首页> 外文期刊>The Journal of Comparative Neurology >Patterns of convergence in rat zona incerta from the trigeminal nuclear complex: light and electron microscopic study.
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Patterns of convergence in rat zona incerta from the trigeminal nuclear complex: light and electron microscopic study.

机译:三叉神经核复合物在大鼠不透明带中会聚的模式:光和电子显微镜研究。

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摘要

In contrast to the restricted receptive field (RF) properties of the ventral posteromedial nucleus (VPM), neurons of the ventral thalamus zona incerta (ZI) have been shown to exhibit multiwhisker responses that vary from the ventral (ZIv) to the dorsal (ZId) subdivision. Differences in activity may arise from the trigeminal nuclear complex (TNC) and result from subnucleus specific inputs via certain cells of origin, axon distribution patterns, fiber densities, bouton sizes, or postsynaptic contact sites. We tested this hypothesis by assessing circuit relationships among TNC, ZI, and VPM. Results from tracer studies show that, 1) relative to ZId, the trigeminal projection to ZIv is denser and arises predominantly from the principalis (PrV) and interpolaris (SpVi) subdivisions; 2) the incertal projection from TNC subnuclei overlaps and covers most of ZIv; 3) two sets of PrV axons terminate in ZI: a major subtype, possessing bouton-like swellings, and a few fine fibers, with minimal specialization; 4) both PrV and SpVi terminals exhibit asymmetric endings and preferentially target dendrites of ZI neurons; 5) small and large neurons in PrV are labeled after retrograde injections into ZI; 6) small PrV cells with incertal projections form a population that is distinct from those projecting to VPM; and 7) approximately 30-50% of large cells in PrV send collaterals to ZI and VPM. These findings suggest that, 1) although information to ZI and VPM is essentially routed along separate TNC circuits, streams of somatosensory code converge in ZI to establish large RFs, and 2) subregional differences in ZI response profiles are attributable in part to TNC innervation density.
机译:与腹侧后内侧核(VPM)的受限感受野(RF)特性相反,腹侧丘脑不透明带(ZI)的神经元已显示出多种晶须反应,从腹侧(ZIv)到背侧(ZId) )细分。活动的差异可能是由三叉神经核复合物(TNC)引起的,并且是由某些特定来源的细胞,轴突分布方式,纤维密度,钮扣尺寸或突触后接触部位的特定亚核输入引起的。我们通过评估TNC,ZI和VPM之间的电路关系来检验该假设。示踪剂研究的结果表明:1)相对于ZId,三叉神经向ZIv的投影更密集,并且主要来自于原理(PrV)和极间(SpVi)细分; 2)来自TNC亚核的非正常投影重叠并覆盖了大部分ZIV。 3)两组PrV轴突在ZI处终止:一个主要的亚型,具有类似钮扣的肿胀,以及一些细纤维,且专业化程度最低; 4)PrV和SpVi末端均显示不对称末端,并优先靶向ZI神经元的树突; 5)在向ZI逆行注射后,标记PrV中的大小神经元; 6)具有不正常投射的小型PrV细胞形成的种群不同于那些投射至VPM的种群; 7)PrV中约有30-50%的大细胞向ZI和VPM发送抵押品。这些发现表明,1)尽管向ZI和VPM的信息基本上是沿着单独的TNC电路路由的,但是体感代码流在ZI中会聚以建立较大的RF,并且2)ZI响应配置文件中的子区域差异部分归因于TNC的神经支配密度。

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