Lee Kyoungtae, Lall Rahul, Maharbiz Michel M, Anwar Mekhail
The University of California, San Francisco, USA.
Daegu Gyeongbuk Institute of Science and Technology (DGIST), South Korea.
Phys Imaging Radiat Oncol. 2025 Apr 2;34:100762. doi: 10.1016/j.phro.2025.100762. eCollection 2025 Apr.
Real-time radiation monitoring at the single-particle level is an unmet need for electron radiotherapy, especially for dose deposition to targets in motion or critical OARs. We have developed a first-in-class CMOS-based 0.05 mm single electron sensitive detector. The chiplet integrates all the requisite electronics. The functionality of the system is verified under 6 and 9 MeV clinical electron beams. Percentage depth vs. pulse-width curves for 6 and 9 MeV beams are measured and verified using Monte-Carlo simulations. The proposed system has the potential to enhance the electron radiotherapy quality and safety, providing real-time dosimetry from multiple sites simultaneously.
在单粒子水平上进行实时辐射监测是电子放疗尚未满足的需求,特别是对于运动靶区或关键危及器官的剂量沉积。我们开发了一款同类首创的基于CMOS的0.05毫米单电子敏感探测器。该芯片集成了所有必要的电子元件。该系统的功能在6兆电子伏和9兆电子伏临床电子束下得到验证。测量了6兆电子伏和9兆电子伏电子束的百分深度与脉冲宽度曲线,并通过蒙特卡罗模拟进行了验证。所提出的系统有潜力提高电子放疗的质量和安全性,同时从多个部位提供实时剂量测定。