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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A Novel Method for Mouse Retinal Temperature Determination Based on ERG Photoresponses
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A Novel Method for Mouse Retinal Temperature Determination Based on ERG Photoresponses

机译:基于ERG光学信函的小鼠视网膜温度测定的一种新方法

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This study introduces a novel retinal temperature determination method based on the temperature dependent properties of photoresponses recorded by electroretinography (ERG). The kinetics and amplitudes of ERG photoresponses depend on retinal temperature. Additionally, raising retinal temperature increases the probability of long-wavelength photon absorption, which manifests as temperature dependence of photoreceptor sensitivity. In this study we extract a number of features that represent these properties from the a- and b-waves of mouse ex vivo ERG flash responses and construct three multivariable regression models between temperature and the selected features. The performance of these models was evaluated against a separate test dataset and for two of the models, an RMS temperature determination error of less than 0.50 degrees C could be reached. Our results demonstrate that the method can be successfully used for reliable retinal temperature determination ex vivo. The method, reflecting the temperature of distal retina, can be applied also in the estimation of retinal pigment epithelium temperature.
机译:本研究介绍了一种基于电动图术(ERG)记录的光响应的温度依赖性的新型视网膜温度测定方法。 ERG光响应的动力学和幅度取决于视网膜温度。另外,提高视网膜温度增加了长波长光子吸收的概率,这表明感光体敏感性的温度依赖性。在这项研究中,我们提取了许多特征,该特征从鼠标EXVivo ERG闪存响应的A和B波来提取这些属性,并在温度和所选功能之间构建三个多变量回归模型。对单独的测试数据集和两个模型进行评估这些模型的性能,可以达到小于0.50c的RMS温度测定误差。我们的结果表明,该方法可成功地用于可靠的视网膜温度测定以外。反映远离视网膜温度的方法也可以应用于视网膜颜料上皮温度的估计。

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