Universidad Pública de Navarra, DIEE Campus de Arrosadía s/n, 31006 Pamplona, Spain.
J Electromyogr Kinesiol. 2010 Apr;20(2):264-73. doi: 10.1016/j.jelekin.2009.03.004. Epub 2009 Apr 5.
The Dimitrov-Dimitrova (D-D) model generates a single fibre action potential (SFAP) as the convolution of an excitation function and a filter impulse function. We propose a method to estimate the parameters involved in these functions from a SFAP waveform (inverse problem) and call it Identification Procedure. The Identification Procedure comprises two parts. The present paper, Part I, is centred on the estimation of the radial distance, r, and the fibre diameter, d, of a given SFAP. To this end we develop a technique which we call the candidate pair method (CP-method), and we test it on fibrillation potentials (FPs) as experimental data. We found that the D-D model cannot synthesize all the SFAP waveforms observed in the experimental recordings, but in the cases where it can, the CP-method then provides the values of r and d that are more likely to have synthesized the SFAP. Having a method that provides information about the fibre diameter straight from a SFAP waveform is very desirable as this parameter has clinical and physiological relevance. Moreover, the CP-method plays a major role in the Identification Procedure that is carried out in Part II.
季米特洛夫-季米特罗娃(D-D)模型通过激励函数和滤波器脉冲函数的卷积生成单个纤维动作电位(SFAP)。我们提出了一种从 SFAP 波形中估计这些函数中涉及的参数的方法(反问题),并将其称为识别过程。识别过程包括两部分。本文(第一部分)的重点是估计给定 SFAP 的径向距离 r 和纤维直径 d。为此,我们开发了一种我们称为候选对方法(CP 方法)的技术,并将其应用于纤维颤搐电位(FP)作为实验数据进行测试。我们发现,D-D 模型不能合成实验记录中观察到的所有 SFAP 波形,但在可以合成的情况下,CP 方法则提供了更有可能合成 SFAP 的 r 和 d 值。有一种方法可以直接从 SFAP 波形提供有关纤维直径的信息,这是非常可取的,因为该参数具有临床和生理相关性。此外,CP 方法在第二部分进行的识别过程中起着重要作用。