Schmid M, Weyh T, Meyer B U
Lehrstuhl für elektrische Maschinen und Geräte der Technischen Universität München.
Biomed Tech (Berl). 1994 Nov;39(11):279-86. doi: 10.1515/bmte.1994.39.11.279.
For the recording of minute bioelectric signal voltages in the fields of medical research and diagnostic applications, a high-performance amplifier is needed to provide the signal levels necessary for a significant analysis. Irrespective of the concrete application, the major parameters required for a comparative evaluation of such systems are sensitivity, bandwidth and noise. Some applications also make special demands on electrical safety measures. With the aim of using an amplifier with a particularly powerful magnetic stimulator, and in view of the special requirements for brain voltage recording in a fully conscious patient, a universally applicable amplifier system has been developed that incorporates safety measures that ensure virtually risk-free application. The stimulation artefact can be suppressed completely by means of automatic offset regulation of the preamplifier. The circuit elements in electrical contact with the organism are separated from the rest of the measuring system by a high-voltage insulation barrier. The main innovation and central subject of this article is an active protective system with an extremely short response time, which reliably cuts off the relevant amplifier circuits as soon as the ceiling signal level is exceeded. In accordance with relevant regulations, the user is warned of any first failure by a program-controlled self-test run by the protective unit and done automatically when the amplifier is activated. Exhaustive tests with a prototype have confirmed, among other things, that the integration of the new protective device does not reduce the amplifier output to any measurable extent.
在医学研究和诊断应用领域,为了记录微小的生物电信号电压,需要一个高性能放大器来提供进行有效分析所需的信号电平。无论具体应用如何,对此类系统进行比较评估所需的主要参数是灵敏度、带宽和噪声。一些应用还对电气安全措施有特殊要求。为了将放大器与特别强大的磁刺激器配合使用,并考虑到在完全清醒的患者中记录脑电压的特殊要求,已经开发出一种通用的放大器系统,该系统纳入了确保几乎无风险应用的安全措施。通过前置放大器的自动失调调节,可以完全抑制刺激伪迹。与生物体电接触的电路元件通过高压绝缘屏障与测量系统的其余部分隔开。本文的主要创新点和核心主题是一种具有极短响应时间的有源保护系统,一旦超过上限信号电平,该系统就能可靠地切断相关的放大器电路。根据相关规定,保护单元通过程序控制的自检在放大器启动时自动运行,一旦首次出现故障,就会向用户发出警告。对一个原型进行的详尽测试证实,除其他外,新保护装置的集成不会在任何可测量的程度上降低放大器的输出。