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Realtime intraoperative imaging system combining annihilation γ-ray detectors and video projectors

机译:融合intra灭γ射线探测器和视频投影仪的实时术中成像系统

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Realtime near-infrared (NIR) fluorescence imaging system could be exploited for intraoperative imaging guidance. However, the NIR fluorescence imaging technique attains only small penetration depths (a few centimeters) due to the absorption and scattering of light. The purpose of this study was to develop a realtime intraoperative imaging system using annihilation gamma-ray detectors for localization and laser projectors for visualization of surgical region embedded deep in tissue. The proof-of-principle gamma-ray detectors consisted of two front detector blocks and one backside detector block. The front detector block consisted of 8 detector modules arranged in a blank square shape and the backside detector block was composed of 4 × 8 detector modules. Each detector module was composed of a 4 × 4 array LYSO coupled to a 4 × 4 GAPD array. Front and backside detectors were located at opposite sides of each other. Commercial portable LED laser projector with a luminous flux of 500 ANSI lumens was used for the intra-operative system. Two laser projectors were positioned behind each front detector. The design parameters of the gamma-ray imaging system were adjusted and optimized using a Monte Carlo simulation tool, GATE. The performance of the system spatial resolution and count rate were estimated by simulation and by experiment using 450 kBq Na-22 point source. Experimentally measured spatial resolution and count rate were 4.1 mm and 300 counts per second which were similar to those estimated by the simulation. The beam projected by laser projectors was accurately localized the position of radiation source. Experimental results indicate that realtime intraoperative imaging system combining annihilation gamma-ray detectors and laser projectors proposed in this study would be useful to localize and to visualize surgical region embedded deep in tissue.
机译:可以利用实时近红外(NIR)荧光成像系统进行术中的成像引导。然而,由于光的吸收和散射,NIR荧光成像技术仅达到小穿透深度(几厘米)。本研究的目的是利用湮灭伽马射线探测器来开发实​​时术中成像系统,用于定位和激光投影仪,用于可视化组织深层外科手术区域。原则上的伽马射线探测器包括两个前检测器块和一个背面检测器块。前检测器块由8个探测器模块组成,布置在空平方形状,背面检测器块由4×8检测器模块组成。每个检测器模块由4×4阵列LySO组成,耦合到4×4 GapD阵列。前后探测器位于彼此的相对侧面。具有500个ANSI流明的发光通量的商业便携式LED激光投影仪用于操作帧内系统。两个激光投影仪位于每个前检测器后面。使用蒙特卡罗仿真工具,门进行调整和优化伽马射线成像系统的设计参数。通过使用450 kBQ Na-22点源进行仿真估计系统空间分辨率和计数率的性能。通过实验测量的空间分辨率和计数率为4.1mm,每秒300计数,与模拟估计的相似。激光投影仪投影的光束准确地定位了辐射源的位置。实验结果表明,该研究提出的湮灭伽马射线探测器和激光投影仪的实时朝内成像系统将是有用的,以定位和可视化组织深层的外科区域。

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