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体感皮层对颤振刺激反应的幅度依赖性

Amplitude-dependency of response of SI cortex to flutter stimulation.

作者信息

Simons Stephen B, Tannan Vinay, Chiu Joannellyn, Favorov Oleg V, Whitsel Barry L, Tommerdahl Mark

机构信息

Department of Biomedical Engineering, University of North Carolina, Chapel Hill, North Carolina 27599, USA.

出版信息

BMC Neurosci. 2005 Jun 21;6:43. doi: 10.1186/1471-2202-6-43.

Abstract

BACKGROUND

It is established that increasing the amplitude of a flutter stimulus increases its perceived intensity. Although many studies have examined this phenomenon with regard to the responding afferent population, the way in which the intensity of a stimulus is coded in primary somatosensory cortex (SI) remains unclear.

RESULTS

Optical intrinsic signal (OIS) imaging was used to study the evoked responses in SI of anesthetized squirrel monkeys by 25 Hz sinusoidal vertical skin displacement stimulation. Stimuli were 10 sec duration with a 50 sec inter-stimulus interval. Stimulus amplitude ranged from 50 to 400 microns and different amplitudes were interleaved. Control levels of activity were measured in the absence of stimulation, and used to compare with activation levels evoked by the different stimulus amplitudes. Stimulation of a discrete skin site on the forelimb evoked a prominent increase in absorbance within the forelimb representational region in cytoarchitectonic areas 3b and 1 of the contralateral hemisphere. An increase in stimulus amplitude led to a proportional increase in the magnitude of the absorbance increase in this region of areas 3b and 1 while surrounding cortex underwent a decrease in absorbance. Correlation maps revealed that as stimulus amplitude is increased, the spatial extent of the activated region in SI remains relatively constant, and the activity within this region increases progressively. Additionally, as stimulus amplitude is increased to suprathreshold levels, activity in the surround of the activated SI territory decreases, suggesting an increase in inhibition of neuronal activity within these regions.

CONCLUSION

Increasing the amplitude of a flutter stimulus leads to a proportional increase in absorbance within the forelimb representational region of SI. This most likely reflects an increase in the firing rate of neurons in this region of SI. The relatively constant spatial extent of this stimulus-evoked increase in absorbance suggests that an increase in the amplitude of a 25 Hz skin stimulus does not evoke a larger area of SI neuronal activation due to an amplitude-dependent lateral inhibitory effect that spatially funnels the responding SI neuronal population.

摘要

背景

已证实增加颤振刺激的幅度会增加其感知强度。尽管许多研究已针对响应的传入群体研究了这一现象,但刺激强度在初级体感皮层(SI)中编码的方式仍不清楚。

结果

使用光学内在信号(OIS)成像研究了麻醉松鼠猴SI中由25 Hz正弦垂直皮肤位移刺激诱发的反应。刺激持续时间为10秒,刺激间隔为50秒。刺激幅度范围为50至400微米,不同幅度交错呈现。在无刺激情况下测量活动的对照水平,并用于与不同刺激幅度诱发的激活水平进行比较。刺激前肢上的一个离散皮肤部位会引起对侧半球细胞构筑区3b和1中前肢代表区域内吸光度的显著增加。刺激幅度的增加导致3b和1区该区域吸光度增加的幅度成比例增加,而周围皮层的吸光度则下降。相关图显示,随着刺激幅度增加,SI中激活区域的空间范围保持相对恒定,且该区域内的活动逐渐增加。此外,当刺激幅度增加到阈上水平时,激活的SI区域周围的活动减少,表明这些区域内神经元活动的抑制作用增强。

结论

增加颤振刺激的幅度会导致SI前肢代表区域内的吸光度成比例增加。这很可能反映了SI该区域神经元放电率的增加。这种由刺激诱发的吸光度增加的相对恒定的空间范围表明,25 Hz皮肤刺激幅度的增加不会因幅度依赖性侧向抑制效应而诱发更大面积的SI神经元激活,该效应在空间上使响应的SI神经元群体集中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c728/1166561/58e98e5b1428/1471-2202-6-43-1.jpg

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