Ullah Khalil, Cescon Corrado, Afsharipour Babak, Merletti Roberto
Laboratory for Engineering of the Neuromuscular System, Department of Electronics, Politecnico di Torino, Italy.
Laboratory for Engineering of the Neuromuscular System, Department of Electronics, Politecnico di Torino, Italy.
J Electromyogr Kinesiol. 2014 Dec;24(6):860-7. doi: 10.1016/j.jelekin.2014.05.003. Epub 2014 May 24.
A method to detect automatically the location of innervation zones (IZs) from 16-channel surface EMG (sEMG) recordings from the external anal sphincter (EAS) muscle is presented in order to guide episiotomy during child delivery. The new algorithm (2DCorr) is applied to individual motor unit action potential (MUAP) templates and is based on bidimensional cross correlation between the interpolated image of each MUAP template and two images obtained by flipping upside-down (around a horizontal axis) and left-right (around a vertical axis) the original one. The method was tested on 640 simulated MUAP templates of the sphincter muscle and compared with previously developed algorithms (Radon Transform, RT; Template Match, TM). Experimental signals were detected from the EAS of 150 subjects using an intra-anal probe with 16 equally spaced circumferential electrodes. The results of the three algorithms were compared with the actual IZ location (simulated signal) and with IZ location provided by visual analysis (VA) (experimental signals). For simulated signals, the inter quartile error range (IQR) between the estimated and the actual locations of the IZ was 0.20, 0.23, 0.42, and 2.32 interelectrode distances (IED) for the VA, 2DCorr, RT and TM methods respectively.
为了在分娩过程中指导会阴切开术,本文提出了一种从肛门外括约肌(EAS)肌肉的16通道表面肌电图(sEMG)记录中自动检测神经支配区(IZs)位置的方法。新算法(2DCorr)应用于单个运动单位动作电位(MUAP)模板,该算法基于每个MUAP模板的插值图像与通过将原始图像上下翻转(绕水平轴)和左右翻转(绕垂直轴)得到的两个图像之间的二维互相关。该方法在640个模拟的括约肌肌肉MUAP模板上进行了测试,并与先前开发的算法(Radon变换,RT;模板匹配,TM)进行了比较。使用带有16个等间距圆周电极的肛门内探头从150名受试者的EAS中检测实验信号。将三种算法的结果与实际IZ位置(模拟信号)以及视觉分析(VA)提供的IZ位置(实验信号)进行比较。对于模拟信号,VA、2DCorr、RT和TM方法在IZ估计位置与实际位置之间的四分位误差范围(IQR)分别为0.20、0.23、0.42和2.32个电极间距(IED)。