Northeastern University, Department of Electrical and Computer Engineering, Boston, Massachusetts 02115, USA.
J Biomed Opt. 2013 Jun;18(6):061216. doi: 10.1117/1.JBO.18.6.061216.
Depth information is resolved from thick specimens using a modification of structured illumination. By projecting a random projection pattern with varied spatial frequencies that is rotated while capturing images, sectioning can be performed using an incoherent light source in reflectance only. This provides a low-cost solution to obtaining information similar to that produced in confocal microscopy and other methods of structured illumination, without the requirement of complex or elaborate equipment, coherent light sources, or fluorescence. The broad line width of the light emitting diode minimizes artifacts associated with speckle from the laser while also increasing the safety of the instrument. Single diffusers and cascaded diffusers are compared to provide the most efficient method for sectioning at depth. By using reflectance only, in vivo images are produced on a human subject, generating high-contrast images and providing depth information about subsurface objects.
深度信息是通过对厚标本进行结构光照明显微术的改进来获得的。通过投射具有不同空间频率的随机投影图案,并在捕获图像时旋转,仅使用反射光中的非相干光源即可进行切片。这为获取类似于共聚焦显微镜和其他结构光照明显微术方法产生的信息提供了一种低成本的解决方案,而无需复杂或精心设计的设备、相干光源或荧光。发光二极管的宽谱线宽度最小化了与激光散斑相关的伪影,同时也提高了仪器的安全性。比较了单个扩散器和级联扩散器,以提供在深度上进行切片的最有效方法。仅使用反射光,在人体受试者上产生了活体图像,生成了高对比度的图像,并提供了关于亚表面物体的深度信息。