首页> 外文会议>Conference on Functional Monitoring and Drug-Tissue Interaction Jan 21-24, 2002 San Jose, USA >Separation of calcium transients and motion artifact using frequency filtering of fluorescent signals arising from the perfused mouse heart
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Separation of calcium transients and motion artifact using frequency filtering of fluorescent signals arising from the perfused mouse heart

机译:使用对灌注的小鼠心脏产生的荧光信号进行频率滤波来分离钙瞬变和运动伪影

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To eliminate the influence of motion artifacts on measurements of intracellular calcium, a technique was developed using frequency domain analysis which filters motion artifact from the calcium transient signal arising from the perfused mouse heart using the calcium sensitive, fluorescent dye Rhod-2. The perfused mouse heart was stimulated at 8 Hz and placed in a water-jacketed chamber at 37℃. After a washout period following Rhod-2 loading, ~6-fold increase in fluorescence above background was detected spectrofluorimetrically at 589nm when excited at 524 nm. Calcium dependent fluorescence transients mixed with motion artifacts and system noise were measured. Simultaneously, heart motion was monitored by recording the reflected excitation light from the heart. A Fourier transform was utilized to separate signals arising from the fluorescence transients and those resulting from motion in the frequency domain. Several major steps were adopted to implement the algorithm for elimination of motion as well as system instability from the transient signals. These included 1) extracting the fluorescence calcium transient signal from the raw data 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 8 Hz signal, and 3) extracting high frequency noise with the Kernel method. Comparing the processed signal of transients acquired with excessive motion artifact to transients acquired with minimal motion obtained by immobilizing the heart against the detection window demonstrated that thefiltering techniques helped minimize the effects of motion.
机译:为了消除运动伪影对细胞内钙的测量的影响,开发了一种使用频域分析的技术,该技术使用钙敏感的荧光染料Rhod-2从灌注小鼠心脏产生的钙瞬态信号中滤除运动伪影。灌注的小鼠心脏以8 Hz的频率刺激,并置于37℃的水套腔中。 Rhod-2上样后经过一段冲洗期,当在524 nm激发时,在589 nm处用分光荧光法检测到的荧光比背景高出约6倍。测量了钙依赖性荧光瞬变以及运动伪影和系统噪声。同时,通过记录来自心脏的反射激发光来监测心脏运动。利用傅立叶变换来分离由荧光瞬变产生的信号和由频域中的运动引起的信号。采用了几个主要步骤来实现消除瞬态信号中的运动以及系统不稳定性的算法。其中包括1)通过减去使用激发光的反射率记录的运动从频域中的原始数据中提取荧光钙瞬变信号,2)使用集中在8 Hz谐波频率的多个带通滤波器数字滤除随机噪声信号,以及3)使用核方法提取高频噪声。将通过过度运动伪影获取的瞬态处理信号与通过将心脏固定在检测窗口上而获得的最小运动获取的瞬态信号进行比较表明,滤波技术有助于最大程度地减少运动的影响。

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