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人体足底电刺激诱发的兴奋性和抑制性反射感受野的模块化组织

Modular organization of excitatory and inhibitory reflex receptive fields elicited by electrical stimulation of the foot sole in man.

作者信息

Sonnenborg F A, Andersen O K, Arendt-Nielsen L

机构信息

Laboratory for Experimental Pain Research, Center for Sensory-Motor Interaction, Aalborg University, Fredrik Bajers Vej 7, D3, DK-9220, Aalborg, Denmark.

出版信息

Clin Neurophysiol. 2000 Dec;111(12):2160-9. doi: 10.1016/s1388-2457(00)00472-7.

Abstract

OBJECTIVES

The present study aimed to investigate how the inhibitory and excitatory reflex components of the human (polysynaptic) withdrawal reflex are organized depending on the stimulation site. The reflexes were elicited during a voluntary pre-contraction (between 10 and 20% of maximum voluntary contraction) of two antagonistic muscles.

METHODS

Inhibitory and excitatory reflex receptive fields to tibialis anterior (TA) and soleus (SO) were mapped in 14 healthy subjects using randomized electrical stimulation at 16 sites of the foot sole. Low, non-painful (3x perception threshold), and high, painful (1.5x pain threshold), stimulus intensities were used.

RESULTS

The inhibitory reflex receptive fields were organized in a highly functional manner supporting the action of the excitatory reflex. Together the two reflexes result in an optimal withdrawal from the stimulus. Low stimulation intensity was found sufficient to elicit the inhibitory reflex. High stimulation intensity caused a reversal of the inhibition to excitation in tibialis anterior. In soleus the inhibition was facilitated for stronger intensities.

CONCLUSION

In conclusion, findings in animals of a modular organization of inhibitory reflexes are reproduced in humans.

摘要

目的

本研究旨在探究人类(多突触)退缩反射的抑制性和兴奋性反射成分如何根据刺激部位进行组织。反射在两块拮抗肌的自愿预收缩期间(最大自愿收缩的10%至20%)诱发。

方法

在14名健康受试者中,通过在脚底16个部位进行随机电刺激,绘制了胫前肌(TA)和比目鱼肌(SO)的抑制性和兴奋性反射感受野。使用了低强度、非疼痛性(3倍感觉阈值)和高强度、疼痛性(1.5倍疼痛阈值)的刺激强度。

结果

抑制性反射感受野以高度功能性的方式组织起来,支持兴奋性反射的作用。这两种反射共同作用导致对刺激的最佳退缩。发现低刺激强度足以引发抑制性反射。高刺激强度导致胫前肌的抑制作用转为兴奋。在比目鱼肌中,更强的刺激强度促进了抑制作用。

结论

总之,动物中抑制性反射模块化组织的研究结果在人类中得到了重现。

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