Dhar Sulochana, Lo Justin Y, Palmer Gregory M, Brooke Martin A, Nichols Brandon S, Yu Bing, Ramanujam Nirmala, Jokerst Nan M
Department of Electrical and Computer Engineering, Duke University, Research Drive, Durham, NC 27708, USA.
Biomed Opt Express. 2012 Dec 1;3(12):3211-22. doi: 10.1364/BOE.3.003211. Epub 2012 Nov 8.
Diffuse reflectance spectroscopy (DRS) is a well-established method to quantitatively distinguish between benign and cancerous tissue for tumor margin assessment. Current multipixel DRS margin assessment tools are bulky fiber-based probes that have limited scalability. Reported herein is a new approach to multipixel DRS probe design, which utilizes direct detection of the DRS signal by using optimized custom photodetectors in direct contact with the tissue. This first fiberless DRS imaging system for tumor margin assessment consists of a 4 × 4 array of annular silicon photodetectors and a constrained free-space light delivery tube optimized to deliver light across a 256 mm(2) imaging area. This system has 4.5 mm spatial resolution. The signal-to-noise ratio measured for normal and malignant breast tissue-mimicking phantoms was 35 dB to 45 dB for λ = 470 nm to 600 nm.
漫反射光谱法(DRS)是一种成熟的方法,用于在肿瘤边缘评估中定量区分良性和癌性组织。当前的多像素DRS边缘评估工具是基于光纤的大型探头,其扩展性有限。本文报道了一种多像素DRS探头设计的新方法,该方法通过使用与组织直接接触的优化定制光电探测器直接检测DRS信号。这种用于肿瘤边缘评估的首个无光纤DRS成像系统由一个4×4环形硅光电探测器阵列和一个经过优化的受限自由空间光传输管组成,该光传输管可在256 mm²的成像区域传输光。该系统具有4.5 mm的空间分辨率。对于λ = 470 nm至600 nm,在模拟正常和恶性乳腺组织的体模上测得的信噪比为35 dB至45 dB。