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A novel near-infrared voltage-sensitive dye reveals the action potential wavefront orientation at increased depths of cardiac tissue

机译:一种新型的近红外压敏染料揭示了心脏组织深度增加时的动作电位波前方向

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摘要

Recently, novel near-infrared (NIR) voltage-sensitive dyes were developed for imaging electrical activity in blood-perfused hearts and for tomographic applications. However, their usefulness for conventional surface mapping is unclear. The spectral shift to the NIR range significantly increases the penetration depth of light into the tissue, thus increasing the intramural volume contributing to the optical action potential (OAP). Here, we characterize both computationally and experimentally the effect of increased penetration depth on the OAP upstroke, the OAP component most sensitive to optical scattering and absorption, and the activation maps. Optical imaging of cardiac electrical activity was performed in isolated rat hearts (n=5) paced from the LV mid free wall. We used the NIR dye JPW-6033 (excitation at 660nm, acquisition at >695nm). The conventional dye DI-4-ANEPPS (excitation at 532nm, acquisition at 700 DF50nm) was used for comparison. To simulate OAP we utilized a hybrid model that couples light transport equations with the model of electrical propagation. As expected, the switch from DI-4-ANEPPS to JPW-6033 significantly increased the upstroke duration: from 3.95±0.69ms to 5.39±0.82 ms, respectively. However, activation maps were largely unaffected. The correlation between the shape of the optical upstroke, and the averaged subsurface wave front orientation was also preserved. The computer simulations are in excellent agreement with the experimental data. In conclusion, our analysis suggests that despite significant increase in upstroke duration, the novel NIR dyes can be a useful alternative to conventional dyes in surface mapping applications.
机译:最近,开发了新型近红外(NIR)电压敏感型染料,用于对血液灌注心脏中的电活动进行成像并进行断层成像。但是,它们在常规表面映射中的用途尚不清楚。光谱偏移到NIR范围会显着增加光进入组织的穿透深度,从而增加有助于光学动作电位(OAP)的壁内体积。在这里,我们在计算和实验上都描述了增加的穿透深度对OAP上行程,对光散射和吸收最敏感的OAP组件以及激活图的影响。心脏电活动的光学成像是在离LV中壁游离的独立大鼠心脏(n = 5)中进行的。我们使用了NIR染料JPW-6033(在660nm处激发,在> 695nm处获得)。使用常规染料DI-4-ANEPPS(在532nm激发,在700 DF50nm采集)进行比较。为了模拟OAP,我们利用了混合模型,该模型将光传输方程与电传播模型耦合在一起。正如预期的那样,从DI-4-ANEPPS切换到JPW-6033显着增加了上冲程持续时间:分别从3.95±0.69ms增加到5.39±0.82 ms。但是,激活图在很大程度上不受影响。还保留了光学上冲的形状与平均地下波前方位之间的相关性。计算机仿真与实验数据非常吻合。总之,我们的分析表明,尽管上冲程持续时间显着增加,但新型NIR染料在表面作图应用中仍可作为常规染料的有用替代品。

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