首页> 外文会议>Photonic Applications in Biosensing and Imaging; Progress in Biomedical Optics and Imaging; vol.6 no.39 >Differential Polarization Laser Scanning Microscopy. Biological Applications
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Differential Polarization Laser Scanning Microscopy. Biological Applications

机译:微分偏振激光扫描显微镜。生物应用

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With the aid of a differential polarization (DP) apparatus, developed in our laboratory and attached to our laser scanning confocal microscope, we can measure the magnitude and spatial distribution of 8 different DP quantities: linear and circular dichroism (LD&CD), linear and circular anisotropy of the emission (R and CPL, confocal), fluorescence detected dichroisms (FDLD&FDCD, confocal), linear birefringence (LB), and the degree of polarization of fluorescence emission (P, confocal). The attachment uses high frequency modulation and subsequent demodulation, via lock-in amplifier, of the detected intensity values, and records and displays pixel-by-pixel the measured DP quantity. These microscopic DP data carry important physical information on the molecular architecture of anisotropically organized samples. Microscopic DP measurements are thought to be of particular importance in biology. In most biological samples anisotropy is difficult to determine with conventional, macroscopic DP measurements and microscopic variations are of special significance. In this paper, we describe the method of LB imaging. Using magnetically oriented isolated chloroplasts trapped in polyacrylamide gel, we demonstrate that LB can be determined with high sensitivity and good spatial resolution. Granal thylakoid membranes in edge-aligned orientation exhibited strong LB, with large variations in its sign and magnitude. In face-aligned position LB was considerably weaker, and tended to vanish when averaged for the whole image. The strong local variations are attributed to the inherent heterogeneity of the membranes, i.e. to their internal differentiation into multilamellar, stacked membranes (grana), and single thylakoids (stroma membranes). Further details and applications of our DP-LSM will be published elsewhere.
机译:借助我们实验室开发的并连接到激光扫描共聚焦显微镜的微分偏振(DP)仪器,我们可以测量8种不同DP量的大小和空间分布:线性和圆二色性(LD&CD),线性和圆二色性发射的各向异性(R和CPL,共聚焦),荧光检测的二色性(FDLD&FDCD,共聚焦),线性双折射(LB)和荧光发射的偏振度(P,共聚焦)。该附件通过锁定放大器对接收的强度值进行高频调制和随后的解调,并逐个像素记录和显示测量的DP量。这些微观DP数据携带了有关各向异性组织的样品的分子结构的重要物理信息。显微DP测量被认为在生物学中特别重要。在大多数生物样品中,很难通过常规的宏观DP测量确定各向异性,而微观变化具有特殊意义。在本文中,我们描述了LB成像的方法。使用捕获在聚丙烯酰胺凝胶中的磁性定向分离叶绿体,我们证明了LB可以高灵敏度和良好的空间分辨率进行测定。边缘对准的粒状类囊体膜表现出很强的LB,其符号和大小都有很大的变化。在脸部对齐位置,LB明显较弱,并且在对整个图像进行平均时趋于消失。强烈的局部变化归因于膜的固有异质性,即其内部分化为多层膜,堆叠膜(grana)和单类囊体(基质膜)。我们的DP-LSM的更多详细信息和应用程序将在其他地方发布。

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