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体感门控与丘脑梗死性卒中的恢复

Somatosensory gating and recovery from stroke involving the thalamus.

作者信息

Staines W Richard, Black Sandra E, Graham Simon J, McIlroy William E

机构信息

Department of Kinesiology and Health Science, York University, Toronto, Ontario, Canada.

出版信息

Stroke. 2002 Nov;33(11):2642-51. doi: 10.1161/01.str.0000032552.40405.40.

DOI:10.1161/01.str.0000032552.40405.40
PMID:12411655
Abstract

BACKGROUND AND PURPOSE

In the undamaged brain, sensory input to the cortex is intricately controlled via sensory gating mechanisms. Given the role of corticothalamic pathways in this control, it was hypothesized that in patients recovering from thalamic stroke there would be evidence of disrupted sensory gating and that efficient control of cortical sensory inputs would emerge during recovery.

METHODS

Four patients were tested serially after stroke from 1 to 24 weeks after injury. Perceptual thresholds, somatosensory evoked potential amplitudes, and functional MRI activations under specific somatosensory stimulation conditions were measured.

RESULTS

All patients demonstrated comparable results, revealing disrupted threshold detection to vibrotactile stimuli in the presence of a concurrent competing, contralateral input. In contrast, threshold detection was comparable between the affected and unaffected sides when there were no competing stimuli. This compromised capacity to inhibit competing sensory inputs was paralleled by a reduction in the measured activation of cortical representation in the stroke-affected hemisphere (functional MRI and somatosensory evoked potential) during bilateral stimulation. After recovery, perceptual detection improvements during bilateral stimulation were paralleled by enhancements of primary somatosensory cortical activation in the stroke-affected hemisphere.

CONCLUSIONS

These results provide insight into potential mechanisms that contribute to sensory gating and suggest that the ability to control sensory input through effective gating mechanisms, in addition to primary somatosensory representation, may be important for poststroke sensory recovery.

摘要

背景与目的

在未受损的大脑中,通过感觉门控机制对皮质的感觉输入进行复杂的控制。鉴于皮质丘脑通路在这种控制中的作用,有人推测,在丘脑卒中恢复的患者中,会有感觉门控中断的证据,并且在恢复过程中会出现对皮质感觉输入的有效控制。

方法

对4例卒中患者在受伤后1至24周进行连续测试。测量了特定体感刺激条件下的感知阈值、体感诱发电位幅度和功能磁共振成像激活情况。

结果

所有患者均表现出类似的结果,即在存在同时竞争的对侧输入时,对振动触觉刺激的阈值检测受到干扰。相比之下,在没有竞争刺激时,患侧和未患侧的阈值检测相当。在双侧刺激期间,这种抑制竞争感觉输入的能力受损与卒中受累半球皮质表征的测量激活减少(功能磁共振成像和体感诱发电位)同时出现。恢复后,双侧刺激期间感知检测的改善与卒中受累半球初级体感皮质激活的增强同时出现。

结论

这些结果为有助于感觉门控的潜在机制提供了见解,并表明除了初级体感表征外,通过有效的门控机制控制感觉输入的能力可能对卒中后感觉恢复很重要。

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