Academic-Industry Partnership for the Translation of a 4D in vivo Dosimetry Approach for Radiation Therapy
Academic-Industry Partnership for the Translation of a 4D in vivo Dosimetry Approach for Radiation Therapy
批准号:
10705086
负责人:
Yong Chen
金额:
$39.26万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-09-20 至 2024-08-31
关键词:
3-DimensionalAcousticsAnimalsCancer PatientCause of DeathClinicClinicalComputed Tomography ScannersComputer SimulationDedicationsDetectionDoseElectrical EngineeringElementsEnsureFeedbackFrequenciesGoalsImageImaging DeviceImaging TechniquesInpatientsIntellectual PropertyIntensity-Modulated RadiotherapyInterventionInvestigationIonsLinear Accelerator Radiotherapy SystemsLocationMalignant NeoplasmsMapsMeasurementMedicalMonitorOklahomaOutcomePatientsPerformancePhotonsPhysiologic pulsePositioning AttributeProstatePublic HealthRadiationRadiation Dose UnitRadiation OncologistRadiation therapyRadiometryRecording of previous eventsResearchResolutionRoentgen RaysSafetyShapesSignal TransductionSpeedSystemTechniquesTechnologyTestingTimeTissuesTransducersTranslatingTranslationsTreatment-related toxicityUniversitiesVisualizationWaterWorkX-Ray Computed Tomographyabsorptioncancer therapyclinical implementationclinical translationcommon treatmentdesign and constructiondetectordose informationdosimetryexperienceimaging capabilitiesimaging systemimprovedin vivoindustry partnerinnovationinstrumentationnew technologynovelproduct developmentprototypesimulationsoft tissuesuccesstemporal measurementtooltumorultrasound
中文摘要
本应用程序的总体目标是在癌症患者放射治疗期间进行体内剂量测定
到最终用户-医学物理学家。我们的假设是X射线诱导的声学计算机断层扫描
(XACT)可用于患者的4D体内剂量测定。在XACT中,脉冲X射线被吸收并转换为
热所产生的热弹性膨胀产生3D声波,其可以通过声学方法检测到。
探测器以形成图像。声波的振幅与X射线吸收成比例,因此
对剂量信息进行编码。我们的总体策略是设计/构建3D XACT剂量测定扫描仪,
在临床条件下测试/完善成像原型,基于学术-工业合作伙伴关系,
俄克拉荷马州大学(俄克拉荷马州)和PhotoSound技术公司。我们的具体目标是:(具体目标1)
评价XACT成像在放射治疗剂量学中的基础;(具体目标2)开发三维XACT
用于临床实施的成像系统;以及(具体目标3)在以下条件下验证XACT的性能
临床条件。这一发现是历史上第一次,组织中的辐射剂量可以直接
具有高空间和时间分辨率。如果成功,定位辐射束的能力,
绘制辐射剂量图将实现向高精度放射治疗的范式转变。
英文摘要
The Overall Objective of this application is to enable in vivo dosimetry during radiation therapy in cancer patient
to the end-user– the medical physicist. Our Hypothesis is that X-ray-induced Acoustic Computed tomography
(XACT) can be used for 4D in vivo dosimetry in patients. In XACT, pulsed x-rays are absorbed and converted to
heat. The resulting thermoelastic expansion generates a 3D acoustic wave, which can be detected by acoustic
detectors to form images. The amplitude of the acoustic waves is proportional to X-ray absorption, and therefore
encodes dose information. Our overall strategy is to design/construct a 3D XACT dosimetric scanner, and to
test/refine the imaging prototype under clinical conditions based on an Academic-Industrial partnership between
University of Oklahoma (OU) and PhotoSound Technologies Inc. Our specific aims are: (Specific aim 1)
Evaluate the basis of the XACT imaging in radiotherapy dosimetry; (Specific aim 2) Develop a 3D XACT
imaging system for clinical implementation; and (Specific aim 3) Validate the performance of XACT under
clinical conditions. This discovery is the first time in history that radiation dose in tissue could be directly
visualized with high spatial and temporal resolution. If successful, the ability to localize the radiation beam and
map the radiation dose will enable a paradigm shift towards high-precision radiotherapy.
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DOI:
10.1109/tuffc.2020.3032779
发表时间:
2021-04
期刊:
IEEE transactions on ultrasonics, ferroelectrics, and frequency control
影响因子:
--
作者:
[Robertson E, Samant P, Wang S, Tran T, Ji X, Xiang L]
通讯作者:
Xiang L
DOI:
10.1109/trpms.2020.3015109
发表时间:
2021-05
期刊:
IEEE transactions on radiation and plasma medical sciences
影响因子:
4.4
作者:
[Wang M, Samant P, Wang S, Merill J, Chen Y, Ahmad S, Li D, Xiang L]
通讯作者:
Xiang L
DOI:
10.1002/mp.14245
发表时间:
2020-09
期刊:
Medical physics
影响因子:
3.8
作者:
[Zheng Y, Samant P, Merill J, Chen Y, Ahmad S, Li D, Xiang L]
通讯作者:
Xiang L
Simulation study of protoacoustics as a real-time in-line dosimetry tool for FLASH proton therapy.
原声学作为 FLASH 质子治疗的实时在线剂量测定工具的模拟研究。
DOI:
10.1002/mp.16894
发表时间:
2023
期刊:
Medical physics
影响因子:
3.8
作者:
[Kim,Kaitlyn, Pandey,PrabodhKumar, Gonzalez,Gilberto, Chen,Yong, Xiang,Liangzhong]
通讯作者:
Xiang,Liangzhong
DOI:
10.1364/ol.387501
发表时间:
2020-04-01
期刊:
Optics letters
影响因子:
3.6
作者:
[Zhao Y, Wang S, Merrill JA, Arellano JD, Trevisi LM, Li Y, Xiang L, Qu J, Liu L]
通讯作者:
Liu L
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