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首页> 外文期刊>Brain research >Forelimb amputation-induced reorganization in the ventral posterior lateral nucleus (VPL) provides a substrate for large-scale cortical reorganization in rat forepaw barrel subfield (FBS)
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Forelimb amputation-induced reorganization in the ventral posterior lateral nucleus (VPL) provides a substrate for large-scale cortical reorganization in rat forepaw barrel subfield (FBS)

机译:前肢截肢诱导的腹侧后外侧核(VPL)重组为大鼠前额桶亚区(FBS)的大规模皮质重组提供了基础

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摘要

In this study, we examined the role of the ventral posterior lateral nucleus (VPL) as a possible substrate for large-scale cortical reorganization in the forepaw barrel subfield (FBS) of primary somatosensory cortex (SI) that follows forelimb amputation. Previously, we reported that, 6 weeks after forelimb amputation in young adult rats, new input from the shoulder becomes expressed throughout the FBS that quite likely has a subcortical origin. Subsequent examination of the cuneate nucleus (CN) 1 to 30 weeks following forelimb amputation showed that GN played an insignificant role in cortical reorganization and led to the present investigation of VPL. As a first step, we used electrophysiological recordings in forelimb intact adult rats (n=8) to map the body representation in VPL with particular emphasis on the forepaw and shoulder representations and shov/ed that VPL was somatotopically organized. We next used stimulation and recording techniques in forelimb intact rats (n=5) and examined the pattern of projection (a) from the forelimb and shoulder to SI, (b) from the forepaw and shoulder to VPL, and (c) from sites in the forepaw and shoulder representation in VPL to forelimb and shoulder sites in SI. The results showed that the projections were narrowly focused and homotopic. Electrophysiological recordings were then used to map the former forepaw representation in forelimb amputated young adult rats (n = 5) at 7 to 24 weeks after amputation. At each time period, new input from the shoulder was observed in the deafferented forepaw region in VPL. To determine whether the new shoulder inputin the deafferented forepaw VPL projected to a new shoulder site in the deafferented FBS, we examined the thalamocortical pathway in 2 forelimb-amputated rats. Stimulation of a new shoulder site in deafferented FBS antidromically-activated a cell in the former forepaw territory in VPL; however, similar stimulation from a site in the original shoulder representation, outside the deafferented region, in SI did not activate cells in the former forepaw VPL. These results suggest that the new shoulder input in deafferented FBS is relayed from cells in the former forepaw region in VPL. In the last step, we used anatomical tracing and stimulation and recording techniques in forelimb intact rats (n = 9) to examine the cuneothalamic pathway from shoulder and forepaw receptive field zones in CN to determine whether projections from the shoulder zone might provide a possible source of shoulder input to forepaw VPL. Injection of biotinylated dextran amine (BDA) into physiologically identified shoulder responsive sites in CN densely labeled axon terminals in the shoulder representation in VPL, but also gave off small collateral branches into forepaw VPL. In addition, microstimulation delivered to forepaw VPL antidromically-activated cells in shoulder receptive field sites in CN. These results suggest that forepaw VPL also receives input from shoulder receptive sites in CN that are latent or subthreshold in forelimb intact rats. However, we speculate that following amputation these latent shoulder inputs become expressed, possibly as a down-regulation of GABA inhibition from the reticular nucleus (RTN). These results, taken together, suggest that VPL provides a substrate for large-scale cortical reorganization that follows forelimb amputation.
机译:在这项研究中,我们检查了前肢截肢后原代体感皮层(SI)的前桶子区(FBS)中腹侧后外侧核(VPL)作为大规模皮层重组的可能基质的作用。先前,我们报道说,在成年大鼠的前肢截肢后6周,整个FBS都表达了来自肩膀的新输入,这很可能起源于皮层下。前肢截肢后1至30周对楔形核(CN)的后续检查显示,GN在皮层重组中起着微不足道的作用,并导致了目前对VPL的研究。第一步,我们使用完整的前肢成年大鼠(n = 8)的电生理记录来绘制VPL中的身体表征,特别着重于前爪和肩膀的表征,并证明VPL是通过体位组织的。接下来,我们在完整的前肢大鼠(n = 5)中使用刺激和记录技术,并检查(a)从前肢和肩膀到SI的投影模式,(b)从前脚和肩膀到VPL的投影模式,以及(c)从部位的投影模式在VPL中的前爪和肩膀代表处到SI中的前肢和肩膀部位。结果表明,这些投影集中狭窄且同构。然后使用电生理记录在截肢后7至24周绘制前肢截肢成年幼鼠(n = 5)中的前爪代表图。在每个时间段中,在VPL缺牙的前爪区域观察到来自肩膀的新输入。为了确定脱去力的前爪VPL中的新肩部输入是否投射到脱去力的FBS中的新肩部位置,我们检查了2只前肢截肢大鼠的丘脑皮质通路。刺激去力低下的FBS中新的肩部位置抗坏死地激活了VPL前前爪区域中的细胞;然而,在SI的原始脱肩区域之外的原始肩部代表处,类似的刺激并没有激活前额VPL中的细胞。这些结果表明,脱胎的FBS中新的肩膀输入是从VPL中前脚区域的细胞中转来的。在最后一步中,我们使用了完整的前肢大鼠(n = 9)的解剖示踪,刺激和记录技术,检查了来自CN中肩部和前爪感受野区域的楔形丘脑通路,以确定从肩部区域伸出的突起物是否可能提供了可能的来源额输入到前爪VPL。将生物素化的右旋糖酐胺(BDA)注射到VPL肩部代表的CN密集标记的轴突末端的生理学鉴定的肩部反应位点中,但也向前爪VPL释放了小的侧支。另外,微刺激递送至CN中肩部感受野位点的前爪VPL抗双链激活细胞。这些结果表明,前爪VPL还从前肢完整大鼠中潜在或低于阈值的CN的肩部接受位点接收输入。然而,我们推测截肢后这些潜伏的肩膀输入被表达,可能是由于网状核(RTN)对GABA抑制的下调。这些结果加在一起表明,VPL为肢体截肢后的大规模皮层重组提供了基础。

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