J Biomed Opt. 2010 Jul-Aug;15(4):040501. doi: 10.1117/1.3465548.
Measuring distribution of dissolved oxygen in biological tissue is of prime interest for cancer diagnosis, prognosis, and therapy optimization. Tumor hypoxia indicates poor prognosis and resistance to radiotherapy. Despite its major clinical significance, no current imaging modality provides direct imaging of tissue oxygen. We present preliminary results demonstrating the potential of photoacoustic lifetime imaging (PALI) for noninvasive, 3-D imaging of tissue oxygen. The technique is based on photoacoustic probing of the excited state lifetime of methylene blue (MB) dye. MB is an FDA-approved water soluble dye with a peak absorption at 660 nm. A double pulse laser system (pump probe) is used to excite the dye and probe its transient absorption by detecting photoacoustic emission. The relaxation rate of MB depends linearly on oxygen concentration. Our measurements show high photoacoustic signal contrast at a probe wavelength of 810 nm, where the excited state absorption is more than four times higher than the ground state absorption. Imaging of a simple phantom is demonstrated. We conclude by discussing possible implementations of the technique in clinical settings and combining it with photodynamic therapy (PDT) for real-time therapy monitoring.
测量生物组织中溶解氧的分布对于癌症的诊断、预后和治疗优化至关重要。肿瘤缺氧表明预后不良,对放射治疗有抵抗力。尽管它具有重要的临床意义,但目前没有任何成像方式可以直接对组织氧进行成像。我们展示了初步结果,证明了光声寿命成像(PALI)在非侵入性、三维组织氧成像中的潜力。该技术基于亚甲蓝(MB)染料激发态寿命的光声探测。MB 是一种 FDA 批准的水溶性染料,峰值吸收在 660nm。双脉冲激光系统(泵浦探针)用于激发染料,并通过检测光声发射来探测其瞬态吸收。MB 的弛豫速率与氧浓度呈线性关系。我们的测量结果表明,在 810nm 的探测波长下,光声信号对比度很高,其中激发态吸收比基态吸收高四倍多。简单的幻影成像得到了证明。最后,我们讨论了该技术在临床环境中的可能实现,并将其与光动力疗法(PDT)结合,用于实时治疗监测。