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Total internal reflection and dynamic light scattering microscopy of gels.

机译:凝胶的全内反射和动态光散射显微镜检查。

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摘要

Two different techniques which apply optical microscopy in novel ways to the study of biological systems and materials were built and applied to several samples. The first is a system for adapting the well-known technique of dynamic light scattering (DLS) to an optical microscope. This can detect and scatter light from very small volumes, as compared to standard DLS which studies light scattering from volumes 1000x larger. The small scattering volume also allows for the observation of nonergodic dynamics in appropriate samples. Porcine gastric mucin (PGM) forms a gel at low pH which lines the epithelial cell layer and acts as a protective barrier against the acidic stomach environment. The dynamics and microscopic viscosity of PGM at different pH levels is studied using polystyrene microspheres as tracer particles. The microscopic viscosity and microrheological properties of the commercial basement membrane Matrigel are also studied with this instrument. Matrigel is frequently used to culture cells and its properties remain poorly determined. Well-characterized and purely synthetic Matrigel substitutes will need to have the correct rheological and morphological characteristics.; The second instrument designed and built is a microscope which uses an interferometry technique to achieve an improvement in resolution 2.5x better in one dimension than the Abbe diffraction limit. The technique is based upon the interference of the evanescent field generated on the surface of a prism by a laser in a total internal reflection geometry. The enhanced resolution is demonstrated with fluorescent samples. Additionally. Raman imaging microscopy is demonstrated using the evanescent field in resonant and non-resonant samples, although attempts at applying the enhanced resolution technique to the Raman images were ultimately unsuccessful. Applications of this instrument include high resolution imaging of cell membranes and macroscopic structures in gels and proteins.; Finally, a third section incorporating previous research on simulations of complex fluids is included. Two dimensional simulations of oil, water, and surfactant mixtures were computed with a lattice gas method. The simulated systems were randomly mixed and then the temperature was quenched to a predetermined point. Spontaneous micellization is observed for a narrow range of temperature quenches, and the overall growth rate of macroscopic structure is found to follow a Vogel-Fulcher growth law.
机译:建立了两种以新颖的方式将光学显微镜应用于生物系统和材料研究的不同技术,并将其应用于多个样品。第一个是用于使动态光散射(DLS)的众所周知的技术适应光学显微镜的系统。与标准DLS相比,它可以检测和散射很小体积的光,而标准DLS可以研究体积大1000倍的光的散射。小散射体积还允许观察适当样品中的非遍历动力学。猪胃粘蛋白(PGM)在低pH值下形成一种凝胶,该凝胶排列在上皮细胞层上,并充当针对酸性胃环境的保护性屏障。以聚苯乙烯微球为示踪剂,研究了不同pH水平下PGM的动力学和微观粘度。还使用该仪器研究了商品基膜Matrigel的微观粘度和微流变特性。基质胶经常用于培养细胞,其性质仍然很难确定。表征良好且纯合成的Matrigel替代品将需要具有正确的流变性和形态学特征。设计和制造的第二台仪器是显微镜,该显微镜使用干涉测量技术,在一维分辨率上的分辨率比阿贝衍射极限高2.5倍。该技术基于激光在全内反射几何结构中在棱镜表面上产生的field逝场的干涉。荧光样品显示了提高的分辨率。另外。尽管在共振和非共振样品中使用渐逝场证明了拉曼成像显微镜,但最终未成功将增强分辨率技术应用于拉曼图像。该仪器的应用包括细胞膜的高分辨率成像以及凝胶和蛋白质中的宏观结构。最后,包括第三部分,其中包括先前对复杂流体模拟的研究。用晶格气法计算了油,水和表面活性剂混合物的二维模拟。将模拟系统随机混合,然后将温度骤冷至预定点。在窄范围的温度淬灭中观察到自发胶束化,并且发现宏观结构的总体生长速率遵循Vogel-Fulcher生长定律。

著录项

  • 作者

    Gregor, Brian F.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Biophysics General.; Physics Optics.; Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;光学;
  • 关键词

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