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Feasibility study of surface motion tracking with millimeter wave technology during radiotherapy

机译:放射疗法毫米波技术表面运动跟踪的可行性研究

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摘要

Purpose Continuous monitoring of patient movement is crucial to administering safe radiation therapy (RT). Conventional optical approaches often cannot be used when the patient’s surface is blocked by immobilization devices. Millimeter waves (mmWaves) are capable of penetrating nonconductive objects. In this study, we investigated using mmWave technology to monitor patient surface displacements, as well as breathing and cardiac phases, through clothing and body fixtures. Methods A mmWave device was mounted inside the bore of a ring‐based radiotherapy linear accelerator and pointed at a reflective surface on top of the couch. Measurements were obtained at displacements of 10, 7.5, 5.0, 2.5, and 1.0?mm at heights 100, 150, and 200 mm below isocenter. Submillimeter displacements were performed at a height of 200?mm. Additionally, millimeter and submillimeter displacements were measured with and without a gown and body mold placed between the surface and the sensor. The device was programmed to transmit chirp signals at 77–81?GHz. The subject’s surface was detected by fast Fourier transform (FFT) of the reflected chirp signal within a rough range bin. Fine displacements within that range bin were calculated through phase extraction and phase demodulation. The displacement data were sent through two separate bandpass filters with passbands of 0.1–0.6 and 0.8–2.0?Hz to obtain the subject’s breathing and cardiac waveforms, respectively. The breathing and cardiac measurements were compared to those of a Vernier Respiration Monitor Belt and an electrocardiogram (EKG), respectively, to assess validity. Results The device was able to detect millimeter and submillimeter displacements as small as 0.1?mm, as well as monitor displacement with an accuracy within 1?mm in the presence of an obstructive object. The device's breathing and cardiac waveforms exhibited a strong phase correlation between the respiration monitor belt (ρ?=?0.9156) and EKG (ρ?=?0.7895), respectively. Conclusions The mmWave device can monitor surface displacements with an accuracy better than 0.1?mm without obstructions and better than 1?mm with obstructions. It can also provide real‐time monitoring of breathing and cardiac waveforms simultaneously with high correlation with traditional respiratory and cardiac monitoring devices. Overall, mmWave technology demonstrates potential for motion monitoring in the field of radiation oncology.
机译:目的,患者运动的连续监测对于施用安全放射治疗(RT)至关重要。当患者表面通过固定装置阻挡时,通常不能使用常规光学方法。毫米波(MMWaves)能够穿透不导电的物体。在这项研究中,我们研究了MMWAVE技术,通过衣服和身体固定装置监测患者表面位移,以及呼吸和心脏阶段。方法将MMWAVE装置安装在环形放射疗法线性加速器的孔内,并指向在沙发顶部的反射表面。在高度100,150和200mm的位移的10,7.5,5.0,2.5和1.0Ωmm的位移下获得测量。 Subsillimeter位移在200毫秒的高度上进行。此外,使用凹槽和衬衣和传感器之间的长袍和车身模具来测量毫米和亚颌骨位移。该器件被编程为在77-81发出啁啾信号?GHz。通过粗糙范围箱内的反射啁啾信号的快速傅里叶变换(FFT)检测受试者的表面。通过相位提取和相位解调计算该范围箱内的细位移。位移数据通过两个单独的带通滤波器发送,通行带为0.1-0.6和0.8-2.0≤Hz,以分别获得受试者的呼吸和心脏波形。将呼吸和心脏测量分别与游标呼吸监测带和心电图(EKG)进行比较以评估有效性。结果该装置能够检测小于0.1Ωmm的毫米和亚颌骨位移,以及在妨碍物体存在下,监测位移在1?mm内的精度。该器件的呼吸和心脏波形分别在呼吸监测带(ρα= 0.9156)和EKG(ρα= 0.7895)之间表现出强相相关性。结论MMWAVE器件可以监测精度优于0.1Ωmm的表面位移,没有障碍物,障碍物超过1Ωmm。它还可以通过与传统呼吸和心脏监测装置的高相关性同时进行呼吸和心脏波形的实时监测。总体而言,MMWAVE技术展示了放射肿瘤学领域运动监测的潜力。

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