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DESCRIPTION (provided by applicant): Loss of muscle strength (i.e. weakness) associated with aging is a huge problem as it limits physical independence and is a major factor in the development of disability. Many of the changes that accompany the loss of strength with aging coincide with those observed following immobilization. Thus, immobilization is a model that is particularly well suited to examine losses in strength seen in an aging population. Losses of strength are mediated by changes in both muscular (e.g. atrophy) and neural properties (e.g. cortical inhibition). While there have been extensive studies examining muscular properties, little is known regarding the changes in cortical properties associated with the loss of strength. The potential role of cortical mechanisms in mediating strength is supported by the known effects of motor imagery on increasing strength. More specifically, intracortical facilitation and inhibition may be important neural mechanisms in mediating strength. Intracortical facilitation and inhibition is assessed using paired-pulse transcranial magnetic stimulation, and our pilot data suggests that both aging and immobilization increases long-interval intracortical inhibition (LICI) and the immobilization-induced increase in LICI is associated with the loss of strength. Our central hypothesis is that a high level of LICI is an important neurophysiologic determinant of muscle strength. We will test this hypothesis by accomplishing the following three specific aims: 1) to determine the association between the immobilization-induced changes in intracortical properties and the reduction in muscle strength and central activation; 2) to evaluate the effect of motor imagery training on minimizing the immobilization-induced changes in intracortical properties and the reduction in muscle strength and central activation; and 3) to compare differences in intracortical properties between young adults, older healthy adults, and prefrail older adults, and evaluate the interrelationship between age-related differences in intracortical properties and muscle strength and central activation. Understanding the specific neural mechanisms underlying the loss of muscle strength is critical to improving rehabilitation strategies. PUBLIC HEALTH RELEVANCE: Muscle weakness is a common clinical phenomena observed in association with aging and disuse, weakness is associated with disability development, reduced functional capacity, and even mortality. This research will identify the intracortical facilitatory and inhibitory properties in mediating the loss of strength associated with both immobilization and aging. Developing an understanding of the neural mechanisms mediating muscle weakness will contribute to the development of interventions to promote muscle function.
期刊论文(15)
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会议论文
DOI: 10.1371/journal.pone.0093284
发表时间: 2014
期刊: PloS one
影响因子: 3.7
作者: [Williams PS, Hoffman RL, Clark BC]
通讯作者: Clark BC
Exploring the pathophysiology of mal de debarquement.
探索 mal de debarquement 的病理生理学。
DOI: 10.1007/s00415-010-5867-y
发表时间: 2011
期刊: Journal of neurology
影响因子: 6
作者: [Clark,BrianC, Quick,Adam]
通讯作者: Quick,Adam
Preliminary evidence that anodal transcranial direct current stimulation enhances time to task failure of a sustained submaximal contraction.
初步证据表明,阳极经颅直流电刺激可延长持续次最大收缩的失败时间。
DOI: 10.1371/journal.pone.0081418
发表时间: 2013
期刊: PloS one
影响因子: 3.7
作者: [Williams,PetraS, Hoffman,RichardL, Clark,BrianC]
通讯作者: Clark,BrianC
DOI: 10.1097/mco.0b013e328337819e
发表时间: 2010-05
期刊: Current opinion in clinical nutrition and metabolic care
影响因子: 3.1
作者: [Clark BC, Manini TM]
通讯作者: Manini TM
9
    Development of Cortical Bone Mechanics Technology for Enhancing the Diagnosis of Osteoporosis
    • 批准号:
      10697217
    • 项目类别:
    • 资助金额:
      $116.05万
    • 财政年份:
      2017
    • 负责人:
      Brian C Clark
    • 依托单位:
    Development and validation of a novel non-invasive device for measuring the mechanical properties of cortical bone
    • 批准号:
      10258644
    • 项目类别:
    • 资助金额:
      $116.59万
    • 财政年份:
      2017
    • 负责人:
      Brian C Clark
    • 依托单位:
    Development and validation of a novel non-invasive device for measuring the mechanical properties of cortical bone
    • 批准号:
      10407076
    • 项目类别:
    • 资助金额:
      $83.21万
    • 财政年份:
      2017
    • 负责人:
      Brian C Clark
    • 依托单位:
    Innovative Neurophysiological Techniques for Assessing Trunk Muscle Control and Function
    • 批准号:
      9206585
    • 项目类别:
    • 资助金额:
      $18.81万
    • 财政年份:
      2016
    • 负责人:
      Brian C Clark
    • 依托单位:
    海外基金