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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Depth-encoded spectral domain phase microscopy for simultaneous multi-site nanoscale optical measurements
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Depth-encoded spectral domain phase microscopy for simultaneous multi-site nanoscale optical measurements

机译:深度编码光谱域相显微镜,用于同时进行多站点纳米级光学测量

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摘要

Spectral domain phase microscopy (SDPM) is an extension of spectral domain optical coherence tomography (SDOCT) that exploits the extraordinary phase stability of spectrometer-based systems with common-path geometry to resolve sub-wavelength displacements within a sample volume. This technique has been implemented for high resolution axial displacement and velocity measurements in biological samples, but since axial displacement information is acquired serially along the lateral dimension, it has been unable to measure fast temporal dynamics in extended samples. Depth-encoded SDPM (DESDPM) uses multiple sample arms with unevenly spaced common path reference reflectors to multiplex independent SDPM signals from separate lateral positions on a sample simultaneously using a single interferometer, thereby reducing the time required to detect unique optical events to the integration period of the detector. Here, we introduce DESDPM and demonstrate the ability to acquire useful phase data concurrently at two laterally separated locations in a phantom sample as well as a biological preparation of spontaneously beating chick cardiomyocytes. DESDPM may be a useful tool for imaging fast cellular phenomena such as nervous conduction velocity or contractile motion.
机译:光谱域相位显微镜(SDPM)是光谱域光学相干断层扫描(SDOCT)的扩展,它利用具有共通路径几何结构的基于光谱仪的系统的非凡相位稳定性来解决样品体积内的亚波长位移。该技术已实现用于生物样品中的高分辨率轴向位移和速度测量,但是由于轴向位移信息是沿横向方向连续获取的,因此它无法测量扩展样品中的快速时间动态。深度编码的SDPM(DESDPM)使用带有不均匀间隔的公共路径参考反射器的多个样品臂,使用单个干涉仪同时多路复用来自样品上不同横向位置的独立SDPM信号,从而将检测独特光学事件所需的时间减少到积分期间探测器的在这里,我们介绍了DESDPM,并演示了在幻像样品中两个横向分离的位置上同时获取有用的相位数据的能力,以及自发跳动的鸡心肌细胞的生物制剂。 DESDPM可能是用于成像快速细胞现象(例如神经传导速度或收缩运动)的有用工具。

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