Ogien Jonas, Daures Anthony, Cazalas Maxime, Perrot Jean-Luc, Dubois Arnaud
DAMAE Medical, Paris, 75013, France.
CHU St-Etienne, Service Dermatologie, Saint-Etienne, 42055, France.
Front Optoelectron. 2020 Dec;13(4):381-392. doi: 10.1007/s12200-020-1096-x. Epub 2020 Dec 23.
This paper reports on the latest advances in line-field confocal optical coherence tomography (LC-OCT), a recently invented imaging technology that now allows the generation of either horizontal (x × y) section images at an adjustable depth or vertical (x × z) section images at an adjustable lateral position, as well as three-dimensional images. For both two-dimensional imaging modes, images are acquired in real-time, with real-time control of the depth and lateral positions. Three-dimensional (x × y × z) images are acquired from a stack of horizontal section images. The device is in the form of a portable probe. The handle of the probe has a button and a scroll wheel allowing the user to control the imaging modes. Using a supercontinuum laser as a broadband light source and a high numerical microscope objective, an isotropic spatial resolution of ∼1 µm is achieved. The field of view of the three-dimensional images is 1.2 mm × 0.5 mm × 0.5 mm (x × y × z). Images of skin tissues are presented to demonstrate the potential of the technology in dermatology.
本文报道了线场共焦光学相干断层扫描(LC-OCT)的最新进展,这是一种最近发明的成像技术,现在可以生成在可调深度的水平(x×y)截面图像或在可调横向位置的垂直(x×z)截面图像,以及三维图像。对于这两种二维成像模式,图像都是实时采集的,同时可以实时控制深度和横向位置。三维(x×y×z)图像是从一叠水平截面图像中获取的。该设备采用便携式探头的形式。探头的手柄有一个按钮和一个滚轮,允许用户控制成像模式。使用超连续激光作为宽带光源和高数值显微镜物镜,可实现约1 µm的各向同性空间分辨率。三维图像的视野为1.2 mm×0.5 mm×0.5 mm(x×y×z)。文中展示了皮肤组织的图像,以证明该技术在皮肤病学中的潜力。