Center for Advanced Technology and Education, College of Engineering and Computing, Florida International University, Miami, FL 33174, USA.
J Neural Eng. 2012 Apr;9(2):026021. doi: 10.1088/1741-2560/9/2/026021. Epub 2012 Mar 15.
Somatosensory-evoked potentials (SSEPs) have been widely used for intra-operative neurophysiological monitoring (IONM). Currently at least 200-300 trials are required to generate a readable SSEP signal. This study introduces a novel approach that yields accurate detection results of the SSEP signal yet with a significantly reduced number of trials, resulting in an effectual monitoring process. The analysis was performed on data recorded in seven patients undergoing surgery, where the posterior tibial nerve was stimulated and the SSEP response was recorded from scalp electroencephalography using two bipolar electrodes, C(3)-C(4) and C(Z)-F(Z). The proposed approach employs an innovative, simple yet effective algorithm based on a patient-specific Gaussian template to detect the SSEP using only 30 trials. The time latencies of the P37 and N45 peaks are detected along with the peak-to-peak amplitudes. The time latencies are detected with a mean accuracy greater than 95%. Also, the P37 and N45 peak latencies and the peak-to-peak amplitude were found to be consistent throughout the surgical procedure within the 10% and 50% acceptable clinical limits, respectively. The results obtained support the assertion that the algorithm is capable of detecting SSEPs with high accuracy and consistency throughout the entire surgical procedure using only 30 trials.
体感诱发电位(SSEP)已广泛应用于术中神经生理监测(IONM)。目前,生成可读的 SSEP 信号至少需要 200-300 次试验。本研究提出了一种新方法,只需较少的试验次数即可获得准确的 SSEP 信号检测结果,从而实现有效的监测过程。该分析是在 7 名接受手术的患者记录的数据上进行的,刺激后脚神经,使用两个双极电极 C(3)-C(4) 和 C(Z)-F(Z)从头皮脑电图记录 SSEP 反应。所提出的方法采用了一种基于患者特定高斯模板的创新、简单但有效的算法,仅使用 30 次试验即可检测 SSEP。检测到 P37 和 N45 峰的时间潜伏期以及峰间幅度。时间潜伏期的检测准确率大于 95%。此外,在可接受的临床限值 10%和 50%范围内,在整个手术过程中,P37 和 N45 峰潜伏期以及峰间幅度均保持一致。研究结果表明,该算法能够在整个手术过程中仅使用 30 次试验即可实现高准确性和一致性的 SSEP 检测。