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A Respiratory Motion Estimation Method Based on Inertial Measurement Units for Gated Positron Emission Tomography

机译:基于门控电子发射断层扫描的惯性测量单元的呼吸运动估计方法

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摘要

We present a novel method for estimating respiratory motion using inertial measurement units (IMUs) based on microelectromechanical systems (MEMS) technology. As an application of the method we consider the amplitude gating of positron emission tomography (PET) imaging, and compare the method against a clinically used respiration motion estimation technique. The presented method can be used to detect respiratory cycles and estimate their lengths with state-of-the-art accuracy when compared to other IMU-based methods, and is the first based on commercial MEMS devices, which can estimate quantitatively both the magnitude and the phase of respiratory motion from the abdomen and chest regions. For the considered test group consisting of eight subjects with acute myocardial infarction, our method achieved the absolute breathing rate error per minute of 0.44 ± 0.23 1/min, and the absolute amplitude error of 0.24 ± 0.09 cm, when compared to the clinically used respiratory motion estimation technique. The presented method could be used to simplify the logistics related to respiratory motion estimation in PET imaging studies, and also to enable multi-position motion measurements for advanced organ motion estimation.
机译:我们基于微机电系统(MEMS)技术,提出了一种估计呼吸运动的新方法。作为该方法的应用,我们考虑正电子发射断层扫描(PET)成像的幅度,并比较临床使用的呼吸运动估计技术的方法。当与其他基于IMU的方法相比,所呈现的方法可用于检测呼吸周期,并估计它们的长度,最先进的准确性,并且是基于商业MEMS器件的第一级,可以定量估计幅度和腹部和胸部区域的呼吸运动阶段。对于所考虑的试验组,由急性心肌梗死的八个受试者组成,我们的方法达到每分钟的绝对呼吸速率误差0.44±0.23 1 / min,与临床使用的呼吸相比,绝对幅度误差为0.24±0.09厘米运动估计技术。所提出的方法可用于简化与PET成像研究中的呼吸运动估计相关的物流,并且还能够为先进的器官运动估计实现多位置运动测量。

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