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Photonic Resonator Outcoupler Microscopy (PROM)

机译:光子谐振器外耦合显微镜(PROM)

摘要

Photonic Resonator Outcoupler Microscopy (PROM) is a novel, label-free approach for dynamic, long-term, quantitative imaging of a sample on a surface of a photonic crystal (PC) biosensor, in which components of the sample outcouple photons from the resonant evanescent field, resulting in highly localized reductions of the reflected light intensity. By mapping changes in the resonant reflected peak intensity from the PC surface, components of a sample (e.g., focal adhesions) can be detected and dynamically tracked. To demonstrate the simplicity and utility of PROM for focal adhesion imaging, PROM images are compared with biosensor images of surface-bound dielectric permittivity and with fluorescence microscopy images of labeled adhesion molecules in dental stem cells. PROM can dynamically quantify the surface-attached cellular mass density and lateral dimensions of focal adhesion clusters.
机译:光子谐振器外耦合显微镜(PROM)是一种新颖的,无标签的方法,用于对光子晶体(PC)生物传感器表面上的样品进行动态,长期,定量成像,其中样品的成分使光子与共振耦合衰减场,导致反射光强度高度局部降低。通过映射来自PC表面的共振反射峰强度的变化,可以检测并动态跟踪样品的成分(例如,粘着斑)。为了证明PROM用于粘着斑成像的简单性和实用性,将PROM图像与表面结合介电常数的生物传感器图像以及牙科干细胞中标记的粘附分子的荧光显微镜图像进行了比较。 PROM可以动态量化粘着簇的表面附着的细胞质量密度和横向尺寸。

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