Center for Molecular Imaging, The Brown Foundation Institute of Molecular Medicine, University of Texas Health Science Center at Houston, 1825 Pressler Street, Houston, TX 77030, USA.
Phys Med Biol. 2012 Dec 21;57(24):8135-52. doi: 10.1088/0031-9155/57/24/8135. Epub 2012 Nov 22.
The work presented herein describes the system design and performance evaluation of a miniaturized near-infrared fluorescence (NIRF) frequency-domain photon migration (FDPM) system with non-contact excitation and homodyne detection capability for small animal fluorescence tomography. The FDPM system was developed specifically for incorporation into a Siemens micro positron emission tomography/computed tomography (microPET/CT) commercial scanner for hybrid small animal imaging, but could be adapted to other systems. Operating at 100 MHz, the system noise was minimized and the associated amplitude and phase errors were characterized to be ±0.7% and ±0.3°, respectively. To demonstrate the tomographic ability, a commercial mouse-shaped phantom with 50 µM IRDye800CW and ⁶⁸Ga containing inclusion was used to associate PET and NIRF tomography. Three-dimensional mesh generation and anatomical referencing was accomplished through CT. A third-order simplified spherical harmonics approximation (SP₃) algorithm, for efficient prediction of light propagation in small animals, was tailored to incorporate the FDPM approach. Finally, the PET-NIRF target co-localization accuracy was analyzed in vivo with a dual-labeled imaging agent targeting orthotopic growth of human prostate cancer. The obtained results validate the integration of time-dependent fluorescence tomography system within a commercial microPET/CT scanner for multimodality small animal imaging.
本文介绍了一种小型近红外荧光(NIRF)频域光迁移(FDPM)系统的系统设计和性能评估,该系统具有非接触激发和同相检测功能,可用于小动物荧光层析成像。FDPM 系统是专为集成到西门子微型正电子发射断层扫描/计算机断层扫描(microPET/CT)商用扫描仪中而开发的,用于混合小动物成像,但也可以适应其他系统。该系统工作在 100MHz 时,将噪声降至最低,并对相关的幅度和相位误差分别进行了 ±0.7%和 ±0.3°的特征化。为了演示层析成像能力,使用了一个带有 50µM IRDye800CW 和含有 ⁶⁸Ga 的商用鼠形体模,以关联 PET 和 NIRF 层析成像。通过 CT 完成了三维网格生成和解剖参考。为了在小动物中高效预测光传播,定制了三阶简化球谐逼近(SP₃)算法以纳入 FDPM 方法。最后,使用针对人前列腺癌原位生长的双标记成像剂在体内分析了 PET-NIRF 靶标共定位准确性。所得结果验证了在商用 microPET/CT 扫描仪中集成时间相关荧光层析成像系统用于多模态小动物成像的可行性。