Bittmann Frank N, Dech Silas, Schaefer Laura V
Regulative Physiology and Prevention, Department Sports and Health Sciences, University of Potsdam, 14476 Potsdam, Germany.
Health Education in Sports, Department Sports and Health Sciences, University of Potsdam, 14476 Potsdam, Germany.
Brain Sci. 2023 Jul 21;13(7):1105. doi: 10.3390/brainsci13071105.
Sensorimotor control can be impaired by slacked muscle spindles. This was shown for reflex responses and, recently, also for muscular stability in the sense of Adaptive Force (AF). The slack in muscle spindles was generated by contracting the lengthened muscle followed by passive shortening. AF was suggested to specifically reflect sensorimotor control since it requires tension-length control in adaptation to an increasing load. This study investigated AF parameters in reaction to another, manually performed slack procedure in a preselected sample (n = 13). The AF of 11 elbow and 12 hip flexors was assessed by an objectified manual muscle test (MMT) using a handheld device. Maximal isometric AF was significantly reduced after manual spindle technique vs. regular MMT. Muscle lengthening started at 64.93 ± 12.46% of maximal voluntary isometric contraction (MVIC). During regular MMT, muscle length could be maintained stable until 92.53 ± 10.12% of MVIC. Hence, muscular stability measured by AF was impaired after spindle manipulation. Force oscillations arose at a significantly lower level for regular vs. spindle. This supports the assumption that they are a prerequisite for stable adaptation. Reduced muscular stability in reaction to slack procedures is considered physiological since sensory information is misled. It is proposed to use slack procedures to test the functionality of the neuromuscular system, which is relevant for clinical practice.
感觉运动控制可能会因肌肉梭松弛而受损。这在反射反应中得到了证实,最近,在自适应力(AF)意义上的肌肉稳定性方面也得到了证实。肌肉梭的松弛是通过先收缩拉长的肌肉然后被动缩短来产生的。AF被认为可以特异性地反映感觉运动控制,因为它需要在适应不断增加的负荷时进行张力-长度控制。本研究在一个预先选定的样本(n = 13)中,研究了对另一种手动进行的松弛程序的反应中的AF参数。使用手持设备通过客观化的徒手肌力测试(MMT)评估11名肘部和12名髋部屈肌的AF。与常规MMT相比,手动梭技术后最大等长AF显著降低。肌肉拉长开始于最大自主等长收缩(MVIC)的64.93±12.46%。在常规MMT期间,肌肉长度可以保持稳定,直到MVIC的92.53±10.12%。因此,在梭操作后,通过AF测量的肌肉稳定性受损。与梭操作相比,常规操作时力振荡出现的水平显著更低。这支持了它们是稳定适应的先决条件这一假设。由于感觉信息被误导,对松弛程序的反应中肌肉稳定性降低被认为是生理性的。建议使用松弛程序来测试神经肌肉系统的功能,这与临床实践相关。