Jia Yali, Baumann Thomas K, Wang Ruikang K
Department of Biomedical Engineering, Oregon Health & Science University, 3303 SW Bond Avenue, Portland, Oregon 97239.
J Innov Opt Health Sci. 2010 Oct 1;3(4):307-313. doi: 10.1142/S1793545810001167.
Diabetic neuropathy (DN) is, at least in part, associated with the functional attenuation of vasa nervorum, the microvascular structure of peripheral nerves. Microvascular imaging options for vasa nervorum still remain limited. In this work, Optical micro-angiography (OMAG), a volumetric, label-free imaging technique is utilized for characterizing, with high resolution, blood perfusion of peripheral nerve in diabetic mice. We demonstrate that OMAG is able to visualize the structure of microvasculature and to quantify the changes of dynamic blood flow and vessel diameters during administration of vessel stimulator in both diabetic and normal mice. The results indicate the potential of OMAG to assess the blood supply of nerve involved in the pathology and treatment of DN.
糖尿病性神经病变(DN)至少部分与神经血管(外周神经的微血管结构)的功能衰减有关。用于神经血管的微血管成像方法仍然有限。在这项研究中,光学微血管造影(OMAG),一种体积性、无标记的成像技术,被用于高分辨率地表征糖尿病小鼠外周神经的血液灌注。我们证明,OMAG能够可视化微血管结构,并在给糖尿病小鼠和正常小鼠注射血管刺激剂期间量化动态血流和血管直径的变化。结果表明,OMAG在评估参与DN病理和治疗的神经血液供应方面具有潜力。