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Fast Neuronal Imaging using Objective Coupled Planar Illumination Microscopy.

机译:使用物镜耦合平面照明显微镜进行快速神经元成像。

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摘要

Complex computations performed by the brain are produced by activities of neuronal populations. There is a large diversity in the functions of each individual neuron, and neuronal activities occur in the time scale of milliseconds. In order to gain a fundamental understanding of the neuronal populations, one has to measure activity of each neuron at high temporal resolution, while investigating enough neurons to encapsulate the neuronal diversity.;Traditional neurotechniques such as electrophysiology and optical imaging are constrained by the number of neurons whose activities can be simultaneously measured or the speed of measuring such activities. We have developed a novel light-sheet based technique called Objective Coupled Planar Illumination (OCPI) microscopy which is capable of measuring simultaneous activities of thousands of neurons at high speeds. In this thesis I pursue the following two aims: · Improve OCPI microscopy by enhancing the spatial resolution deeper in tissue. Tissue inhomogeneity and refractive index mismatch at the surface of the tissue lead to optical aberrations. We have compensated for such aberrations by (1) miniaturizing the OCPI illumination optics, so as to enable more vertical imaging of the tissue, (2) correcting for the angular defocus caused by the refraction at the immersion fluid/tissue interface, and (3) applying adaptive optics to correct for higher order optical aberrations. The improvement in the depth at which one can image tissue will enable the measurement of activities of neuronal populations in cortical areas. · Measure the diversity in the expression pattern of VSNs responsive to sulfated steroids. Nodari et al. have identified sulfated steroids as a novel family of ligands which activate vomeronasal sensory neurons (VSNs). Due to the experimental constraints, it has not been possible to obtain a comprehensive understanding of the number, location and functional characteristics of the sulfated steroid responsive VSNs. Applying OCPI microscopy and calcium imaging to simultaneously image thousands of VSNs, we show that the sulfated steroid responsive neurons (1) have unique ligand preferences, (2) are predominantly present in the apical regions of the VNO, and (3) that the choice of expression of a receptor type is not purely stochastic.
机译:大脑执行的复杂计算是由神经元群体的活动产生的。每个神经元的功能存在很大的差异,并且神经元的活动发生在毫秒的时间范围内。为了获得对神经元种群的基本了解,必须在高时间分辨率下测量每个神经元的活动,同时研究足够的神经元以封装神经元多样性。传统的神经技术,例如电生理学和光学成像受数量的限制。可同时测量其活动的神经元或测量此类活动的速度。我们已经开发了一种基于光片的新颖技术,称为物镜耦合平面照明(OCPI)显微镜,该技术能够高速测量数千个神经元的同时活动。在这篇论文中,我追求以下两个目标:·通过提高组织深处的空间分辨率来改善OCPI显微镜。组织表面的组织不均匀性和折射率不匹配会导致光学像差。我们通过以下方式补偿了这种像差:(1)缩小OCPI照明光学器件,以便对组织进行更多的垂直成像;(2)校正由浸没液/组织界面处的折射引起的角度散焦。 )应用自适应光学器件来校正高阶光学像差。人们可以对组织成像的深度的改进将使得能够测量皮质区域中神经元种群的活动。 ·测量对硫酸化类固醇有响应的VSNs表达模式的多样性。 Nodari等。已经确定了硫酸化的类固醇是一种新型的配体家族,可以激活犁鼻感觉神经元(VSN)。由于实验上的限制,尚无法获得对硫酸类固醇响应性VSN的数量,位置和功能特性的全面了解。应用OCPI显微镜和钙成像同时对数千个VSN成像,我们显示硫酸化的类固醇反应性神经元(1)具有独特的配体偏好,(2)主要存在于VNO的根尖区域,(3)选择受体类型的表达并非纯粹是随机的。

著录项

  • 作者

    Turaga, Diwakar.;

  • 作者单位

    Washington University in St. Louis.;

  • 授予单位 Washington University in St. Louis.;
  • 学科 Biology Neuroscience.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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