Afsham Narges, Najafi Mohammad, Abolmaesumi Purang, Rohling Robert
University of British Columbia, Vancouver, BC, Canada.
Med Image Comput Comput Assist Interv. 2011;14(Pt 1):65-72. doi: 10.1007/978-3-642-23623-5_9.
A gaze-deviated examination of the eye with a 2D ultrasound transducer is a common and informative ophthalmic test; however, the complex task of the pose estimation of the ultrasound images relative to the eye affects 3D interpretation. To tackle this challenge, a novel system for 3D image reconstruction based on gaze tracking of the contralateral eye has been proposed. The gaze fixates on several target points and, for each fixation, the pose of the examined eye is inferred from the gaze tracking. A single camera system has been developed for pose estimation combined with subject-specific parameter identification. The ultrasound images are then transformed to the coordinate system of the examined eye to create a 3D volume. Accuracy of the proposed gaze tracking system and the pose estimation of the eye have been validated in a set of experiments. Overall system error, including pose estimation and calibration, are 3.12 mm and 4.68 degrees.
使用二维超声换能器对眼睛进行注视偏离检查是一种常见且信息丰富的眼科检查;然而,超声图像相对于眼睛的姿态估计这一复杂任务会影响三维解释。为应对这一挑战,提出了一种基于对侧眼注视跟踪的三维图像重建新系统。注视固定在几个目标点上,对于每次注视,从注视跟踪中推断出被检查眼睛的姿态。已开发出一个单摄像头系统用于姿态估计,并结合特定受试者参数识别。然后将超声图像转换到被检查眼睛的坐标系中以创建三维体积。所提出的注视跟踪系统的准确性以及眼睛的姿态估计已在一组实验中得到验证。包括姿态估计和校准在内的总体系统误差分别为3.12毫米和4.68度。