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Automated cell-specific laser detection and ablation of neural circuits in neonatal brain tissue

机译:新生儿脑组织中自动细胞特异性激光检测和神经回路消融

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摘要

A key feature of neurodegenerative disease is the pathological loss of neurons that participate in generating behaviour. To investigate network properties of neural circuits and provide a complementary tool to study neurodegeneration in vitro or in situ, we developed an automated cell-specific laser detection and ablation system. The instrument consists of a two-photon and visible-wavelength confocal imaging setup, controlled by executive software, that identifies neurons in preparations based on genetically encoded fluorescent proteins or Ca2+ imaging, and then sequentially ablates cell targets while monitoring network function concurrently. Pathological changes in network function can be directly attributed to ablated cells, which are logged in real time. Here, we investigated brainstem respiratory circuits to demonstrate single-cell precision in ablation during physiological network activity, but the technique could be applied to interrogate network properties in neural systems that retain network functionality in reduced preparations in vitro or in situ.
机译:神经退行性疾病的关键特征是参与产生行为的神经元的病理丧失。为了研究神经回路的网络特性并提供补充工具来研究体外或原位神经变性,我们开发了一种自动的细胞特异性激光检测和消融系统。该仪器由一个由执行软件控制的双光子和可见波长共焦成像装置组成,该成像装置基于基因编码的荧光蛋白或Ca2 +成像识别制剂中的神经元,然后依次消融细胞靶标,同时监控网络功能。网络功能的病理变化可以直接归因于消融的细胞,这些细胞可以实时记录。在这里,我们研究了脑干呼吸回路,以证明在生理网络活动期间消融的单细胞精度,但该技术可应用于询问神经系统中的网络特性,该系统在体外或原位减少制剂中保留网络功能。

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