首页> 外文会议>Conference on Multiphoton Microscopy in the Biomedical Sciences; 20080120-22; San Jose,CA(US) >Starch granules as a probe for the polarization at the sample plane of a high resolution multiphoton microscope
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Starch granules as a probe for the polarization at the sample plane of a high resolution multiphoton microscope

机译:淀粉颗粒作为高分辨率多光子显微镜样品平面极化的探针

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Because of its polarization sensitivity, SHG microscopy can provide information about the orientation and degree of structural organization inside biological samples. To fully exploit the above potential, the state of the polarization at the sample plane needs to be known. In this work we present starch granules as a reliable probe for the polarization state of the excitation beam at the sample plane of a high resolution multiphoton microscope. Polarization dependent SHG series of images demonstrated the radial distribution of SHG active molecules inside starch granules. This allowed the granule to exhibit symmetrical SHG emission regions. The pattern rotates along with the rotation of a λ/2 waveplate and thus, can demonstrate the polarization at the sample plane. Maximum signal in the forward detected geometry appears when imaging starch granules exactly at the hemisphere plane. Symmetric SHG regions rotating with the incoming linear polarization were also recorded in the backward detected geometry. A portion of the backwards detected SHG signal, which corresponds to two rotating equator arcs, does not overlap with the forward SHG signal. Importantly, polarization measurements, performed either in the forward or the backwards directions, have demonstrated the suitability and flexibility of this technique for both detection schemes. As result, observation of the starch signal allowed us to know the polarization of our SHG microscope. Furthermore, by coding this information in an angular representation, we corrected the input values in a theoretical model that predicts the average orientation of SHG active molecules. This has allowed us to map the mean orientation of SHG active molecules in body walls muscle of Caenorhabditis elegans, with pixel resolution.
机译:由于其偏振敏感性,SHG显微镜可以提供有关生物样品内部结构组织的方向和程度的信息。为了充分利用上述电势,需要知道样品平面的极化状态。在这项工作中,我们提出淀粉颗粒作为高分辨率多光子显微镜样品平面上激发光束偏振态的可靠探针。偏振相关的SHG系列图像证明了淀粉颗粒内部SHG活性分子的径向分布。这使颗粒表现出对称的SHG发射区。图案随λ/ 2波片的旋转而旋转,因此可以显示出样品平面上的偏振。当正好在半球平面上成像淀粉颗粒时,会出现前向检测到的几何结构中的最大信号。随入射线偏振旋转的对称SHG区域也记录在向后检测到的几何形状中。向后检测到的SHG信号的对应于两个旋转赤道弧的一部分与正向SHG信号不重叠。重要的是,在向前或向后方向上执行的偏振测量已经证明了该技术对两种检测方案的适用性和灵活性。结果,观察淀粉信号使我们知道了SHG显微镜的偏振。此外,通过以角度表示形式编码此信息,我们在预测SHG活性分子平均取向的理论模型中校正了输入值。这使我们能够绘制秀丽隐杆线虫体壁肌肉中SHG活性分子的平均方向,并具有像素分辨率。

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