Role of the Mirror-Neuron System in Cross-Education

被引:0
作者
Tjerk Zult
Glyn Howatson
Endre E. Kádár
Jonathan P. Farthing
Tibor Hortobágyi
机构
[1] University Medical Center Groningen,Center for Human Movement Sciences
[2] University of Groningen,Faculty of Health and Life Sciences
[3] Northumbria University,Water Research Group, School of Biological Sciences
[4] North West University,Department of Psychology
[5] University of Portsmouth,College of Kinesiology
[6] University of Saskatchewan,undefined
来源
Sports Medicine | 2014年 / 44卷
关键词
Transcranial Magnetic Stimulation; Maximal Voluntary Contraction; Strength Training; Supplementary Motor Area; Superior Temporal Sulcus;
D O I
暂无
中图分类号
学科分类号
摘要
The present review proposes the untested hypothesis that cross-education performed with a mirror increases the transfer of motor function to the resting limb compared with standard cross-education interventions without a mirror. The hypothesis is based on neuroanatomical evidence suggesting an overlap in activated brain areas when a unilateral motor task is performed with and without a mirror in the context of cross-education of the upper extremities. The review shows that the mirror-neuron system (MNS), connecting sensory neurons responding to visual properties of an observed action and motor neurons that discharge action potentials during the execution of a similar action, has the potential to enhance cross-education. After a literature search we narrowed the review to studies that examined healthy young adults who performed unilateral strength training and unilateral motor tasks with or without a mirror and assessed outcome measures in relation to the changes in brain activity, motor cortical excitability, and corticospinal excitability. We identified six chronic studies that examined the effects of unilateral strength training on neural adaptations and 15 cross-sectional studies that examined acute changes in brain activation, motor cortical and corticospinal excitability using imaging, electroencephalographic, magnetoencephalographic, and magnetic brain stimulation. There were two chronic and nine cross-sectional studies in which participants performed unilateral motor tasks while viewing the image of the active hand superimposed on the resting hand’s image. Collectively, the data suggest that the MNS is involved in cross-education and the hypothesis is tenable. However, future studies are needed to elucidate the precise mechanism of how the use of a mirror in a cross-education study augments transfer to the non-exercised limb. Recent studies show a strength-sparing effect in the immobilized arm after strength training of the free arm in healthy individuals, and improved bilateral function after unilateral exercise therapy in stroke patients. It is thus conceptually justified to conduct randomized clinical trials that supplement cross-education protocols with a mirror. Such a treatment could reduce muscle weakness caused by limb fractures, anterior-cruciate ligament reconstruction surgery, stroke, and other unilateral motor dysfunctions.
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页码:159 / 178
页数:19
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共 349 条
  • [61] Cummine J(2003)Power grip disinhibits the ipsilateral sensorimotor cortex: a TMS and fMRI study Neuroimage 19 332-5640
  • [62] Matthys K(2000)Changes in motor cortex excitability during ipsilateral hand muscle activation in humans Clin Neurophysiol 111 344-1264
  • [63] Smits M(2007)Using transcranial magnetic stimulation to investigate the cortical origins of motor overflow: a study in schizophrenia and healthy controls Psychol Med 37 583-2459
  • [64] Van der Geest JN(2008)Mechanisms underlying functional changes in the primary motor cortex ipsilateral to an active hand J Neurosci 28 5631-227
  • [65] Van der Lugt A(2003)Organization of ipsilateral excitatory and inhibitory pathways in the human motor cortex J Neurophysiol 89 1256-3757
  • [66] Seurinck R(2003)Changes in segmental and motor cortical output with contralateral muscle contractions and altered sensory inputs in humans J Neurophysiol 90 2451-212
  • [67] Stam HJ(2011)Bilateral neuromuscular plasticity from unilateral training of the ankle dorsiflexors Exp Brain Res 208 217-371
  • [68] Nojima I(2012)Practice-related reduction of electromyographic mirroring activity depends on basal levels of interhemispheric inhibition Eur J Neurosci 36 3749-112
  • [69] Mima T(2010)The ipsilateral motor cortex contributes to cross-limb transfer of performance gains after ballistic motor practice J Physiol 588 201-193
  • [70] Koganemaru S(2008)Interhemispheric motor inhibition: its role in controlling electromyographic mirror activity Eur J Neurosci 28 364-640