Predictive model of muscle fatigue after spinal cord injury in humans

Predictive model of muscle fatigue after spinal cord injury in humans
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DOI:
10.1002/mus.20564
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发表时间:
2006-07-01
期刊:
影响因子:
3.4
通讯作者:
Lin, CH
Lin, CH
中科院分区:
医学3区
文献类型:
--
作者:
Shields, RK;Chang, YJ;Lin, CH

文献摘要

被引文献

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瘫痪肌肉的易疲劳性限制了其在重复电刺激期间向瘫痪肢体递送生理负荷的能力。本研究的目的是确定测量瘫痪肌肉疲劳的可靠性,并建立一个模型来预测脊髓损伤(SCI)后肌肉疲劳的时间变化。34名受试者接受比目鱼肌疲劳测试与修改伯克电刺激疲劳协议。该方案的日间可靠性较高(组内相关性,0.96)。我们将疲劳指数(FI)数据拟合为二次线性分段多项式模型。FI下降迅速(0.3854每年)的第一个1.7年,并缓慢(0.01每年)之后。SCI后FI的迅速下降意味着临床医生存在一个“机会之窗”,如果目标是防止这些变化。了解SCI后肌肉耐力特性(以及负荷产生能力)变化的时间可能有助于临床医生制定治疗干预措施以维持肌肉骨骼完整性。
The fatigability of paralyzed muscle limits its ability to deliver physiological loads to paralyzed extremities during repetitive electrical stimulation. The purposes of this study were to determine the reliability of measuring paralyzed muscle fatigue and to develop a model to predict the temporal changes in muscle fatigue that occur after spinal cord injury (SCI). Thirty-four subjects underwent soleus fatigue testing with a modified Burke electrical stimulation fatigue protocol. The between-day reliability of this protocol was high (intraclass correlation, 0.96). We fit the fatigue index (FI) data to a quadratic-linear segmental polynomial model. FI declined rapidly (0.3854 per year) for the first 1.7 years, and more slowly (0.01 per year) thereafter. The rapid decline of FI immediately after SCI implies that a "window of opportunity" exists for the clinician if the goal is to prevent these changes. Understanding the timing of change in muscle endurance properties (and, therefore, load-generating capacity) after SCI may assist clinicians when developing therapeutic interventions to maintain musculoskeletal integrity.