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立体红外跟踪技术用于监测心脏SPECT成像期间患者运动的可行性。

Feasibility of Stereo-Infrared Tracking to Monitor Patient Motion During Cardiac SPECT Imaging.

作者信息

Beach Richard D, Pretorius P Hendrik, Boening Guido, Bruyant Philippe P, Feng Bing, Fulton Roger R, Gennert Michael A, Nadella Suman, King Michael A

机构信息

University of Massachusetts Medical School, Division of Nuclear Medicine, Worcester, MA 01655 USA.

出版信息

IEEE Trans Nucl Sci. 2004 Oct;51(5 II):2693-2698. doi: 10.1109/TNS.2004.835786.

Abstract

Patient motion during cardiac SPECT imaging can cause diagnostic imaging artifacts. We investigated the feasibility of monitoring patient motion using the Polaris motion-tracking system. This system uses passive infrared reflection from small spheres to provide real-time position data with vendor stated 0.35 mm accuracy and 0.2 mm repeatability. In our configuration, the Polaris system views through the SPECT gantry toward the patient's head. List-mode event data was temporally synchronized with motion-tracking data utilizing a modified LabVIEW virtual instrument that we have employed in previous optical motion-tracking investigations. Calibration of SPECT to Polaris coordinates was achieved by determining the transformation matrix necessary to align the position of four reflecting spheres as seen by Polaris, with the location of Tc-99m activity placed inside the sphere mounts as determined in SPECT reconstructions. We have successfully tracked targets placed on volunteers in simulated imaging positions on the table of our SPECT system. We obtained excellent correlation (R(2) > 0.998) between the change in location of the targets as measured by our SPECT system and the Polaris. We have also obtained excellent agreement between the recordings of the respiratory motion of four targets attached to an elastic band wrapped around the abdomen of volunteers and from a pneumatic bellows. We used the axial motion of point sources as determined by the Polaris to correct the motion in SPECT image acquisitions yielding virtually identical point source FWHM and FWTM values, and profiled maximum heart wall counts of cardiac phantom images, compared to the reconstructions with no motion.

摘要

心脏单光子发射计算机断层显像(SPECT)成像过程中患者的运动可导致诊断性成像伪影。我们研究了使用北极星运动跟踪系统监测患者运动的可行性。该系统利用来自小球体的被动红外反射来提供实时位置数据,供应商称其精度为0.35毫米,重复性为0.2毫米。在我们的配置中,北极星系统通过SPECT机架朝着患者头部进行观察。列表模式事件数据与运动跟踪数据在时间上同步,这是利用我们在先前光学运动跟踪研究中使用的经过修改的LabVIEW虚拟仪器实现的。通过确定将北极星所看到的四个反射球体的位置与SPECT重建中确定的置于球体支架内的锝-99m活性位置对齐所需的变换矩阵,实现了SPECT与北极星坐标的校准。我们已成功在SPECT系统检查台上的模拟成像位置跟踪放置在志愿者身上的目标。我们在SPECT系统测量的目标位置变化与北极星测量的结果之间获得了极佳的相关性(R²>0.998)。我们还在连接到缠绕在志愿者腹部的弹性带上的四个目标的呼吸运动记录与气动波纹管的记录之间获得了极佳的一致性。我们使用北极星确定的点源轴向运动来校正SPECT图像采集中的运动,与无运动的重建相比,得到了几乎相同的点源半高宽(FWHM)和十分之一高宽(FWTM)值,以及心脏模型图像的最大心壁计数剖面图。

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