Gao Feng, Zhao Huijuan, Tanikawa Yukari, Yamada Yukio
College of Precision Instrument and Optoeletronics Engineering, Tianjin University, Tianjin 300072, China.
Opt Express. 2006 Aug 7;14(16):7109-24. doi: 10.1364/oe.14.007109.
Fluorescence diffuse optical tomography (DOT) has attracted many attentions from the community of biomedical imaging, since it provides effective enhancement in imaging contrast. This modality is now rapidly evolving as a potential means of monitoring molecular events in small living organisms with help of molecule-specific contrast agents, referred to as fluorescence molecular tomography (FMT). FMT could greatly promote pathogenesis research, drug development, and therapeutic intervention. Although FMT in steady-state and frequency-domain modes have been heavily investigated, the extension to time-domain scheme is imminent for its several unique advantages over the others. By extending the previously developed generalized pulse spectrum technique for time-domain DOT, we propose a linear, featured-data image reconstruction algorithm for time-domain FMT that can simultaneously reconstruct both fluorescent yield and lifetime images of multiple fluorophores, and validate the methodology with simulated data.
荧光扩散光学断层扫描(DOT)因其能有效增强成像对比度,已引起生物医学成像领域的广泛关注。这种模态正迅速发展成为借助分子特异性造影剂监测小型活体生物中分子事件的一种潜在手段,即荧光分子断层扫描(FMT)。FMT能够极大地推动发病机制研究、药物开发和治疗干预。尽管稳态和频域模式下的FMT已得到深入研究,但鉴于时域方案相较于其他方案具有若干独特优势,将其扩展至时域方案已迫在眉睫。通过扩展先前为时域DOT开发的广义脉冲谱技术,我们提出了一种用于时域FMT的线性、特征数据图像重建算法,该算法能够同时重建多种荧光团的荧光产率和寿命图像,并使用模拟数据对该方法进行了验证。