Wu Yicong, Xi Jiefeng, Huo Li, Padvorac Jason, Shin Eun Ji, Giday Samuel A, Lennon Anne Marie, Canto Marcia Irene F, Hwang Joo Ha, Li Xingde
Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD 21205 USA.
Department of Bioengineering, University of Washington, Seattle, WA 98195 USA.
IEEE J Sel Top Quantum Electron. 2010 Jul-Aug;16(4):863-869. doi: 10.1109/jstqe.2009.2035362. Epub 2009 Dec 15.
Fine optical coherence tomography (OCT) imaging needles that can be integrated with a standard biopsy needle have been developed with a new optics design to improve the optical quality and mechanical robustness, where a fiber-optic lens (that is spliced to a single-mode fiber) and a microreflector are encased within a microglass tube. The design also minimizes the cylindrical lens effect induced by the glass tube and eases the needle assembly process. Real-time cross-sectional OCT imaging of various tissue samples were performed using the miniature-imaging needle along with a 1300-nm swept-source OCT system. The preliminary results demonstrate the improved mechanical and optical performance and suggest the potential of the fine OCT needle for minimally invasive interstitial imaging and image-guided biopsy.
已经开发出了可与标准活检针集成的高分辨率光学相干断层扫描(OCT)成像针,采用了新的光学设计以提高光学质量和机械坚固性,其中一个光纤透镜(与单模光纤熔接)和一个微反射镜被封装在一个微玻璃管内。该设计还最大限度地减少了玻璃管引起的柱面透镜效应,并简化了针的组装过程。使用微型成像针和1300纳米扫频源OCT系统对各种组织样本进行了实时横截面OCT成像。初步结果证明了其改进的机械和光学性能,并表明这种高分辨率OCT针在微创间质成像和图像引导活检方面具有潜力。