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首页> 外文期刊>Open Journal of Veterinary Medicine >Humane Non-Human Primate Model of Traumatic Spinal Cord Injury Utilizing Electromyography as a Measure of Impairment and Recovery
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Humane Non-Human Primate Model of Traumatic Spinal Cord Injury Utilizing Electromyography as a Measure of Impairment and Recovery

机译:利用肌电图测量创伤性脊髓损伤的人性非人类灵长类动物模型,作为损伤和恢复的一项措施

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The overall goal of this project is to develop a humane non-human primate model of traumatic spinal cord injury that will facilitate the development and evaluation of therapeutic interventions. The model utilizes neurophysiological techniques to identify the location of the upper motor neuron axons that innervate the lower motor neurons that control tail musculature. This facilitates the placement of a selective lesion that partially disconnects the upper and lower motor neuron supply to the musculature of the tail. An implanted transmitter quantitatively measures electromyography data from the tail. The preliminary data indicates that this model is feasible. The subject was able to tolerate the implantation of the transmitter, without adverse effects. As well, there was no limb impairment, bowel dysfunction or bladder dysfunction. The histopathologic and electromyographic features of the selective experimental lesion were similar to human spinal cord injury.
机译:该项目的总体目标是建立创伤性脊髓损伤的人性化非人类灵长类动物模型,这将有助于治疗干预措施的开发和评估。该模型利用神经生理学技术来识别支配控制尾部肌肉组织的下运动神经元的上运动神经元轴突的位置。这有利于选择性病变的放置,该病变部分地断开了对尾部肌肉的上,下运动神经元供应。植入的发射器定量测量来自尾巴的肌电图数据。初步数据表明该模型是可行的。受试者能够耐受发射器的植入,而没有不利影响。同样,没有肢体损伤,肠功能障碍或膀胱功能障碍。选择性实验性病变的组织病理学和肌电图特征类似于人脊髓损伤。

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