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Optimization of wavelength selection for multispectral image acquisition: a case study of atrial ablation lesions

机译:优化波长选择以获取多光谱图像:心房消融病变的案例研究

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摘要

In vivo autofluorescence hyperspectral imaging of moving objects can be challenging due to motion artifacts and to the limited amount of acquired photons. To address both limitations, we selectively reduced the number of spectral bands while maintaining accurate target identification. Several downsampling approaches were applied to data obtained from the atrial tissue of adult pigs with sites of radiofrequency ablation lesions. Standard image qualifiers such as the mean square error, the peak signal-to-noise ratio, the structural similarity index map, and an accuracy index of lesion component images were used to quantify the effects of spectral binning, an increased spectral distance between individual bands, as well as random combinations of spectral bands. Results point to several quantitative strategies for deriving combinations of a small number of spectral bands that can successfully detect target tissue. Insights from our studies can be applied to a wide range of applications.
机译:由于运动伪影和有限数量的获取的光子,运动对象的体内自体荧光高光谱成像可能具有挑战性。为了解决这两个限制,我们在保持准确的目标识别的同时有选择地减少了光谱带的数量。几种降采样方法应用于从成年猪的心房组织获得的射频消融损伤部位的数据。使用标准图像限定符(例如均方误差,峰信噪比,结构相似性指数图和病变成分图像的准确性指数)来量化频谱合并的效果,从而增加各个频段之间的频谱距离以及频谱带的随机组合。结果指出了几种定量策略,这些策略可导出可以成功检测目标组织的少量光谱带的组合。我们的研究中的见识可以应用于广泛的应用中。

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