Zeidan Adel, Do Dukho, Kang Dongkyun, Ikuta Mitsuhiro, Ryu Jiheun, Tearney Guillermo J
Wellman Center for Photomedicine, Massachusetts General Hospital, Boston, Massachusetts, 02114.
Harvard Medical School, 25 Shattuck Street, Boston, Massachusetts, 02115.
Lasers Surg Med. 2019 Nov;51(9):808-814. doi: 10.1002/lsm.23102. Epub 2019 May 26.
Spectrally encoded endoscopy (SEE) is an optical imaging technology that uses spatial wavelength multiplexing to conduct endoscopy in miniature, small diameter probes. Contrary to the previous side-viewing SEE devices, forward-viewing SEE probes are advantageous as they provide a look ahead that facilitates navigation and surveillance. The objective of this work was to develop a miniature forward-viewing SEE probe with a wide field of view and a high spatial resolution.
We designed and developed a forward-viewing SEE device with an overall total diameter of 1.27 mm, which consists of a monolithic illumination probe with a length of 3.87 mm and a diameter of 500 µm, 8 multimode detection fibers that were polished at a 17° angle, a rotational scanning mechanism, and a sheath. The SEE device was evaluated using a USAF resolution target and was used for preclinical imaging of a swine joint ex vivo.
This design resulted in a high resolution probe (best spatial resolution of 20.3 µm), a wide total angular field of view of 100°, and an effective number of imaging elements of ~344,000 pixels. The SEE probe performance was compared to a commercial color chip-on-the-tip endoscope; while monochrome, results showed better spatial resolution and a wider field of view for the SEE device.
These results demonstrate the potential of this forward-viewing SEE probe for visualization and navigation in medical imaging applications. Lasers Surg. Med. © 2019 Wiley Periodicals, Inc.
光谱编码内窥镜检查(SEE)是一种光学成像技术,它利用空间波长复用在微型小直径探头中进行内窥镜检查。与先前的侧视SEE设备不同,前视SEE探头具有优势,因为它们提供了前瞻性视野,便于导航和监测。这项工作的目的是开发一种具有宽视野和高空间分辨率的微型前视SEE探头。
我们设计并开发了一种前视SEE设备,其总直径为1.27毫米,由一个长度为3.87毫米、直径为500微米的整体照明探头、8根以17°角抛光的多模检测光纤、一个旋转扫描机构和一个护套组成。使用美国空军分辨率靶对标SEE设备进行评估,并将其用于猪关节的离体临床前成像。
这种设计产生了一个高分辨率探头(最佳空间分辨率为20.3微米)、100°的宽总视角和约344,000像素的有效成像元件数量。将SEE探头的性能与商用尖端彩色芯片内窥镜进行了比较;虽然是单色的,但结果显示SEE设备具有更好的空间分辨率和更宽的视野。
这些结果证明了这种前视SEE探头在医学成像应用中用于可视化和导航的潜力。激光外科医学。©2019威利期刊公司。