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负责幼体尾部姿势控制的前庭脊髓输入的功能组织 。

Functional organization of vestibulospinal inputs responsible for tail postural control in larval .

作者信息

Barrios Gabriel, Olechowski-Bessaguet Anne, Pain Mathilde, Bacqué-Cazenave Julien, Cardoit Laura, Cabirol Marie-Jeanne, Le Ray Didier, Lambert François M

机构信息

Univ Bordeaux, CNRS, INCIA, UMR 5287, Bordeaux, France.

Normandie Univ, Unicaen, CNRS, EthoS, Caen, France.

出版信息

Front Neurol. 2024 Aug 16;15:1439784. doi: 10.3389/fneur.2024.1439784. eCollection 2024.

Abstract

In all vertebrates, maintaining trunk posture primarily depends on descending commands originating from brainstem vestibulospinal nuclei. Despite being broadly outlined across species, the detailed anatomical and operational structure of these vestibulospinal networks remains poorly understood. frogs have previously served as an excellent model for exploring such anatomical and functional aspects in relation to the animal's behavioral requirements. In this study, we examined the reflex motor reactions induced by vestibular stimulation in pre-metamorphic tadpoles. Our findings indicate that natural vestibular stimulation in the horizontal plane yields greater efficacy compared to stimulation in other planes, a phenomenon replicated in a frequency-dependent manner through specific galvanic stimulation (GVS) of the horizontal semicircular canals. With the exception of a very rostral cluster of neurons that receive vestibular inputs and project to the spinal cord, the overall anatomical segregation of vestibulospinal nuclei in the brainstem mirrors that observed in juvenile frogs. However, our results suggest closer similarities to mammalian organization than previously acknowledged. Moreover, we demonstrated that vestibulospinal cells project not only to spinal motoneurons in rostral segments but also to more distal segments that undergo regression during metamorphosis. Lastly, we illustrated how vestibular-induced spinal reflexes change during larval development, transitioning from tail swim-based activity to rostral trunk bursting responses, likely anticipating postural control in post-metamorphic frogs.

摘要

在所有脊椎动物中,维持躯干姿势主要依赖于源自脑干前庭脊髓核的下行指令。尽管跨物种的大致轮廓已被勾勒出来,但这些前庭脊髓网络的详细解剖结构和运作机制仍知之甚少。青蛙此前一直是探索与动物行为需求相关的此类解剖学和功能方面的优秀模型。在本研究中,我们研究了前庭刺激在前变态期蝌蚪中诱发的反射性运动反应。我们的研究结果表明,与其他平面的刺激相比,水平面上的自然前庭刺激产生的效果更佳,通过水平半规管的特定电刺激(GVS)以频率依赖的方式也能重现这一现象。除了一小群非常靠前的接受前庭输入并投射到脊髓的神经元外,脑干中前庭脊髓核的整体解剖分离情况与幼蛙中观察到的情况相似。然而,我们的结果表明,与之前所认识到的相比,它与哺乳动物的组织更为相似。此外,我们证明前庭脊髓细胞不仅投射到头部节段的脊髓运动神经元,还投射到变态过程中会退化的更靠后的节段。最后,我们说明了前庭诱发的脊髓反射在幼体发育过程中是如何变化的,从基于尾巴摆动的活动转变为头部躯干爆发性反应,这可能预示着变态后青蛙的姿势控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/164b/11361976/97f2b998b88d/fneur-15-1439784-g001.jpg

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