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在将临床计划递送至腹部成像体模的铅笔束传输期间进行热声范围验证。

Thermoacoustic range verification during pencil beam delivery of a clinical plan to an abdominal imaging phantom.

机构信息

University of Wisconsin - Milwaukee, United States; Acoustic Range Estimates, United States.

University of Wisconsin - Milwaukee, United States.

出版信息

Radiother Oncol. 2021 Jun;159:224-230. doi: 10.1016/j.radonc.2021.03.027. Epub 2021 Mar 30.

Abstract

PURPOSE

The purpose of this phantom study is to demonstrate that thermoacoustic range verification could be performed clinically. Thermoacoustic emissions generated in an anatomical multimodality imaging phantom during delivery of a clinical plan are compared to simulated emissions to estimate range shifts compared to the treatment plan.

METHODS

A single-field 12-layerproton pencil beam scanning (PBS)treatment plancreated in Pinnacle prescribing6 Gy/fractionwas delivered by a superconducting synchrocyclotron to a triple modality (CT, MRI, and US) abdominal imaging phantom.Data was acquired by four acoustic receivers rigidly affixed to a linear ultrasound array. Receivers 1-2 were located distal to the treatment volume, whereas 3-4 were lateral. Receivers' room coordinates were computed relative to the ultrasound image plane after co-registration to the planning CT volume. For each prescribed beamlet, a set of thermoacoustic emissions corresponding to varied beam energies were computed. Simulated emissions were compared to measured emissions to estimate shifts of the Bragg peak.

RESULTS

Shifts were small for high-dose beamlets that stopped in soft tissue. Signals acquired by channels 1-2 yielded shifts of -0.2±0.7mm relative to Monte Carlo simulations for high dose spots (~40 cGy) in the second layer. Additionally, for beam energy ≥125 MeV, thermoacoustic emissions qualitatively tracked lateral motion of pristine beams in a layered gelatin phantom, and time shifts induced by changing phantom layers were self-consistent within nanoseconds.

CONCLUSIONS

Acoustic receivers tuned to spectra of thermoacoustic emissions may enable range verification during proton therapy.

摘要

目的

本 phantom 研究旨在证明热声距离验证可在临床中进行。在实施临床计划过程中,在解剖多模态成像 phantom 中产生的热声发射与模拟发射进行比较,以估计与治疗计划相比的距离偏移。

方法

在 Pinnacle 中创建的单野 12 层质子铅笔束扫描(PBS)治疗计划,每层 6Gy,由超导同步回旋加速器施予三重模态(CT、MRI 和 US)腹部成像 phantom。通过刚性固定在线性超声阵列上的四个声接收器采集数据。接收器 1-2 位于治疗体积的远端,而 3-4 位于侧面。在与计划 CT 体积配准后,接收器的房间坐标相对于超声图像平面进行计算。对于每个规定的射束,计算了一组对应于不同束能量的热声发射。将模拟发射与测量发射进行比较,以估计布拉格峰的偏移。

结果

在软组织中停止的高剂量射束的偏移较小。对于第二层中的高剂量点(约 40cGy),通道 1-2 采集的信号相对于蒙特卡罗模拟的偏移为 -0.2±0.7mm。此外,对于束能量≥125MeV,热声发射在分层明胶 phantom 中定性地跟踪原始射束的横向运动,并且由改变 phantom 层引起的时间偏移在纳秒内是自洽的。

结论

调谐到热声发射光谱的声接收器可能能够在质子治疗期间进行距离验证。

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