$_m$ ) in cardiac preparations stained with'/> A Novel Approach to Dual Excitation Ratiometric Optical Mapping of Cardiac Action Potentials With Di-4-ANEPPS Using Pulsed LED Excitation
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A Novel Approach to Dual Excitation Ratiometric Optical Mapping of Cardiac Action Potentials With Di-4-ANEPPS Using Pulsed LED Excitation

机译:Di-4-ANEPPS的脉冲LED激发对心脏动作电位的双激发比率光学映射的新方法

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We developed a new method for ratiometric optical mapping of transmembrane potential ( V $_m$ ) in cardiac preparations stained with di-4-ANEPPS. V $_m$ -dependent shifts of excitation and emission spectra establish two excitation bands (<481 and >481 nm) that produce fluorescence changes of opposite polarity within a single emission band (575–620 nm). The ratio of these positive and negative fluorescence signals (excitation ratiometry) increases V $_m$ sensitivity and removes artifacts common to both signals. We pulsed blue (450 ± 10 nm) and cyan (505 ± 15 nm) light emitting diodes (LEDs) at 375 Hz in alternating phase synchronized to a camera (750 frames-per-second). Fluorescence was bandpass filtered (585 ± 20 nm). This produced signals with upright (blue) and inverted (cyan) action potentials (APs) interleaved in sequential frames. In four whole swine hearts with motion chemically arrested, fractional fluorescence for blue, cyan, and ratio signals was 1.2 ± 0.3%, 1.2 ± 0.3%, and 2.4 ± 0.6%, respectively. Signal-to-noise ratios were 4.3 ± 1.4, 4.0 ± 1.2, and 5.8 ± 1.9, respectively. After washing out the electromechanical uncoupling agent, we characterized motion artifact by cross-correlating blue, cyan, and ratio signals with a signal with normal AP morphology. Ratiometry improved cross-correlation coefficients from 0.50 ± 0.48 to 0.81 ± 0.25, but did not cancel all motion artifacts. These findings demonstrate the feasibility of pulsed LED excitation ratiometry in myocardium.
机译:我们开发了一种用di-4染色的心脏制剂中跨膜电位的比例光学映射的新方法(V $ _ m $ ) -ANEPPS。 V <公式公式类型=“ inline”> $ _ m $ 取决于激发和发射光谱的位移,建立了两个激发带(<481和> 481 nm),产生在单个发射带(575–620 nm)内,极性相反的荧光变化。这些正荧光信号和负荧光信号的比率(激发比率法)提高了V $ _ m $ 的灵敏度,并消除了这两种信号共有的伪像。我们以375 Hz的频率交替脉冲蓝光(450±10 nm)和青色(505±15 nm)发光二极管(LED),与照相机同步(每秒750帧)。将荧光带通过滤(585±20 nm)。这样产生的信号具有在连续帧中交错的垂直(蓝色)和反转(青色)动作电位(AP)。在四个具有化学阻滞性运动的全猪心脏中,蓝色,青色和比率信号的荧光分数分别为1.2±0.3%,1.2±0.3%和2.4±0.6%。信噪比分别为4.3±1.4、4.0±1.2和5.8±1.9。洗掉机电解耦剂后,我们通过将蓝色,青色和比率信号与具有正常AP形态的信号互相关来表征运动伪影。比率测量法将互相关系数从0.50±0.48提高到0.81±0.25,但并未消除所有运动伪影。这些发现证明了在心肌中进行脉冲LED激发比率测定的可行性。

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