Doi Atsushi, Oda Kyoka, Matsumoto Masaki, Sakoguchi Honoka, Honda Mizuki, Ogata Yuma, Nakano Asuka, Taniguchi Misato, Fukushima Shunya, Imayoshi Kyogo, Nagao Kanta, Toyoda Masami, Kameyama Hiroki, Sonohata Motoki, Shin Min-Chul
Department of Rehabilitation, Faculty of Health, Kumamoto Health Science University, Kumamoto, Japan.
Division of Health Sciences, Graduate School of Health Sciences, Kumamoto Health Science University, Kumamoto, Japan.
J Exerc Rehabil. 2023 Jun 28;19(3):149-162. doi: 10.12965/jer.2346178.089. eCollection 2023 Jun.
This study aimed to investigate the effect of whole body vibration (WBV) on the sensory and motor nerve components with sciatic nerve injury model rats. Surgery was performed on 21 female Wister rats (6-8 weeks) under intraperitoneal anesthesia. The nerve-crush injuries for the left sciatic nerve were inflicted using a Sugita aneurysm clip. The sciatic nerve model rats were randomly divided into two groups (n=9; control group, n=12; WBV group). The rats in the WBV group walked in the cage with a vibratory stimulus (frequency 50 Hz, 20 min/day, 5 times/wk), while those in the control group walked in the cage without any vibratory stimulus. We used heat stimulation-induced sensory threshold and lumbar magnetic stimulation-induced motor-evoked potentials (MEPs) to measure the sensory and motor nerve components, respectively. Further, morphological measurements, bilateral hind-limb dimension, bilateral gastrocnemius dimension, and weight were evaluated. Consequently, there were no significant differences in the sensory threshold at the injury side between the control and WBV groups. However, at 4 and 6 weeks postoperatively, MEPs latencies in the WBV group were significantly shorter than those in the control group. Furthermore, both sides of the hind-limb dimension at 6 weeks postoperatively, the left side of the gastrocnemius dimension, and both sides of the gastrocnemius weight significantly increased. In conclusion, WBV especially accelerates the functional recovery of motor nerve components in sciatic nerve-crush injury model rats.
本研究旨在探讨全身振动(WBV)对坐骨神经损伤模型大鼠感觉和运动神经成分的影响。对21只6 - 8周龄的雌性Wister大鼠进行腹腔麻醉后实施手术。使用杉田动脉瘤夹对左侧坐骨神经造成神经挤压损伤。将坐骨神经模型大鼠随机分为两组(n = 9;对照组,n = 12;WBV组)。WBV组大鼠在带有振动刺激(频率50 Hz,每天20分钟,每周5次)的笼子里行走,而对照组大鼠在没有任何振动刺激的笼子里行走。我们分别使用热刺激诱导的感觉阈值和腰部磁刺激诱导的运动诱发电位(MEP)来测量感觉和运动神经成分。此外,还评估了形态学测量、双侧后肢尺寸、双侧腓肠肌尺寸和体重。结果,对照组和WBV组损伤侧的感觉阈值没有显著差异。然而,术后4周和6周时,WBV组的MEP潜伏期明显短于对照组。此外,术后6周时后肢尺寸的两侧、左侧腓肠肌尺寸以及双侧腓肠肌重量均显著增加。总之,WBV尤其能加速坐骨神经挤压损伤模型大鼠运动神经成分的功能恢复。