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脊髓损伤后猴子体感区3b和1区对触觉刺激的皮质激活时空动力学改变

Altered Spatiotemporal Dynamics of Cortical Activation to Tactile Stimuli in Somatosensory Area 3b and Area 1 of Monkeys after Spinal Cord Injury.

作者信息

Wu Ruiqi, Su Langting, Yang Pai-Feng, Min Chen Li

机构信息

Institute of Imaging Science, Vanderbilt University, Nashville, Tennessee 37232; Department of Radiology and Radiological Sciences, Vanderbilt University Medical Center, Nashville, Tennessee 37232; Wuhan Institute of Physics and Mathematics, The Chinese Academy of Sciences/State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan, People's Republic of China 430071.

Psychology Undergraduate Program, Duke University , Durham, North Carolina 27708.

出版信息

eNeuro. 2016 Sep 29;3(5). doi: 10.1523/ENEURO.0095-16.2016. eCollection 2016 Sep-Oct.

Abstract

Reactivation of deafferented cortex plays a key role in mediating the recovery of lost functions, although the precise mechanism is not fully understood. This study simultaneously characterized the dynamic spatiotemporal features of tactile responses in areas 3b and 1 before and 6-8 weeks after partial dorsal column lesion (DCL), and examined how the reactivation relates to the recovery of simple hand use in squirrel monkeys. A combination of high spatiotemporal resolution functional intrinsic optical imaging, microelectrode mapping, behavioral assessment, and tracer histology methods were used. Compared with the normal cortex, we found that the responses of deafferented areas 3b and 1 to 3 s of continuous 8 Hz tactile stimulation of a single digit were significantly weaker and more transient. This finding indicates a loss of response to sustained tactile stimuli. The activation area enlarged for areas 3b and 1 in both directions along digit representation (medial-lateral) and across areas (anterior-posterior). All subjects showed behavioral deficits in a food reaching-grasping-retrieving task within the first 5 weeks after DCL, but recovered at the time when optical images were acquired. Summarily, we showed that these populations of cortical neurons responded to peripheral tactile inputs, albeit in significantly altered manners in each area, several weeks after deafferentation. We propose that compromised ascending driven inputs, impaired lateral inhibition, and local integration of input signals may account for the altered spatiotemporal dynamics of the reactivated areas 3b and 1 cortices. Further investigation with large sample sizes is needed to fully characterize the effects of deafferentation on area 1 activation size.

摘要

去传入皮质的重新激活在介导丧失功能的恢复中起关键作用,尽管其确切机制尚未完全明确。本研究同时表征了部分背柱损伤(DCL)前以及损伤后6 - 8周时3b区和1区触觉反应的动态时空特征,并研究了这种重新激活与松鼠猴简单手部功能恢复之间的关系。使用了高时空分辨率功能内在光学成像、微电极测绘、行为评估和示踪组织学方法的组合。与正常皮质相比,我们发现去传入的3b区和1区对单个手指持续8 Hz触觉刺激3秒的反应明显更弱且更短暂。这一发现表明对持续触觉刺激的反应丧失。沿着手指表征方向(内侧 - 外侧)以及跨区域(前后),3b区和1区的激活区域均增大。所有受试者在DCL后的前5周内,在食物抓取 - 取回任务中均表现出行为缺陷,但在获取光学图像时恢复。总之,我们表明这些皮质神经元群体在去传入数周后对周围触觉输入有反应,尽管每个区域的反应方式都有显著改变。我们提出,上行驱动输入受损、侧向抑制受损以及输入信号的局部整合可能是重新激活的3b区和1区皮质时空动态改变的原因。需要进一步进行大样本研究以全面表征去传入对1区激活大小的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5f6/5041163/edbbeed52e14/enu0051621350001.jpg

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