Department of Physical Medicine & Rehabilitation, University of Colorado Denver, School of Medicine, Aurora, CO 80045, USA.
J Neurosci Methods. 2011 May 15;198(1):84-92. doi: 10.1016/j.jneumeth.2011.03.018. Epub 2011 Apr 1.
The paired motor unit analysis provides in vivo estimates of the magnitude of persistent inward currents (PIC) in human motoneurons by quantifying changes in the firing rate (ΔF) of an earlier recruited (reference) motor unit at the time of recruitment and derecruitment of a later recruited (test) motor unit. This study assessed the variability of ΔF estimates, and quantified the dependence of ΔF on the discharge characteristics of the motor units selected for analysis. ΔF was calculated for 158 pairs of motor units recorded from nine healthy individuals during repeated submaximal contractions of the tibialis anterior muscle. The mean (SD) ΔF was 3.7 (2.5)pps (range -4.2 to 8.9 pps). The median absolute difference in ΔF for the same motor unit pair across trials was 1.8 pps, and the minimal detectable change in ΔF required to exceed measurement error was 4.8 pps. ΔF was positively related to the amount of discharge rate modulation in the reference motor unit (r² = 0.335; P<0.001), and inversely related to the rate of increase in discharge rate (r² = 0.125; P<0.001). A quadratic function provided the best fit for relations between ΔF and the time between recruitment of the reference and test motor units (r² = 0.229, P<0.001), the duration of test motor unit activity (r² = 0.110, P<0.001), and the recruitment threshold of the test motor unit (r² = 0.237, P<0.001). Physiological and methodological contributions to the variability in ΔF estimates of PIC magnitude are discussed, and selection criteria to reduce these sources of variability are suggested for the paired motor unit analysis.
成对运动单位分析通过量化较早募集(参考)运动单位在募集和去募集较晚募集(测试)运动单位时的发放率(ΔF)的变化,提供了在体估计人类运动神经元中持续内向电流(PIC)幅度的方法。本研究评估了ΔF 估计的可变性,并量化了ΔF 对分析所选运动单位放电特征的依赖性。在 9 名健康个体重复进行胫骨前肌次最大收缩期间,记录了 158 对运动单位,并计算了 ΔF。平均(SD)ΔF 为 3.7(2.5)pps(范围-4.2 至 8.9 pps)。同一运动单位对在试验间的 ΔF 中位数绝对差异为 1.8 pps,超过测量误差所需的 ΔF 最小可检测变化为 4.8 pps。ΔF 与参考运动单位的发放率调制量呈正相关(r²=0.335;P<0.001),与发放率增加率呈负相关(r²=0.125;P<0.001)。二次函数为 ΔF 与参考和测试运动单位募集之间的时间(r²=0.229,P<0.001)、测试运动单位活动持续时间(r²=0.110,P<0.001)和测试运动单位募集阈值(r²=0.237,P<0.001)之间的关系提供了最佳拟合。讨论了对 PIC 幅度的成对运动单位分析中 ΔF 估计的变异性的生理和方法学贡献,并提出了减少这些变异性来源的选择标准。