Literature DB >> 10961548

Brain plasticity and hand surgery: an overview.

G Lundborg1.   

Abstract

The hand is an extension of the brain, and the hand is projected and represented in large areas of the motor and sensory cortex. The brain is a complicated neural network which continuously remodels itself as a result of changes in sensory input. Such synaptic reorganizational changes may be activity-dependent, based on alterations in hand activity and tactile experience, or a result of deafferentiation such as nerve injury or amputation. Inferior recovery of functional sensibility following nerve repair, as well as phantom experiences in virtual, amputated limbs are phenomena reflecting profound cortical reorganizational changes. Surgical procedures on the hand are always accompanied by synaptic reorganizational changes in the brain cortex, and the outcome from many hand surgical procedures is to a large extent dependent on brain plasticity.

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Year:  2000        PMID: 10961548     DOI: 10.1054/jhsb.1999.0339

Source DB:  PubMed          Journal:  J Hand Surg Br        ISSN: 0266-7681


  24 in total

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Journal:  Cells Tissues Organs       Date:  2011-03-17       Impact factor: 2.481

4.  Long-term vascular access ports as a means of sedative administration in a rodent fMRI survival model.

Authors:  Patrick C Hettinger; Rupeng Li; Ji-Geng Yan; Hani S Matloub; Younghoon R Cho; Christopher P Pawela; Daniel B Rowe; James S Hyde
Journal:  J Neurosci Methods       Date:  2011-06-24       Impact factor: 2.390

5.  Refining the sensory and motor ratunculus of the rodent upper extremity: evaluation of the C7 nerve root using fMRI and direct nerve stimulation.

Authors:  Patrick C Hettinger; Rupeng Li; Ji-Geng Yan; Younghoon R Cho; James Sanger; William Dzwierzynski; Christopher P Pawela; James S Hyde; Hani S Matloub
Journal:  Hand (N Y)       Date:  2011-02-19

Review 6.  Cortical Plasticity in Rehabilitation for Upper Extremity Peripheral Nerve Injury: A Scoping Review.

Authors:  Patrick J Zink; Benjamin A Philip
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7.  Transhemispheric cortical plasticity following contralateral C7 nerve transfer: a rat functional magnetic resonance imaging survival study.

Authors:  J B Stephenson; Rupeng Li; Ji-Geng Yan; James Hyde; Hani Matloub
Journal:  J Hand Surg Am       Date:  2013-03       Impact factor: 2.230

8.  Interhemispheric neuroplasticity following limb deafferentation detected by resting-state functional connectivity magnetic resonance imaging (fcMRI) and functional magnetic resonance imaging (fMRI).

Authors:  Christopher P Pawela; Bharat B Biswal; Anthony G Hudetz; Rupeng Li; Seth R Jones; Younghoon R Cho; Hani S Matloub; James S Hyde
Journal:  Neuroimage       Date:  2009-09-28       Impact factor: 6.556

9.  Allotransplanted DRG neurons or Schwann cells affect functional recovery in a rodent model of sciatic nerve injury.

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10.  Cortical plasticity induced by different degrees of peripheral nerve injuries: a rat functional magnetic resonance imaging study under 9.4 Tesla.

Authors:  Rupeng Li; Patrick C Hettinger; Jacques A Machol; Xiping Liu; J B Stephenson; Christopher P Pawela; Ji-Geng Yan; Hani S Matloub; James S Hyde
Journal:  J Brachial Plex Peripher Nerve Inj       Date:  2013-05-09
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