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使用定制的微型电极记录山羊颈椎小关节囊的神经活动。

Recording of neural activity from goat cervical facet joint capsule using custom-designed miniature electrodes.

作者信息

Chen Chaoyang, Lu Ying, Cavanaugh John M, Kallakuri Srinivasu, Patwardhan Ajit

机构信息

Spine Research Laboratory, Bioengineering Center, Wayne State University, Detroit, Michigan 48202, USA.

出版信息

Spine (Phila Pa 1976). 2005 Jun 15;30(12):1367-72. doi: 10.1097/01.brs.0000166193.39389.21.

Abstract

STUDY DESIGN

To establish a methodology for the neurophysiologic study of mechanoreceptors in the cervical facet joint capsule.

OBJECTIVES

To test a custom designed miniature dual bipolar electrode for recording the neural activity in cervical dorsal roots. To determine if the neural activity from different receptors in the capsule can be differentiated using this methodology.

SUMMARY OF BACKGROUND DATA

Injury to cervical facet joint capsules has been regarded as an important source of whiplash pain, but no neurophysiologic study has been performed to demonstrate or characterize sensory nerve function in the capsule.

METHODS

Nineteen goats weighing 34 to 55 kg were used under general anesthesia. A C4-C6 laminectomy was performed to expose the C6 nerve root. Custom designed miniature dual bipolar electrodes were used to record neural activity in the left C6 branches. Electrical and mechanical stimuli were used to evoke receptor activity in the dorsal aspect of the C5/6 capsule. Conduction velocities (CVs) of evoked units were determined by electrical stimulation and dual-bipolar-electrode recording methods. The units were classified based on their CVs. The waveform of each classified unit was saved as a template for later single unit discharge search among multiunit discharges during the stretch of the capsule. The C5/6 facet joint with capsule was pulled by a computer-controlled actuator instrumented with a load cell at a rate of 0.5 mm per second. The evoked neural activity and load were recorded, digitized, and analyzed to determine CV, discharge rate, and response to the stretch.

RESULTS

Miniature bipolar electrodes recorded the neural activity in both channels, with single unit CVs being measured. There was no discernible motion between the electrode and dorsal root when the capsule was pulled. Both local compression and stretch on capsule evoked multiunit discharges. A-beta, A-delta, and C-fiber units were found among these multiunit discharges. The rate of single unit and multiunit discharges increased during capsule stretch in the physiologic range and afterdischarges occurred beyond the physiologic range.

CONCLUSIONS

The novel miniature electrodes not requiring a micromanipulator made it feasible and reliable to record neural activity from short cervical spinal roots. Waveforms of different units could be identified, making it possible to study sensory functions of the facet joint capsule. A-beta, A-delta, and C-fiber units were found responding to mechanical stimuli, indicating that facet joint capsule has functional proprioceptors and nociceptors.

摘要

研究设计

建立一种用于颈椎小关节囊机械感受器神经生理学研究的方法。

目的

测试一种定制设计的微型双极电极,用于记录颈背根神经的神经活动。确定使用该方法能否区分来自关节囊不同感受器的神经活动。

背景数据总结

颈椎小关节囊损伤被认为是挥鞭样损伤疼痛的重要来源,但尚未进行神经生理学研究来证明或描述关节囊中感觉神经的功能。

方法

19只体重34至55千克的山羊在全身麻醉下使用。进行C4 - C6椎板切除术以暴露C6神经根。使用定制设计的微型双极电极记录左侧C6分支的神经活动。电刺激和机械刺激用于诱发C5/6关节囊背侧的感受器活动。通过电刺激和双极电极记录方法确定诱发单位的传导速度(CV)。根据其CV对单位进行分类。将每个分类单位的波形保存为模板,以便在关节囊拉伸期间在多单位放电中进行后续的单单位放电搜索。带有称重传感器的计算机控制致动器以每秒0.5毫米的速度拉动带有关节囊的C5/6小关节。记录诱发的神经活动和负荷,进行数字化处理并分析,以确定CV、放电率和对拉伸的反应。

结果

微型双极电极在两个通道中记录了神经活动,并测量了单单位CV。当关节囊被拉动时,电极与背根之间没有可察觉的移动。对关节囊的局部压迫和拉伸均诱发了多单位放电。在这些多单位放电中发现了A - β、A - δ和C纤维单位。在生理范围内关节囊拉伸期间,单单位和多单位放电率增加,在生理范围之外出现后放电。

结论

这种新型微型电极不需要显微操作器,使得从短颈脊髓神经根记录神经活动变得可行且可靠。可以识别不同单位的波形,从而有可能研究小关节囊的感觉功能。发现A - β、A - δ和C纤维单位对机械刺激有反应,表明小关节囊具有功能性本体感受器和伤害感受器。

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