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Sampling rates, aliasing, and the analysis of electrophysiological signals

机译:采样率,锯齿和电生理信号分析

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Low analog to digital (A-D) sampling rates, including the Nyquist rate, are inadequate for direct display and analysis of many electrophysiological signals (i.e., without inverse Fourier reconstruction). Recent empirical studies have reported some results that do not follow from sampling theory, such as increasing spike frequency with increasing sampling rate, and thus require explanation. This study addresses the effects of A-D sampling rate on the frequency and amplitude of known artificial signals and of electromyograms. A-D sampling rate need not always be a multiple of the upper band limit because electromyograms, and many other electrophysiological signals, do not always contain frequency components near the upper band limit. Rather, sampling rate must be matched to particular signal frequencies. Furthermore, A-D sampling rate has different effects on frequency and amplitude. Higher sampling rates are required for accurate amplitude reproduction than for accurate frequency reproduction. Very high sampling rates significantly bias quantitative results by detecting low-level noise in signals. This bias is exacerbated in taped signals sampled at reduced tape speeds.
机译:低模数(A-D)采样率,包括奈奎斯特速率,用于直接显示和分析许多电生理信号(即,无逆傅立叶重建)。最近的实证研究报告了一些没有遵循采样理论的结果,例如随着采样率的增加,增加尖峰频率,因此需要解释。该研究解决了A-D采样率对已知人工信号和电灰度的频率和幅度的影响。 A-D采样率不需要总是具有上频带限制的倍数,因为电灰度和许多其他电生理信号,并不总是包含在上带限制附近的频率分量。相反,必须与特定信号频率匹配采样率。此外,A-D采样率对频率和幅度产生不同的影响。精确幅度再现需要更高的采样率而不是精确频率再现。通过检测信号中的低级噪声,非常高的采样率显着偏压定量结果。这种偏置在减少磁带速度下采样的胶带信号中加剧。

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