MacLennan A R, Lovely D F
Bell Northern Research, Ottawa, Ontario, Canada.
Med Eng Phys. 1995 Jun;17(4):248-56. doi: 10.1016/1350-4533(95)90849-7.
In some clinical centres, somatosensory evoked potentials are used for the assessment of neurological function during surgical procedures on the spine. As these potentials are heavily contaminated in background noise, ensemble averaging coupled with invasive instrumentation is routinely used to enhance the signal. However, this procedure is very time consuming, often taking several minutes. In this paper, an adaptive matched filter has been used to dramatically reduce this measurement time to around 20 seconds, even when employing non-invasive surface electrodes. This filter has been implemented in real-time by using a TMS320C25 digital signal processor and results are presented for signal acquisition both at the L1-T12 and T5-T6 spinal levels. In addition, the adaptive nature of this filter allows the tracking of slowly changing parameters within the evoked potential with time.
在一些临床中心,体感诱发电位被用于脊柱外科手术过程中的神经功能评估。由于这些电位在背景噪声中受到严重污染,通常采用叠加平均法结合侵入性仪器来增强信号。然而,这个过程非常耗时,通常需要几分钟。在本文中,即使使用非侵入性表面电极,自适应匹配滤波器也已被用于将测量时间大幅缩短至约20秒。该滤波器已通过使用TMS320C25数字信号处理器实时实现,并给出了在L1 - T12和T5 - T6脊髓水平采集信号的结果。此外,该滤波器的自适应特性允许随时间跟踪诱发电位内缓慢变化的参数。