GE Healthcare, Life Sciences Division, Piscataway, NJ 08854, USA.
J Microsc. 2012 Sep;247(3):269-76. doi: 10.1111/j.1365-2818.2012.03642.x.
Traditional confocal microscopy uses a physical aperture barrier to prevent out-of-focus light from reaching the detector. The physical nature of a conventional aperture limits control over the system confocality. We describe a new line scanning confocal microscope that eliminates a need for a physical aperture by employing a software-controllable rolling shutter on a CMOS camera. A confocal image is obtained by synchronizing motion of the rolling shutter and the laser line scanning over a sample. Confocal resolution of this microscope is adjustable in real time and independently established for each fluorescence channel by changing the rolling shutter width. This technology has been implemented in the IN Cell Analyzer 6000 system by GE Healthcare.
传统的共聚焦显微镜使用物理孔径屏障来防止离焦光到达探测器。传统孔径的物理性质限制了对系统共聚焦的控制。我们描述了一种新的线扫描共焦显微镜,它通过在 CMOS 相机上使用软件可控的卷帘快门来消除对物理孔径的需求。通过同步卷帘快门和激光线扫描过样品的运动来获得共焦图像。该显微镜的共焦分辨率可以实时调整,并通过改变卷帘快门的宽度为每个荧光通道独立建立。这项技术已由通用电气医疗集团在 IN Cell Analyzer 6000 系统中实现。