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Robot-assisted mechanical therapy attenuates stroke-induced limb skeletal muscle injury

机译:机器人辅助机械疗法可减轻中风引起的肢体骨骼肌损伤

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摘要

The efficacy and optimization of poststroke physical therapy paradigms is challenged in part by a lack of objective tools available to researchers for systematic preclinical testing. This work represents a maiden effort to develop a robot-assisted mechanical therapy (RAMT) device to objectively address the significance of mechanical physiotherapy on poststroke outcomes. Wistar rats were subjected to right hemisphere middle-cerebral artery occlusion and reperfusion. After 24 h, rats were split into control (RAMT) or RAMT+ groups (30 min daily RAMT over the stroke-affected gastrocnemius) and were followed up to poststroke d 14. RAMT+ increased perfusion 1.5-fold in stroke-affected gastrocnemius as compared to RAMT controls. Furthermore, RAMT+ rats demonstrated improved poststroke track width (11% wider), stride length (21% longer), and travel distance (61% greater), as objectively measured using software-automated testing platforms. Stroke injury acutely increased myostatin (3-fold) and lowered brain-derived neurotrophic factor (BDNF) expression (0.6-fold) in the stroke-affected gastrocnemius, as compared to the contralateral one. RAMT attenuated the stroke-induced increase in myostatin and increased BDNF expression in skeletal muscle. Additional RAMT-sensitive myokine targets in skeletal muscle (IL-1ra and IP-10/CXCL10) were identified from a cytokine array. Taken together, outcomes suggest stroke acutely influences signal transduction in hindlimb skeletal muscle. Regimens based on mechanical therapy have the clear potential to protect hindlimb function from such adverse influence.—Sen, C. K., Khanna, S., Harris, H., Stewart, R., Balch, M., Heigel, M., Teplitsky, S., Gnyawali, S., Rink, C. Robot-assisted mechanical therapy attenuates stroke-induced limb skeletal muscle injury.
机译:脑卒中后物理疗法范例的功效和优化受到研究人员缺乏用于系统性临床前测试的客观工具的挑战。这项工作代表了开发机器人辅助机械治疗(RAMT)设备的客观努力,以客观地解决机械物理治疗对卒中后预后的重要性。对Wistar大鼠进行右半球大脑中动脉闭塞和再灌注。 24小时后,将大鼠分为对照组(RAMT -)或RAMT + 组(中风后患腓肠肌每天30分钟RAMT),并随访至中风后d 14.与RAMT -对照相比,中风影响的腓肠肌的RAMT + 灌注增加了1.5倍。此外,RAMT + 大鼠表现出改善的中风后轨迹宽度(较宽11%),步幅长度(较长21%)和行进距离(较远61%),这是使用软件自动测试平台进行客观测量的。与对侧受累的腓肠肌相比,中风损伤可使肌抑制素急剧增加(3倍),并降低脑源性神经营养因子(BDNF)的表达(0.6倍)。 RAMT减弱了中风引起的肌肉生长抑制素的增加,并增加了骨骼肌中BDNF的表达。从细胞因子阵列中鉴定出骨骼肌中其他RAMT敏感的肌动蛋白靶标(IL-1ra和IP-10 / CXCL10)。两者合计,结果表明中风会严重影响后肢骨骼肌的信号转导。基于机械疗法的疗法具有明显的潜力来保护后肢功能不受此类不利影响。—Sen,CK,Khanna,S.,Harris,H.,Stewart,R.,Balch,M.,Heigel,M.,Teplitsky, S.,Gnyawali,S.,Rink,C.机器人辅助机械疗法可减轻中风引起的肢体骨骼肌损伤。

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