Huang Yu-Shiang, Peir Jinn-Jer, Wu Chuan-Jen, Wang Mei-Ya, Chen Yi-Wei, Lee Jia-Cheng, Chou Fong-In
Nuclear Science and Technology Development Center, National Tsing Hua University, Hsinchu 300044, Taiwan.
Department of Heavy Particles and Radiation Oncology, Taipei Veterans General Hospital, Taipei 11217, Taiwan.
Life (Basel). 2023 Mar 15;13(3):800. doi: 10.3390/life13030800.
(1) Background: A well-established Boron Neutron Capture Therapy (BNCT) facility includes many essential systems, which are the epithermal neutron beam system, on-line monitoring system (OMS), QA/QC (quality assurance or quality control) system, boron concentration (BC) measurement system, and treatment planning system (TPS). Accurate data transmission, monitoring, and deposition among these systems are of vital importance before, during, and after clinical, animal, and cell BNCT irradiation. This work developed a novel integrated platform NeuTHOR Station (NeuTHORS) for BNCT at Tsing Hua Open-pool Reactor (THOR). Apart from the data of the OMS and QA/QC system, the data of BC and TPS can be loaded on NeuTHORS before BNCT clinical, animal, and cell irradiation. (2) Methods: A multi-paradigm computer programming language c# (c sharp) was used to develop the integrated platform NeuTHORS. The design of NeuTHORS is based on the standard procedures of BNCT treatment or experiment at THOR. Moreover, parallel testing with OMS-BNCT (the former OMS) and QA/QC of THOR was also performed for more than 70 times to verify the validation of NeuTHORS. (3) Results: According to the comparisons of the output, NeuTHORS and OMS-BNCT and QA/QC of THOR show very good consistency. NeuTHORS is now installed on an industrial PC (IPC) and successfully performs the monitoring of BNCT Treatment at THOR. Patients' f BC and TPS data are also input into NeuTHORS and stored on IPC through an internal network from BC measurement room and TPS physicist. Therefore, the treatment data of each patient can be instantaneously established after each BNCT treatment for further study on BNCT. NeuTHORS can also be applied on data acquisition for a BNCT-related study, especially for animal or cell irradiation experiments. (4) Conclusions: A novel integrated platform NeuTHOR Station for monitoring BNCT clinical treatment and animal and cell irradiation study has been successfully established at THOR. With this platform, BNCT radiobiology investigations will be efficiently performed and a thorough data storage and analysis system of BNCT treatments or experiments can thus be systematically built up for the further investigation of BNCT at THOR.
(1) 背景:一个成熟的硼中子俘获疗法(BNCT)设施包含许多关键系统,即超热中子束系统、在线监测系统(OMS)、质量保证/质量控制(QA/QC)系统、硼浓度(BC)测量系统和治疗计划系统(TPS)。在临床、动物和细胞BNCT照射前、照射期间和照射后,这些系统之间准确的数据传输、监测和存储至关重要。本研究为清华大学开放池式反应堆(THOR)的BNCT开发了一种新型集成平台NeuTHOR Station(NeuTHORS)。除了OMS和QA/QC系统的数据外,BC和TPS的数据在BNCT临床、动物和细胞照射前可加载到NeuTHORS上。(2) 方法:使用多范式计算机编程语言C#(C Sharp)开发集成平台NeuTHORS。NeuTHORS的设计基于THOR的BNCT治疗或实验的标准程序。此外,还与OMS-BNCT(原OMS)和THOR的QA/QC进行了70多次并行测试,以验证NeuTHORS的有效性。(3) 结果:根据输出结果比较,NeuTHORS与THOR的OMS-BNCT和QA/QC显示出非常好的一致性。NeuTHORS现已安装在工业个人计算机(IPC)上,并成功实现了对THOR的BNCT治疗的监测。患者的BC和TPS数据也输入到NeuTHORS中,并通过内部网络从BC测量室和TPS物理学家处存储在IPC上。因此,每次BNCT治疗后可即时建立每位患者的治疗数据,以便对BNCT进行进一步研究。NeuTHORS还可应用于BNCT相关研究的数据采集,特别是用于动物或细胞照射实验。(4) 结论:在THOR成功建立了一个用于监测BNCT临床治疗以及动物和细胞照射研究的新型集成平台NeuTHOR Station。借助该平台,将高效开展BNCT放射生物学研究,并可系统地建立BNCT治疗或实验的全面数据存储和分析系统,以便在THOR对BNCT进行进一步研究。