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躯体外疼痛:三叉神经痛防御性近体空间变形。

Pain outside the body: defensive peripersonal space deformation in trigeminal neuralgia.

机构信息

Department of Neuroscience, Physiology and Pharmacology, University College London (UCL), London, WC1E 6BT, UK.

Centre for Mathematics and Physics in the Life Sciences and EXperimental biology (CoMPLEX), University College London, London, WC1E 6BT, UK.

出版信息

Sci Rep. 2017 Oct 2;7(1):12487. doi: 10.1038/s41598-017-12466-5.

Abstract

Perception of space has been guiding effective therapeutic interventions in a number of unilateral chronic pain conditions. However little is known about how trigeminal neuralgia (TN), a condition in which trigeminal stimulation triggers paroxysmal facial pain, affects defensive peripersonal space (DPPS), the portion of space surrounding the body within which defensive responses are enhanced. Given that TN is unilateral, in TN patients the DPPS of the face might not be horizontally symmetric as in pain-free individuals, but instead larger around the affected side. We tested this a priori hypothesis by measuring the proximity-dependent modulation of the hand-blink reflex. Stimuli delivered to the hand ipsilateral to TN elicited a stronger blink, particularly when it was measured from the eye ipsilateral to TN and the hand was closer to the face. Geometric modelling revealed (1) that DPPS was larger on the side of space ipsilateral to TN, and (2) this asymmetry was consequent to an increased estimated potential of sensory events to cause harm when they occur ipsilaterally to TN. These observations demonstrate that neural mechanisms underlying body protection in TN are adjusted to reduce the likelihood that external events evoke the painful paroxysm typical of this condition.

摘要

在许多单侧慢性疼痛疾病中,对空间的感知一直指导着有效的治疗干预。然而,对于三叉神经痛(TN)如何影响防御性近体空间(DPPS),即身体周围的空间部分,防御反应增强,人们知之甚少。TN 是单侧的,因此在 TN 患者中,DPPS 可能不像无痛个体那样在面部呈现水平对称,而是在受影响侧更大。我们通过测量眨眼反射的距离依赖性调制来检验这一先验假设。与 TN 同侧的手刺激会引起更强的眨眼反射,尤其是当它从 TN 同侧的眼睛测量,并且手更靠近面部时。几何建模显示:(1)DPPS 在 TN 同侧的空间更大;(2)这种不对称是由于当刺激发生在 TN 同侧时,感觉事件引起伤害的潜在可能性增加。这些观察结果表明,TN 中身体保护的神经机制被调整以降低外部事件引发该病症典型疼痛发作的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7564/5624942/11aefce931f7/41598_2017_12466_Fig1_HTML.jpg

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