Park Sang-June, Rogers W Leslie, Clinthorne Neal H
Department of Nuclear Engineering and Radiological Sciences, University of Michigan, Ann Arbor, MI 48109, USA.
Phys Med Biol. 2007 Aug 7;52(15):4653-77. doi: 10.1088/0031-9155/52/15/019. Epub 2007 Jul 17.
A small animal positron emission tomography (PET) instrument using a high-resolution solid-state detector insert in a conventional PET system was investigated for its potential to achieve sub-millimeter spatial resolution for mouse imaging. Monte Carlo simulations were used to estimate the effect of detector configurations (thickness, length and radius) on sensitivity. From this initial study, a PET system having an inner cylindrical silicon detector (4 cm ID, 4 cm length and 1.6 cm thickness composed of 16 layers of 300 microm x 300 microm x 1 mm pads), for scattering, surrounded by an outer cylindrical BGO scintillation detector (17.6 cm ID, 16 cm length and 2 cm thickness segmented into 3 mm x 3 mm x 20 mm crystals), for capture was evaluated in detail. In order to evaluate spatial resolution, sensitivity and image quality of the PET system, 2D images of multiple point and cylinder sources were reconstructed with the simulation data including blurring from positron range and annihilation photon acollinearity using filtered backprojection (FBP). Simulation results for (18)F demonstrate 340 microm FWHM at the center of the field of view with 1.0% sensitivity from the coincidence of single scattering events in both silicon detectors and 1.0 mm FWHM with 9.0% sensitivity from the coincidence of single scattering in the silicon and full energy absorption of the second photon in the BGO detector.
研究了一种在传统正电子发射断层扫描(PET)系统中使用高分辨率固态探测器插件的小动物PET仪器,以评估其在小鼠成像中实现亚毫米空间分辨率的潜力。使用蒙特卡罗模拟来估计探测器配置(厚度、长度和半径)对灵敏度的影响。从这项初步研究中,详细评估了一个PET系统,该系统具有一个内部圆柱形硅探测器(内径4 cm、长度4 cm、厚度1.6 cm,由16层300微米×300微米×1毫米的小块组成)用于散射,其周围环绕着一个外部圆柱形BGO闪烁探测器(内径17.6 cm、长度16 cm、厚度2 cm,分割成3毫米×3毫米×20毫米的晶体)用于捕获。为了评估该PET系统的空间分辨率、灵敏度和图像质量,利用包括正电子射程模糊和湮没光子共线性模糊在内的模拟数据,通过滤波反投影(FBP)重建了多个点源和圆柱源的二维图像。对于(18)F的模拟结果表明,在视野中心处的半高宽为340微米,硅探测器中单次散射事件符合产生的灵敏度为1.0%;硅探测器中单次散射与BGO探测器中第二个光子全能量吸收符合产生的灵敏度为9.0%,半高宽为1.0毫米。