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[电压敏感染料二-4-苯胺基萘乙烯磺酸盐的光谱研究]

[Spectral study of voltage sensitive dye di-4-ANEPPS].

作者信息

Xu Zheng-Hong, Zhang Zhen-Xi, Wang Jing, Zhang Hong, Li Zheng, Jin Yan-Shu, Ding Hai-Yan

机构信息

The Key Laboratory of Biomedical Information Engineering of Education Ministry, the School of Life Science and Technology, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2007 Jul;27(7):1359-62.

Abstract

This study investigated the absorption spectrum and the fluorescence spectrum of rabbit hearts stained with the voltage sensitive dye (di-4-ANEPPS). The results suggested that the optical absorption of tissue with the dye was higher than that of the control group, and there were significant differences between the experimental group and control group in the range of 450-550 nm. It was also indicated that the maximum absorption peak of the dye in tissues was at (479.25 +/- 0.44) nm. Additionally, the different peaks of fluorescence emission spectra from the atriums, ventricles and aorta were originally found by testing the five parts of rabbit hearts with the dye. Their relative intensities were related to the distribution concentrations of the dye. Meanwhile, the peaks of excitation spectra and fluorescence emission spectra were determined by examining the three-dimensional and two-dimensional fluorescence spectra using ventricles and atriums with the dye. Based on the discrepancy of rest membrane voltages between ventricles and atriums, the best wavelength ranges of excitation light and emissions light of optical mapping were determined by the shifts of the dye in emission spectra with excitation at different wavelengths. These results offer a theoretical foundation for the design of a cardiac optical mapping system.

摘要

本研究调查了用电压敏感染料(di-4-ANEPPS)染色的兔心脏的吸收光谱和荧光光谱。结果表明,染色组织的光吸收高于对照组,且实验组与对照组在450 - 550 nm范围内存在显著差异。还表明该染料在组织中的最大吸收峰位于(479.25 +/- 0.44)nm。此外,通过用该染料检测兔心脏的五个部位,最初发现了来自心房、心室和主动脉的荧光发射光谱的不同峰值。它们的相对强度与染料的分布浓度有关。同时,通过用该染料检测心室和心房的三维和二维荧光光谱来确定激发光谱和荧光发射光谱的峰值。基于心室和心房静息膜电压的差异,通过在不同波长激发下染料发射光谱的位移,确定了光学标测的最佳激发光和发射光波长范围。这些结果为心脏光学标测系统的设计提供了理论基础。

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