首页> 外文期刊>IEEE Transactions on Nuclear Science >MRI Investigation of the Linkage Between Respiratory Motion of the Heart and Markers on Patient’s Abdomen and Chest: Implications for Respiratory Amplitude Binning List-Mode PET and SPECT Studies
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MRI Investigation of the Linkage Between Respiratory Motion of the Heart and Markers on Patient’s Abdomen and Chest: Implications for Respiratory Amplitude Binning List-Mode PET and SPECT Studies

机译:心脏呼吸运动与患者腹部和胸部标志物之间的联系的MRI研究:对呼吸振幅结合列表模式PET和SPECT研究的意义

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Respiratory motion of the heart impacts the diagnostic accuracy of myocardial-perfusion emission-imaging studies. Amplitude binning has come to be the method of choice for binning list-mode based acquisitions for correction of respiratory motion in PET and SPECT. In some subjects respiratory motion exhibits hysteretic behavior similar to damped non-linear cyclic systems. The detection and correction of hysteresis between the signals from surface movement of the patient’s body used in binning and the motion of the heart within the chest remains an open area for investigation. This study reports our investigation in nine volunteers of the combined MRI tracking of the internal respiratory motion of the heart using Navigators with stereo-tracking of markers on the volunteer’s chest and abdomen by a visual-tracking system (VTS). The respiratory motion signals from the internal organs and the external markers were evaluated for hysteretic behavior analyzing the temporal correspondence of the signals. In general, a strong, positive correlation between the external marker motion (AP direction) and the internal heart motion (SI direction) during respiration was observed. The average $pm$ standard deviation in the Spearman’s ranked correlation coefficient ($rho$) over the nine volunteer studied was $0.92pm 0.1$ between the external abdomen marker and the internal heart, and $0.87pm 0.2$ between the external chest marker and the internal heart. However despite the good correlation on average for the nine volunteers, in three studies a poor correlation was observed due to hysteretic behavior between inspiration and expiration for either the chest marker and the internal motion of the hear- , or the abdominal marker and the motion of the heart. In all cases we observed a good correlation of at least either the abdomen or the chest with the heart. Based on this result, we propose the use of marker motion from both the chest and abdomen regions when estimating the internal heart motion to detect and address hysteresis when binning list-mode emission data.
机译:心脏的呼吸运动影响心肌灌注发射成像研究的诊断准确性。振幅合并已成为对基于列表模式的采集进行合并以校正PET和SPECT中呼吸运动的选择方法。在某些受试者中,呼吸运动表现出类似于阻尼非线性循环系统的滞后行为。在分箱中使用的来自患者身体表面运动的信号与胸部内心脏的运动之间的磁滞的检测和校正仍然是一个开放的研究区域。这项研究报告了我们对9名志愿者进行的调查,他们使用导航器对MRI跟踪心脏的内部呼吸运动进行了组合,并通过视觉跟踪系统(VTS)对志愿者的胸部和腹部的标记进行了立体跟踪。评估来自内部器官和外部标记的呼吸运动信号的滞后行为,分析信号的时间对应性。通常,在呼吸过程中观察到外部标记运动(AP方向)与内部心脏运动(SI方向)之间存在强正相关。在研究的9位志愿者中,Spearman排名相关系数($ rho $)的平均$ pm $标准偏差为$ 0.92pm,腹部外标记与心脏内部之间为0.1 $,而$ 0.87pm,外部胸部标记与心脏内部之间为0.2 $。内心。然而,尽管九名志愿者的平均相关性良好,但在三项研究中,由于胸腔标记和听觉内部运动或腹腔标记和吸气运动的吸气和呼气之间的滞后行为,观察到的相关性很差。心。在所有情况下,我们观察到至少腹部或胸部与心脏都有良好的相关性。基于此结果,当对列表模式发射数据进行分箱时,我们建议在估计内部心脏运动时使用来自胸部和腹部区域的标志运动来检测和处理滞后现象。

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