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Spinal cord integrity monitoring by adaptive coherence measurement.

机译:通过自适应相干性测量监测脊髓完整性。

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OBJECTIVE: Injury during routine spinal cord procedures could result in devastating consequences for the surgical patient. Spinal cord monitoring through somatosensory evoked potentials (SEPs) remains a viable method for prevention of serious injury. METHODS: The adaptive coherence estimation (ACE) is a method to iteratively calculate signal match quality through successive filter entrainment. Here we compare the speed of detection with ACE to conventional amplitude measurements. Both absolute magnitude of ACE and amplitude as well as slope change detector algorithm (Farley-Hinich) was run as well to determine the earliest time when a significant change occurred. RESULTS: The standard error for the ACE algorithm is close to one tenth of the amplitude measure, Since the ACE algorithm achieved low variance during baseline measurement, we were able to achieve rapid detection of injury. For absolute magnitude detection ACE was faster than amplitude for the 20 g injury weight class. It took an average of 10 epochs to detect the injury with adaptive coherence and nearly 19 with standard amplitude metrics using absolute magnitude changes. Abrupt change detection methods using slope change show that ACE provides more favorable detection capabilities comparable to amplitude. Additionally, there was a significant increase in the ROC curve between ACE and amplitude alone (p<0.05). CONCLUSIONS: Because of its excellent detection capabilities, the adaptive coherence method provides an excellent supplement to traditional amplitude for capturing injury-related changes in SEPs. SIGNIFICANCE: Adaptive coherence remains a viable method for rapidly and accurately detecting spinal injury.
机译:目的:在常规脊髓手术过程中受伤可能会给手术患者带来灾难性的后果。通过体感诱发电位(SEP)进行的脊髓监测仍然是预防严重伤害的可行方法。方法:自适应相干估计(ACE)是一种通过连续滤波夹带来迭代计算信号匹配质量的方法。在这里,我们将ACE的检测速度与常规幅度测量进行了比较。 ACE的绝对幅度和幅度以及斜率变化检测器算法(Farley-Hinich)都可以运行,以确定发生重大变化的最早时间。结果:ACE算法的标准误差接近幅度测量值的十分之一。由于ACE算法在基线测量期间实现了低方差,因此我们能够快速检测到伤害。对于绝对量级检测,ACE比20 g伤害重量级的幅度更快。使用自适应相干性检测伤害的平均时间为10个周期,而使用绝对幅度变化的标准幅度度量值则需要近19个周期。使用斜率变化的突变检测方法表明,ACE提供了与幅度相当的更有利的检测功能。此外,仅ACE和振幅之间的ROC曲线显着增加(p <0.05)。结论:由于其出色的检测能力,自适应相干方法为捕获SEP损伤相关变化的传统幅度提供了出色的补充。意义:自适应相干仍然是一种快速,准确地检测脊柱损伤的可行方法。

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