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大鼠中脑导水管周围灰质与脑桥-延髓呼吸网络的相互连接

Reciprocal connectivity of the periaqueductal gray with the ponto-medullary respiratory network in rat.

作者信息

Trevizan-Baú Pedro, Furuya Werner I, Mazzone Stuart B, Stanić Davor, Dhingra Rishi R, Dutschmann Mathias

机构信息

The Florey Institute of Neuroscience and Mental Health, Discovery Neuroscience Theme, The University of Melbourne, Parkville, VIC 3010, Australia.

Department of Anatomy and Neuroscience, The University of Melbourne, Parkville, VIC 3010, Australia.

出版信息

Brain Res. 2021 Apr 15;1757:147255. doi: 10.1016/j.brainres.2020.147255. Epub 2021 Jan 27.

Abstract

Synaptic activities of the periaqueductal gray (PAG) can modulate or appropriate the respiratory motor activities in the context of behavior and emotion via descending projections to nucleus retroambiguus. However, alternative anatomical pathways for the mediation of PAG-evoked respiratory modulation via core nuclei of the brainstem respiratory network remains only partially described. We injected the retrograde tracer Cholera toxin subunit B (CT-B) in the pontine Kölliker-Fuse nucleus (KFn, n = 5), medullary Bötzinger (BötC, n = 3) and pre-Bötzinger complexes (pre-BötC; n = 3), and the caudal raphé nuclei (n = 3), and quantified the descending connectivity of the PAG targeting these brainstem respiratory regions. CT-B injections in the KFn, pre-BötC, and caudal raphé, but not in the BötC, resulted in CT-B-labeled neurons that were predominantly located in the lateral and ventrolateral PAG columns. In turn, CT-B injections in the lateral and ventrolateral PAG columns (n = 4) produced the highest numbers of CT-B-labeled neurons in the KFn and far fewer numbers of labeled neurons in the pre-BötC, BötC, and caudal raphé. Analysis of the relative projection strength revealed that the KFn shares the densest reciprocal connectivity with the PAG (ventrolateral and lateral columns, in particular). Overall, our data imply that the PAG may engage a distributed respiratory rhythm and pattern generating network beyond the nucleus retroambiguus to mediate downstream modulation of breathing. However, the reciprocal connectivity of the KFn and PAG suggests specific roles for synaptic interaction between these two nuclei that are most likely related to the regulation of upper airway patency during vocalization or other volitional orofacial behaviors.

摘要

导水管周围灰质(PAG)的突触活动可通过向疑后核的下行投射,在行为和情绪背景下调节或协调呼吸运动活动。然而,关于通过脑干呼吸网络核心核团介导PAG诱发的呼吸调节的替代解剖学途径,目前仍仅部分得到描述。我们将逆行示踪剂霍乱毒素B亚单位(CT-B)注射到脑桥的 Kölliker-Fuse 核(KFn,n = 5)、延髓的包钦格复合体(BötC,n = 3)和前包钦格复合体(pre-BötC;n = 3)以及尾侧中缝核(n = 3),并量化了PAG靶向这些脑干呼吸区域的下行连接性。向KFn、pre-BötC和尾侧中缝核注射CT-B,但不向BötC注射,导致CT-B标记的神经元主要位于外侧和腹外侧PAG柱。反过来,向外侧和腹外侧PAG柱注射CT-B(n = 4),在KFn中产生的CT-B标记神经元数量最多,而在pre-BötC、BötC和尾侧中缝核中标记神经元数量少得多。对相对投射强度的分析表明,KFn与PAG(特别是腹外侧和外侧柱)共享最密集的相互连接。总体而言,我们的数据表明,PAG可能参与了一个超出疑后核的分布式呼吸节律和模式生成网络,以介导呼吸的下游调节。然而,KFn和PAG的相互连接表明这两个核之间突触相互作用具有特定作用,这很可能与发声或其他随意性口面部行为期间上呼吸道通畅性的调节有关。

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