【24h】

Evaluation of the criteria to identify single-fibre potentials in human muscle fibres

机译:评价标准以鉴定人肌肉纤维中的单纤维潜力

获取原文
获取原文并翻译 | 示例
       

摘要

The criterion normally used to identify a potential generated by a singlemuscle fibre (SFAP) is that it must have identical shape at consecutive discharges. Technical problems accompanying the recording of single-fibre electromyographic (SFEMG) potentials introduce certain variability in the shape of these potentials, thereby compromising the ability to detect pure SFAPs. This study aims to determine the conditions necessary for two fibres to generate a compound potential that fulfils the single-fibre criterion. This has been done by analysing the alterations in the waveform of compound spikes formed by the summation of two SFAPs whose relative weight in the composite potential can differ considerably. Several factors responsible for this shape variability, with a geometrical, physiological or accidental origin, have been included in our study. It has been shown that a distant interfering component will be hardly detected in the composite potential if it is smaller than approximately 15% of the main component. For this interfering component to generate a notch in the rising phase of the compound potential, it must be greater than about 30% of the main component. A compound potential will fulfil the single-fibre criterion if the time dispersion between the individual components is less than 80-120μs. These results permit the estimation of the amplitude of interfering potentials so they could be useful in fibre density studies. The article also emphasises the inherent variability of SFEMG potentials and the impact of this variability on jitter estimation.
机译:通常用于确定单肌纤维(SFAP)产生的电势的标准是,在连续放电时,其形状必须相同。记录单纤维肌电图(SFEMG)电位所伴随的技术问题在这些电位的形状中引入了一定的可变性,从而损害了检测纯SFAP的能力。这项研究旨在确定两条纤维产生满足单纤维标准的复合电势所需的条件。这是通过分析由两个SFAP相加而形成的复合尖峰波形的变化来完成的,这两个SFAP在复合电位中的相对权重可能相差很大。在我们的研究中已经包括了造成这种形状可变性的几个因素,这些因素具有几何,生理或偶然的起源。已经表明,如果复合电位小于主要成分的约15%,则很难在复合电位中检测到远处的干扰成分。为了使这种干扰成分在复合电位的上升阶段产生一个陷波,必须大于主成分的30%。如果各个组件之间的时间分散小于80-120μs,则复合电位将满足单纤维标准。这些结果允许估计干扰电位的幅度,因此它们可用于纤维密度研究。本文还强调了SFEMG电位的固有可变性以及该可变性对抖动估计的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号