Frost William N, Wang Jean, Brandon Christopher J
Department of Cell Biology and Anatomy, The Chicago Medical School, Rosalind Franklin University of Medicine and Science, 3333 Green Bay Road, North Chicago, IL 60064, USA.
J Neurosci Methods. 2007 May 15;162(1-2):148-54. doi: 10.1016/j.jneumeth.2007.01.003. Epub 2007 Jan 13.
Optical recording studies of invertebrate neural networks with voltage-sensitive dyes seldom employ conventional intracellular electrodes. This may in part be due to the traditional reliance on compound microscopes for such work. While such microscopes have high light-gathering power, they do not provide depth of field, making working with sharp electrodes difficult. Here we describe a hybrid microscope design, with switchable compound and stereo objectives, that eases the use of conventional intracellular electrodes in optical recording experiments. We use it, in combination with a voltage-sensitive dye and photodiode array, to identify neurons participating in the swim motor program of the marine mollusk Tritonia. This microscope design should be applicable to optical recording studies in many preparations.
利用电压敏感染料对无脊椎动物神经网络进行光学记录研究时,很少使用传统的细胞内电极。这部分可能是由于传统上此类工作依赖于复式显微镜。虽然此类显微镜具有高聚光能力,但它们无法提供景深,使得使用尖锐电极进行操作变得困难。在此,我们描述了一种混合显微镜设计,其具有可切换的复式和立体物镜,可便于在光学记录实验中使用传统的细胞内电极。我们将其与电压敏感染料和光电二极管阵列结合使用,以识别参与海洋软体动物三角帆蚌游泳运动程序的神经元。这种显微镜设计应适用于许多标本的光学记录研究。