is a need to examine the strengths and limitations of such approaches, and based upon such information, develop the components of a study that would compare the signature approach to the best elements of mCIMT, referred to here as “alternative” CIMT. Based upon a PEDro review of literature, limitations in mCIMT studies for meeting criteria were identified and discussed. A suggestion for a “first effort” at a comparative study that would both address such limitations while taking practical considerations into account is provided.

2009 ◽  
Vol 24 (6) ◽  
pp. 929-933
Author(s):  
Taichi KURAYAMA ◽  
Anna WATANABE ◽  
Minami TAKAMOTO ◽  
Nami SHIGETA ◽  
Yuki HASEGAWA ◽  
...  

2019 ◽  
Vol 99 (12) ◽  
pp. 1667-1678 ◽  
Author(s):  
Mohammad H Rafiei ◽  
Kristina M Kelly ◽  
Alexandra L Borstad ◽  
Hojjat Adeli ◽  
Lynne V Gauthier

Abstract Background Constraint-induced movement therapy (CI therapy) produces, on average, large and clinically meaningful improvements in the daily use of a more affected upper extremity in individuals with hemiparesis. However, individual responses vary widely. Objective The study objective was to investigate the extent to which individual characteristics before treatment predict improved use of the more affected arm following CI therapy. Design This study was a retrospective analysis of 47 people who had chronic (> 6 months) mild to moderate upper extremity hemiparesis and were consecutively enrolled in 2 CI therapy randomized controlled trials. Methods An enhanced probabilistic neural network model predicted whether individuals showed a low, medium, or high response to CI therapy, as measured with the Motor Activity Log, on the basis of the following baseline assessments: Wolf Motor Function Test, Semmes-Weinstein Monofilament Test of touch threshold, Motor Activity Log, and Montreal Cognitive Assessment. Then, a neural dynamic classification algorithm was applied to improve prognostic accuracy using the most accurate combination obtained in the previous step. Results Motor ability and tactile sense predicted improvement in arm use for daily activities following intensive upper extremity rehabilitation with an accuracy of nearly 100%. Complex patterns of interaction among these predictors were observed. Limitations The fact that this study was a retrospective analysis with a moderate sample size was a limitation. Conclusions Advanced machine learning/classification algorithms produce more accurate personalized predictions of rehabilitation outcomes than commonly used general linear models.


2007 ◽  
Vol 87 (9) ◽  
pp. 1212-1223 ◽  
Author(s):  
Steven L Wolf

Constraint-induced movement therapy (CIMT) has gained considerable popularity as a valuable treatment for a hemiparetic upper extremity. This approach is compatible with the emerging notion that task-oriented or functionally oriented retraining of the impaired limb provides evidence to support its utility. This article first provides a historical perspective on the development of CIMT. An overview model of how learned nonuse of the hemiparetic limb occurs and can be overcome with CIMT is discussed, and then a more detailed model that incorporates critical issues requiring considerably more basic and applied scientific exploration is described. Among the issues considered are the extent to which hemiparetic limb nonuse and subsequent modes of delivery to overcome it are governed by structure-function deficits rather than being attributable primarily to behavioral phenomena; the relative importance of the intensity of training; the need to better balance unimanual and bimanual upper-extremity task practice; the role of psychosocial and cultural factors in fostering patient compliance; the optimization of modes of delivery; and the reevaluation of the constellation of components contributing to successful outcomes with this treatment. Finally, the strengths, uncertainties, and limitations associated with CIMT are examined.


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