Department of Informatics and Mathematical Modelling,Technical University of Denmark, DK-2800 Lyngby, Denmark.
IEEE Trans Med Imaging. 2012 Jan;31(1):79-87. doi: 10.1109/TMI.2011.2165157. Epub 2011 Aug 18.
We present a system for head motion tracking in 3D brain imaging. The system is based on facial surface reconstruction and tracking using a structured light (SL) scanning principle. The system is designed to fit into narrow 3D medical scanner geometries limiting the field of view. It is tested in a clinical setting on the high resolution research tomograph (HRRT), Siemens PET scanner with a head phantom and volunteers. The SL system is compared to a commercial optical tracking system, the Polaris Vicra system, from NDI based on translatory and rotary ground truth motions of the head phantom. The accuracy of the systems was similar, with root mean square (rms) errors of 0.09 degrees for ±20 degrees axial rotations, and rms errors of 0.24 mm for ± 25 mm translations. Tests were made using (1) a light emitting diode (LED) based miniaturized video projector, the Pico projector from Texas Instruments, and (2) a customized version of this projector replacing a visible light LED with a 850 nm near infrared LED. The latter system does not provide additional discomfort by visible light projection into the patient's eyes. The main advantage over existing head motion tracking devices, including the Polaris Vicra system, is that it is not necessary to place markers on the patient. This provides a simpler workflow and eliminates uncertainties related to marker attachment and stability. We show proof of concept of a marker less tracking system especially designed for clinical use with promising results.
我们提出了一种用于 3D 脑成像中头部运动跟踪的系统。该系统基于使用结构光 (SL) 扫描原理的面部表面重建和跟踪。该系统旨在适应限制视场的狭窄的 3D 医学扫描仪几何形状。它在临床环境中使用高分辨率研究断层扫描仪 (HRRT)、配备头部体模和志愿者的西门子 PET 扫描仪进行了测试。SL 系统与基于头部体模平移和旋转基准运动的商业光学跟踪系统,即 NDI 的 Polaris Vicra 系统进行了比较。这两个系统的准确性相似,轴向旋转±20 度时的均方根 (rms) 误差为 0.09 度,平移±25 毫米时的 rms 误差为 0.24 毫米。测试使用 (1) 基于发光二极管 (LED) 的小型视频投影仪,即德州仪器的 Pico 投影仪,和 (2) 该投影仪的定制版本,用 850nm 近红外 LED 代替可见光 LED。后者系统不会因将可见光投影到患者眼睛中而造成额外不适。与现有的头部运动跟踪设备(包括 Polaris Vicra 系统)相比,该系统的主要优势是无需在患者身上放置标记。这提供了更简单的工作流程,并消除了与标记附着和稳定性相关的不确定性。我们展示了一种特别为临床使用设计的无标记跟踪系统的概念验证,结果令人鼓舞。