Struijk Lotte N S Andreasen, Akay Metin, Struijk Johannes J
Center for Sensory Motor Interaction, Aalborg University, DK-9220 Aalborg, Denmark.
IEEE Trans Biomed Eng. 2008 Jan;55(1):372-5. doi: 10.1109/TBME.2007.903518.
Single fiber action potentials (SFAPs) from peripheral nerves, such as recorded with cuff electrodes, can be modelled as the convolution of a source current and a weight function that describes the recording electrodes and the surrounding medium. It is shown that for cuff electrodes, the weight function is linearly scaled with the action potential (AP) velocity and that it is, therefore, possible to implement a model of the recorded SFAPs based on a wavelet multiresolution technique (filterbank), where the wavelet scale is proportional to the AP velocity. The model resulted in single fiber action potentials matching the results from other models with a goodness of fit exceeding 0.99. This formulation of the SFAP may serve as a basis for model-based wavelet analysis and for advanced cuff design.
外周神经的单纤维动作电位(SFAPs),如用袖带电极记录的那样,可以建模为源电流与描述记录电极及周围介质的权重函数的卷积。结果表明,对于袖带电极,权重函数与动作电位(AP)速度呈线性比例关系,因此,可以基于小波多分辨率技术(滤波器组)实现记录的SFAPs模型,其中小波尺度与AP速度成正比。该模型产生的单纤维动作电位与其他模型的结果相匹配,拟合优度超过0.99。这种SFAP的公式化可作为基于模型的小波分析和先进袖带设计的基础。