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Automated Detection of Iris Furrows and their Influence on Dynamic Iris Volume Change

机译:虹膜犁沟的自动检测及其对动态虹膜体积变化的影响

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摘要

We introduced a new method for detecting iris surface furrows and identify its associations with dynamic changes in iris volume in healthy eyes. Swept-source optical coherence tomography was performed on 65 subjects with open angle under light and dark conditions. Iris boundaries were identified and a reconstruction of the anterior iris surface was obtained. Furrows were detected by identifying locally deep (minima) points on the iris surface and reported as furrow length in millimetres. Iris volume was quantified. Associations between furrow length and dynamic changes in iris volume were assessed using linear regression model. With pupil dilation, furrow length increased (15.84 mm) whereas iris volume decreased (−1.19 ± 0.66 mm3). Longer furrow length was associated with larger static iris volume, as well as smaller loss of iris volume with pupil dilation (β = −0.10, representing 0.1 mm3 less loss in iris volume per 10 mm increase in iris furrow length; P = 0.002, adjusted for age, gender and changes in pupil size). Our iris furrow length measurements are robust and intuitive. Eyes with longer furrows have larger iris volume and lose less volume during physiological pupil dilation. These findings highlight the potential for iris surface features as indicators of iris morphological behavior.
机译:我们介绍了一种检测虹膜表面皱纹的新方法,并确定了它与健康眼睛中虹膜体积动态变化的关系。扫描源光学相干断层扫描是在65个受试者在明暗条件下以开角进行的。识别虹膜边界并获得虹膜前表面的重建。通过确定虹膜表面上的局部深(最小)点来检测犁沟,并以毫米为单位报告犁沟长度。虹膜体积被量化。使用线性回归模型评估犁沟长度与虹膜体积动态变化之间的关联。随着瞳孔扩大,,沟长度增加(15.84 mm),而虹膜体积减少(−1.19±0.66 mm 3 )。更长的犁沟长度与更大的静态虹膜体积以及瞳孔扩张引起的虹膜体积损失较小有关(β= −0.10,代表每增加10 mm虹膜体积损失减少0.1 mm 3 沟长; P = 0.002,根据年龄,性别和瞳孔大小的变化进行调整)。我们的虹膜沟槽长度测量功能强大且直观。犁沟较长的眼睛在生理性瞳孔扩张期间虹膜体积较大,而失去的体积较小。这些发现突出了虹膜表面特征作为虹膜形态行为指标的潜力。

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