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控制性机械负荷对来自腰椎小关节及周围组织的II、III和IV类传入神经单位的影响。一项体外研究。

The effects of controlled mechanical loading on group-II, III, and IV afferent units from the lumbar facet joint and surrounding tissue. An in vitro study.

作者信息

Avramov A I, Cavanaugh J M, Ozaktay C A, Getchell T V, King A I

机构信息

Bioengineering Center, Wayne State University, Detroit, Michigan 48202.

出版信息

J Bone Joint Surg Am. 1992 Dec;74(10):1464-71.

PMID:1469006
Abstract

An in vitro model was developed to investigate the responses of afferent units in the lumbar spine to controlled loading as measured by a load-cell. The neuronal discharge was recorded simultaneously with loading. Three types of neuronal responses were observed. The first type of response involved phasic-type mechanoreceptors, which responded to movement, regardless of direction or initial position. The response did not outlast the movement phase of loading. These units may serve as velocity detectors. The second type of response was seen in slowly adapting low-threshold mechanoreceptors, which tended to respond to loading in the 0.3 to 0.5-kilogram range with an immediate and sustained increase in the rate of firing. This type of response appears to be associated with the activation of low-threshold group-II and group-III fibers, which were located in muscles and tendons inserting into the facet joint. The third type of response involved slowly adapting high-threshold mechanoreceptors, which could not be activated until a threshold of three to five kilograms had been exceeded. It appears that this type of response is at least partially due to the activation of high-threshold group-III and group-IV capsular afferent units, which may signal noxious mechanical stimulation.

摘要

开发了一种体外模型,以研究腰椎传入单元对通过测力传感器测量的受控负荷的反应。在负荷施加的同时记录神经元放电。观察到三种类型的神经元反应。第一种反应类型涉及相位型机械感受器,其对运动作出反应,而不论方向或初始位置如何。该反应不会持续到负荷的运动阶段之后。这些单元可能充当速度探测器。第二种反应类型出现在缓慢适应的低阈值机械感受器中,它们倾向于在0.3至0.5千克范围内对负荷作出反应,放电速率立即且持续增加。这种反应类型似乎与位于插入小关节的肌肉和肌腱中的低阈值II类和III类纤维的激活有关。第三种反应类型涉及缓慢适应的高阈值机械感受器,直到超过三至五千克的阈值才能被激活。看来这种反应类型至少部分是由于高阈值III类和IV类关节囊传入单元的激活,它们可能发出有害机械刺激的信号。

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