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涡虫脑活动的神经生理学测量:神经科学研究的独特模型。

Neurophysiological measurements of planarian brain activity: a unique model for neuroscience research.

作者信息

Benita Orel, Nesher Nir, Shomrat Tal

机构信息

Department of Neurobiology, Hebrew University, Jerusalem 9190401, Israel.

Faculty of Marine Sciences, Ruppin Academic Center, Michmoret 4029700, Israel.

出版信息

Biol Open. 2024 Aug 15;13(8). doi: 10.1242/bio.060480. Epub 2024 Aug 8.

Abstract

Planarians are well-known model organisms for regeneration and developmental biology research due to their remarkable regenerative capacity. Here, we aim to advocate for the use of planaria as a valuable model for neurobiology, as well. Planarians have most of the major qualities of more developed organisms, including a primal brain. These traits combined with their exceptional regeneration capabilities, allow neurobiological experiments not possible in any other model organism, as we demonstrate by electrophysiological recording from planaria with two heads that control a shared body. To facilitate planarian neuroscience research, we developed an extracellular multi-unit recording procedure for the planarians fragile brain (Dugesia japonica). We created a semi-intact preparation restrained with fine dissection pins, enabling hours of reliable recording, via a suction electrode. Here, we demonstrate the feasibility and potential of planarian neurophysiological research by characterizing the neuronal activity during simple learning processes and responses to various stimuli. In addition, we examined the use of linalool as anesthetic agent to allows recordings from an intact, large worm and for fine electrophysiological approaches such as intracellular recording. The demonstrated ability for neurophysiological measurements, along with the inherent advantages of planarians, promotes this exceptional model organism for neuroscience research.

摘要

涡虫因其卓越的再生能力,是再生生物学和发育生物学研究中广为人知的模式生物。在此,我们旨在倡导将涡虫也用作神经生物学研究的宝贵模式生物。涡虫具备大多数更复杂生物体的主要特征,包括一个原始大脑。这些特征与它们非凡的再生能力相结合,使得在其他任何模式生物中都无法开展的神经生物学实验成为可能,比如我们通过对控制同一个身体的双头涡虫进行电生理记录所展示的那样。为了促进涡虫神经科学研究,我们为涡虫脆弱的大脑(日本三角涡虫)开发了一种细胞外多单元记录方法。我们通过精细解剖针固定,创建了一种半完整标本,借助吸力电极能够进行长达数小时的可靠记录。在此,我们通过描述简单学习过程中的神经元活动以及对各种刺激的反应,展示了涡虫神经生理学研究的可行性和潜力。此外,我们研究了芳樟醇作为麻醉剂的用途,以便能够对完整的大型涡虫进行记录,并用于细胞内记录等精细的电生理方法。所展示的神经生理学测量能力,以及涡虫固有的优势,使这种非凡的模式生物在神经科学研究中得到推广。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18c4/11391828/36f1566ef416/biolopen-13-060480-g1.jpg

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