Boston J R, Deneault L G
Int J Clin Monit Comput. 1984;1(1):13-9. doi: 10.1007/BF01726657.
There is increasing interest in the use of averaged sensory evoked potentials for diagnostic testing and patient monitoring. This testing technique offers an opportunity to obtain information on function in the central nervous system and can be used in uncooperative and comatose patients. However, in the clinical situation background noise is often high, due for example to posturing by the patient, and even with extensive signal averaging it can be difficult to determine whether a response is present. This paper describes a data acquisition technique we have implemented for patient testing in the intensive care unit and the operating room to facilitate analysis of the responses. The averaging system delivers the stimulus in the middle of the data window, providing a pre-stimulus control interval from which to estimate residual background noise in the average. In addition, two averages are formed simultaneously to determine reproducibility of the response. This technique has been modified to provide a method of continuous monitoring that allows rapid detection of large changes in the response plus automatic tracking of selected response peak parameters.
人们对使用平均感觉诱发电位进行诊断测试和患者监测的兴趣与日俱增。这种测试技术为获取中枢神经系统功能信息提供了契机,并且可用于不合作和昏迷的患者。然而,在临床环境中,背景噪声常常很高,例如由于患者的体位变动,即便进行大量的信号平均处理,也可能难以确定是否存在反应。本文描述了一种我们已在重症监护病房和手术室为患者测试所实施的数据采集技术,以利于对反应进行分析。平均系统在数据窗口中间施加刺激,提供一个刺激前控制区间,据此可估计平均中的残余背景噪声。此外,同时形成两个平均值以确定反应的可重复性。该技术已得到改进,以提供一种连续监测方法,能够快速检测反应中的大幅变化,并自动跟踪选定的反应峰值参数。