Marsh Michael P, Kruchowski James N, Hara Seth A, McIntosh Malcom B, Forsman Renae M, Reed Terry L, Kimble Christopher, Lee Kendall H, Bennet Kevin E, Tomshine Jonathan R
Department of Neurologic Surgery, Mayo Clinic, Rochester, Minnesota 55905, USA.
Division of Engineering, Mayo Clinic, Rochester, Minnesota 55905, USA.
Rev Sci Instrum. 2017 Aug;88(8):085101. doi: 10.1063/1.4993796.
In an effort to determine the chronic stability, sensitivity, and thus the potential viability of various neurochemical recording electrode designs and compositions, we have developed a custom device called the Voltammetry Instrument for Neurochemical Applications (VINA). Here, we describe the design of the VINA and initial testing of its functionality for prototype neurochemical sensing electrodes. The VINA consists of multiple electrode fixtures, a flowing electrolyte bath, associated reservoirs, peristaltic pump, voltage waveform generator, data acquisition hardware, and system software written in National Instrument's LabVIEW. The operation of VINA was demonstrated on a set of boron-doped diamond neurochemical recording electrodes, which were subjected to an applied waveform for a period of eighteen days. Each electrode's cyclic voltammograms (CVs) were recorded, and sensitivity calibration to dopamine (DA) was performed. Results showed an initial decline with subsequent stabilization in the CV current measured during the voltammetric sweep, corresponding closely with changes in electrode sensitivity to DA. The VINA has demonstrated itself as a useful tool for the characterization of electrode stability and chronic electrochemical performance.
为了确定各种神经化学记录电极设计和组成的长期稳定性、灵敏度以及潜在的可行性,我们开发了一种名为神经化学应用伏安法仪器(VINA)的定制设备。在此,我们描述了VINA的设计及其对原型神经化学传感电极功能的初步测试。VINA由多个电极固定装置、流动电解质浴、相关储液器、蠕动泵、电压波形发生器、数据采集硬件以及用美国国家仪器公司的LabVIEW编写的系统软件组成。在一组硼掺杂金刚石神经化学记录电极上展示了VINA的操作,这些电极在施加波形的情况下持续了18天。记录了每个电极的循环伏安图(CV),并对多巴胺(DA)进行了灵敏度校准。结果显示,在伏安扫描期间测量的CV电流最初下降,随后稳定,这与电极对DA的灵敏度变化密切相关。VINA已证明自己是表征电极稳定性和长期电化学性能的有用工具。