首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Using an Adapted Microfluidic Olfactory Chip for the Imaging of Neuronal Activity in Response to Pheromones in Male C. Elegans Head Neurons
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Using an Adapted Microfluidic Olfactory Chip for the Imaging of Neuronal Activity in Response to Pheromones in Male C. Elegans Head Neurons

机译:使用适应的微流控嗅觉芯片对雄性秀丽隐杆线虫头部神经元响应信息素的神经元活动的成像。

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摘要

The use of calcium indicators has greatly enhanced our understanding of neural dynamics and regulation. The nematode Caenorhabditis elegans, with its completely mapped nervous system and transparent anatomy, presents an ideal model for understanding real-time neural dynamics using calcium indicators. In combination with microfluidic technologies and experimental designs, calcium-imaging studies using these indicators are performed in both free-moving and trapped animals. However, most previous studies utilizing trapping devices, such as the olfactory chip described in Chronis et al., have devices designed for use in the more common hermaphrodite, as the less common male is both morphologically and structurally dissimilar. An adapted olfactory chip was designed and fabricated for increased efficiency in male neuronal imaging with using young adult animals. A turn was incorporated into the worm loading port to rotate the animals and to allow for the separation of the individual neurons within a bilateral pair in 2D imaging. Worms are exposed to a controlled flow of odorant within the microfluidic device, as described in previous hermaphrodite studies. Calcium transients are then analyzed using the open-source software ImageJ. The procedure described herein should allow for an increased amount of male-based C. elegans calcium imaging studies, deepening our understanding of the mechanisms of sex-specific neuronal signaling.
机译:钙指示剂的使用极大地增进了我们对神经动力学和调节的理解。线虫秀丽隐杆线虫具有完整的神经系统图谱和透明的解剖结构,是使用钙指示剂了解实时神经动力学的理想模型。结合微流体技术和实验设计,在自由移动和被困动物中都进行了使用这些指示剂的钙成像研究。然而,大多数以前使用捕集装置的研究,例如Chronis等人描述的嗅觉芯片,都设计了用于更常见的雌雄同体的装置,因为不太常见的雄性在形态和结构上都不同。设计和制造了一种适应性嗅觉芯片,以提高使用成年雄性动物进行雄性神经元成像的效率。将一个转弯并入蠕虫装载端口,以旋转动物并允许在2D成像中分离双侧对中的单个神经元。如先前的雌雄同体研究所述,蠕虫暴露于微流体装置内受控的气味流中。然后使用开源软件ImageJ分析钙瞬变。本文所述的程序应允许增加基于男性的秀丽隐杆线虫钙成像研究的数量,从而加深我们对性别特异性神经元信号传导机制的理解。

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