Sources of Rapid and Delayed New Lower Jaw Input in the Forepaw Barrel Subfield (FBS) in Rat Primary Somatosensory Cortex (SI) Following Forelimb Deafferentation

IF 2.3 4区 医学 Q3 NEUROSCIENCES
Violeta Pellicer-Morata, Lie Wang, Amy de Jongh Curry, Jack W. Tsao, Robert S. Waters
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Abstract

Previously, we reported an immediate emergence of new lower jaw input to the anterior forepaw barrel subfield (FBS) in primary somatosensory cortex (SI) following forelimb deafferentation. However, a delay of 7 weeks or more post-amputation results in the presence of this new input to both anterior and posterior FBS. The immediate change suggests pre-existing latent lower jaw input in the FBS, whereas the delayed alteration implies the involvement of alternative sources. One possible source for immediate lower jaw responses is the neighboring lower jaw barrel subfield (LJBSF). We used anatomical tracers to investigate the possible projection of LJBSF to the FBS in normal and forelimb-amputated rats. Our findings are as follows: (1) anterograde tracer injection into LJBSF in normal and amputated rats labeled fibers and terminals exclusively in the anterior FBS; (2) retrograde tracer injection in the anterior FBS in normal and forelimb-amputated rats, heavily labeled cell bodies predominantly in the posterior LJBSF, with fewer in the anterior LJBSF; (3) retrograde tracer injection in the posterior FBS in normal and forelimb-amputated rats, sparsely labeled cell bodies in the posterior LJBSF; (4) retrograde tracer injection in anterior and posterior FBS in normal and forelimb-amputated rats, labeled cells exclusively in ventral posterior lateral (VPL) nucleus and posterior thalamus (PO); (5) retrograde tracer injection in LJBSF-labeled cell bodies exclusively in ventral posterior medial thalamic nucleus and PO. These findings suggest that LJBSF facilitates rapid lower jaw reorganization in the anterior FBS, whereas VPL and/or other subcortical sites provide a likely substrate for delayed reorganization observed in the posterior FBS.

大鼠初级躯体感觉皮层(SI)前肢去感觉化后前爪桶状亚场(FBS)中快速和延迟的新下颚输入源
此前,我们曾报道过在前肢去感觉化后,初级体感皮层(SI)的前爪桶状亚场(FBS)会立即出现新的下颌输入。然而,在截肢后延迟 7 周或更长时间后,这种新的输入才会同时出现在 FBS 的前部和后部。这种直接的变化表明,下颌骨的潜在输入已经存在于 FBS 中,而延迟的变化则意味着有其他来源的参与。下颌即时反应的一个可能来源是邻近的下颌桶状亚场(LJBSF)。我们使用解剖示踪剂研究了正常大鼠和前肢截肢大鼠的下颌骨桶状亚场对 FBS 的可能投射。我们的研究结果如下(1)向正常大鼠和截肢大鼠的LJBSF前向注射示踪剂,标记的纤维和末梢完全位于FBS前部;(2)向正常大鼠和前肢截肢大鼠的FBS前部逆行注射示踪剂,大量标记的细胞体主要位于LJBSF后部,而LJBSF前部较少;(3) 在正常大鼠和前肢截肢大鼠的后部 FBS 中逆行注射示踪剂,后部 LJBSF 中的细胞体被稀疏标记;(4) 在正常大鼠和前肢截肢大鼠的前部和后部 FBS 中逆行注射示踪剂,标记细胞完全位于腹侧后外侧核(VPL)和丘脑后部(PO);(5) 在丘脑腹侧后内侧核和 PO 中逆行注射 LJBSF 标记细胞体。这些研究结果表明,LJBSF 促进了前部大脑皮层下颌骨的快速重组,而 VPL 和/或其他皮层下部位则可能是后部大脑皮层下颌骨延迟重组的基质。
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来源期刊
CiteScore
5.80
自引率
8.00%
发文量
158
审稿时长
3-6 weeks
期刊介绍: Established in 1891, JCN is the oldest continually published basic neuroscience journal. Historically, as the name suggests, the journal focused on a comparison among species to uncover the intricacies of how the brain functions. In modern times, this research is called systems neuroscience where animal models are used to mimic core cognitive processes with the ultimate goal of understanding neural circuits and connections that give rise to behavioral patterns and different neural states. Research published in JCN covers all species from invertebrates to humans, and the reports inform the readers about the function and organization of nervous systems in species with an emphasis on the way that species adaptations inform about the function or organization of the nervous systems, rather than on their evolution per se. JCN publishes primary research articles and critical commentaries and review-type articles offering expert insight in to cutting edge research in the field of systems neuroscience; a complete list of contribution types is given in the Author Guidelines. For primary research contributions, only full-length investigative reports are desired; the journal does not accept short communications.
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