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机械压迫和缺氧对神经根及背根神经节的影响:利用体外模型对异位放电的分析

The effects of mechanical compression and hypoxia on nerve root and dorsal root ganglia. An analysis of ectopic firing using an in vitro model.

作者信息

Sugawara O, Atsuta Y, Iwahara T, Muramoto T, Watakabe M, Takemitsu Y

机构信息

Department of Orthopedic Surgery, Asahikawa Medical College, Japan.

出版信息

Spine (Phila Pa 1976). 1996 Sep 15;21(18):2089-94. doi: 10.1097/00007632-199609150-00006.

DOI:10.1097/00007632-199609150-00006
PMID:8893432
Abstract

STUDY DESIGN

This study analyzed in vitro experiments of ectopic firing evoked by mechanical compression or hypoxia of canine lumbar dorsal roots with dorsal root ganglia using an in vitro model.

OBJECTIVES

The results were correlated to understand the pathophysiology of radiculopathy, which manifests abnormal sensation and pain.

SUMMARY OF BACKGROUND DATA

It has been speculated that blood flow in the nerve root and mechanical compression play major roles in the production of radiculopathy symptoms. However, no precise experimental studies have been conducted on the relationship between these factors and the development of ectopic firing.

METHODS

Canine lumbar dorsal roots with dorsal root ganglia were immersed in an oxygenated artificial cerebrospinal fluid, and activity of the nerve root was recorded using bipolar platinum electrodes. Using this model, the effects of quantitative mechanical compression and hypoxia on the ectopic firing were analyzed.

RESULTS

When compression was applied, mechanical thresholds for eliciting firing were much lower in dorsal root ganglia than in dorsal roots, and the firing lasted for a longer period in dorsal root ganglia. Under hypoxia, dorsal root ganglia showed firing, and their thresholds from mechanical stimuli decreased significantly. In dorsal roots, impulse propagation was not affected, whereas firing was seen under the hypoxic condition.

CONCLUSION

Dorsal root ganglia are highly sensitive to mechanical compression and hypoxia and closely related to abnormal sensations and pain in radiculopathy.

摘要

研究设计

本研究使用体外模型分析了犬腰段背根神经节机械压迫或缺氧诱发的异位放电的体外实验。

目的

关联结果以了解神经根病的病理生理学,神经根病表现为感觉异常和疼痛。

背景数据总结

据推测,神经根内的血流和机械压迫在神经根病症状的产生中起主要作用。然而,尚未针对这些因素与异位放电发展之间的关系进行精确的实验研究。

方法

将带有背根神经节的犬腰段背根浸入充氧的人工脑脊液中,使用双极铂电极记录神经根的活动。利用该模型,分析了定量机械压迫和缺氧对异位放电的影响。

结果

施加压迫时,背根神经节引发放电的机械阈值远低于背根,且背根神经节中的放电持续时间更长。在缺氧条件下,背根神经节出现放电,其对机械刺激的阈值显著降低。在背根中,冲动传导未受影响,而在缺氧条件下可见放电。

结论

背根神经节对机械压迫和缺氧高度敏感,且与神经根病中的感觉异常和疼痛密切相关。

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