Garudadri Suresh, Gallarda Benjamin, Pfaff Samuel, Alaynick William
Howard Hughes Medical Institute and Gene Expression Laboratory, The Salk Institute for Biological Studies, USA.
J Vis Exp. 2011 Feb 20(48):2580. doi: 10.3791/2580.
Development of neural circuitries and locomotion can be studied using neonatal rodent spinal cord central pattern generator (CPG) behavior. We demonstrate a method to fabricate suction electrodes that are used to examine CPG activity, or fictive locomotion, in dissected rodent spinal cords. The rodent spinal cords are placed in artificial cerebrospinal fluid and the ventral roots are drawn into the suction electrode. The electrode is constructed by modifying a commercially available suction electrode. A heavier silver wire is used instead of the standard wire given by the commercially available electrode. The glass tip on the commercial electrode is replaced with a plastic tip for increased durability. We prepare hand drawn electrodes and electrodes made from specific sizes of tubing, allowing consistency and reproducibility. Data is collected using an amplifier and neurogram acquisition software. Recordings are performed on an air table within a Faraday cage to prevent mechanical and electrical interference, respectively.
可以利用新生啮齿动物脊髓中央模式发生器(CPG)行为来研究神经回路的发育和运动。我们展示了一种制造用于检查解剖的啮齿动物脊髓中CPG活动或虚拟运动的吸电极的方法。将啮齿动物脊髓置于人工脑脊液中,并将腹根吸入吸电极。该电极是通过对市售吸电极进行改造而构建的。使用较重的银线代替市售电极提供的标准线。将商业电极上的玻璃尖端替换为塑料尖端以提高耐用性。我们制备了手绘电极和由特定尺寸的管材制成的电极,以确保一致性和可重复性。使用放大器和神经图采集软件收集数据。分别在法拉第笼内的气垫台上进行记录,以防止机械干扰和电气干扰。