Luk Alex, Nouizi Farouk, Erkol Hakan, Unlu Mehmet B, Gulsen Gultekin
Opt Lett. 2017 Oct 15;42(20):4171-4174. doi: 10.1364/OL.42.004171.
We recently introduced a new high-resolution diffuse optical imaging technique termed photo-magnetic imaging (PMI), which utilizes magnetic resonance thermometry (MRT) to monitor the 3D temperature distribution induced in a medium illuminated with a near-infrared light. The spatiotemporal temperature distribution due to light absorption can be accurately estimated using a combined photon propagation and heat diffusion model. High-resolution optical absorption images are then obtained by iteratively minimizing the error between the measured and modeled temperature distributions. We have previously demonstrated the feasibility of PMI with experimental studies using tissue simulating agarose phantoms. In this Letter, we present the preliminary ex vivo PMI results obtained with a chicken breast sample. Similarly to the results obtained on phantoms, the reconstructed images reveal that PMI can quantitatively resolve an inclusion with a 3 mm diameter embedded deep in a biological tissue sample with only 10% error. These encouraging results demonstrate the high performance of PMI in ex vivo biological tissue and its potential for in vivo imaging.
我们最近推出了一种新的高分辨率漫射光学成像技术,称为光磁成像(PMI),它利用磁共振测温法(MRT)来监测在用近红外光照射的介质中诱导产生的三维温度分布。通过结合光子传播和热扩散模型,可以准确估计由于光吸收引起的时空温度分布。然后,通过迭代最小化测量温度分布与建模温度分布之间的误差,获得高分辨率的光吸收图像。我们之前通过使用组织模拟琼脂糖模型的实验研究证明了PMI的可行性。在这封信中,我们展示了用鸡胸样本获得的初步离体PMI结果。与在模型上获得的结果类似,重建图像显示PMI能够以仅10%的误差定量分辨深埋在生物组织样本中的直径为3毫米的内含物。这些令人鼓舞的结果证明了PMI在离体生物组织中的高性能及其在体内成像的潜力。