Recovery of bipedal locomotion in bonnet macaques after spinal cord injury: footprint analysis.

R Suresh Babu, A Namasivayam
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引用次数: 19

Abstract

Analysis of the recovery of gait after spinal cord injury has been widely demonstrated in rat and cat models using different behavioral tests and scoring systems. The present investigation was aimed to quantitatively analyze the degree of functional recovery in bipedal locomotion of bonnet macaques after inflicting spinal cord hemisection lesion. To measure the degree of locomotor recovery, we recorded four gait variables, viz., tip of opposite foot (TOF), print length (PL), toe spread (TS), and intermediary toes (IT) using a footprint analyzing technique. Monkeys were trained preoperatively to perform the monopedal hop or bipedal locomotion on runways. Footprints of trained monkeys were recorded using the nontoxic ink and white paper before and after surgery. Surgical hemisection was induced unilaterally in the right side of spinal cord at T12-L1 level of trained monkeys. In hemiplegic monkeys, initially there was a substantial decrease in TOF and PL variables of the paretic limb, which then gradually increased for longer duration and reached the near presurgical values by the 7th and 5th postoperative month, respectively. In contrast to TOF and PL, the recovery of TS and IT variables was quicker, which dramatically increased at first and then slowly recovered to levels not significantly different from the corresponding preoperative values by the 4th postoperative month. The nonparetic limb has also showed mild alterations in all footprint variables but reached the normal values much faster compared to the paretic limb. The alterations in footprint variables of hemiplegic monkeys were examined for a postoperative period of up to 1 year. The findings of this study suggest that the mechanisms underlying locomotor recovery of lesioned macaques may be correlated to the mature function of spinal pattern generator for locomotion under the impact of residual descending and afferent connections. Further, this study also indicates the functional contribution of progressive strengthening of undamaged nerve fibers through a collateral sprouts/synaptic plasticity formed in partially lesioned cord of macaques.

帽猴脊髓损伤后两足运动的恢复:足迹分析。
脊髓损伤后步态恢复的分析已在大鼠和猫模型中广泛证明,使用不同的行为测试和评分系统。本研究旨在定量分析帽猴脊髓半切损伤后两足运动功能的恢复程度。为了测量运动恢复的程度,我们使用足迹分析技术记录了四个步态变量,即对足尖(TOF)、足印长度(PL)、脚趾伸展(TS)和中间脚趾(IT)。猴子在术前接受训练,在跑道上单足跳跃或两足运动。经过训练的猴子在手术前后用无毒墨水和白纸记录了它们的脚印。在训练猴右侧脊髓T12-L1水平单侧诱导半切。在偏瘫猴子中,最初,麻痹肢体的TOF和PL变量显著下降,然后逐渐增加,持续时间较长,分别在术后第7个月和第5个月达到接近手术前的值。与TOF和PL相比,TS和IT变量的恢复速度更快,在术后第4个月时,TS和IT变量开始急剧升高,然后缓慢恢复到与术前相应值无显著差异的水平。非双亲肢体在所有足迹变量中也表现出轻微的变化,但与双亲肢体相比,达到正常值的速度要快得多。对偏瘫猴子术后长达1年的足迹变量变化进行了检查。本研究结果提示,损伤猕猴运动恢复的机制可能与脊髓模式发生器在残余下行和传入连接影响下的运动功能成熟有关。此外,本研究还表明,在猕猴部分受损的脊髓中,通过侧枝芽/突触可塑性形成的未受损神经纤维的渐进式强化在功能上的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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