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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Decreasing motion artifacts in calcium-dependent fluorescence transients from the perfused mouse heart using frequency filtering.
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Decreasing motion artifacts in calcium-dependent fluorescence transients from the perfused mouse heart using frequency filtering.

机译:使用频率滤波减少来自灌注小鼠心脏的钙依赖性荧光瞬变中的运动伪影。

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摘要

A strategy has been developed for the removal of motion artifact and noise in calcium-dependent fluorescence transients from the perfused mouse heart using frequency filtering. An analytical model indicates that the spectral removal of motion artifacts is independent of the phase shift of the motion waveform in the frequency domain, and thus to the time shift (or delay) of motion in the time domain. This is based on the "shift theorem" of Fourier analysis, which avoids erroneous correction of motion artifact when using the motion signal obtained using reflectance from the heart. Several major steps are adopted to implement this model for elimination of motion as well as detection noise from the fluorescence transient signals from the calcium-sensitive probe Rhod-2. These include (1) extracting the fluorescence calcium transient signal from the raw data by using power spectrum density (PSD) in the frequency domain by subtracting the motion recorded using the reflectance of excitation light, (2) digitally filtering out the random noise using multiple bandpass filters centralized at harmonic frequencies of the transients, and (3) extracting high frequency noise with a Gaussian Kernel filter method. The processed signal of transients acquired with excessive motion artifact is comparable to transients acquired with minimal motion obtained by immobilizing the heart against the detection window, demonstrating the usefulness of this technique.
机译:已开发出一种使用频率滤波从灌注的小鼠心脏中去除钙依赖性荧光瞬变中的运动伪影和噪声的策略。分析模型表明,运动伪影的频谱去除与频域中运动波形的相移无关,因此与时域中运动的时移(或延迟)无关。这基于傅立叶分析的“位移定理”,当使用通过心脏反射得到的运动信号时,可以避免对运动伪影的错误校正。采用了几个主要步骤来实现该模型,以消除运动以及钙敏感探针Rhod-2发出的荧光瞬变信号中的检测噪声。其中包括(1)通过在频域中使用功率谱密度(PSD)从原始数据中提取荧光钙瞬变信号,方法是减去使用激发光的反射率记录的运动;(2)使用多个数字化滤除随机噪声带通滤波器集中在瞬变的谐波频率上,(3)用高斯核滤波器方法提取高频噪声。通过将多余的运动伪影获取的瞬态信号经过处理后的信号与通过将心脏固定在检测窗口上而获得的最小运动的瞬态信号可比,证明了该技术的实用性。

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