首页> 外文会议>Conference on physiology and function from multidimensional images >Fluorescence measurement of localized deeply embedded physiological processes
【24h】

Fluorescence measurement of localized deeply embedded physiological processes

机译:局部深度嵌入生理过程的荧光测量

获取原文

摘要

Intrinsic and exogenous fluorescent molecules may be used as specific markers of disease processes, or metabolic status. A variety of fluorescent markers have been successfully used for transparent tissue, in-vitro studies, and in cases where the markers are located close to the tissue surface. For example, given fluorescence lifetime measurements of a fluorophore such as bis(carboxylic acid) dye, the known relationship of pH on its lifetime may be used to determine the pH of tissue at the fluorophore's location. For fluorophore depths greater than approximately one millimeter in normal tissue, such as might be encountered in in vivo studies, multiple scattering makes it impossible to make direct measurements of characteristics such as fluorophore lifetime. In a multiple scattering environment, the collected intensity depends heavily on the scattering and absorption coefficients of the tissue at both the excitation and emission frequencies. Thus, to obtain values for specific fluorophore characteristics such as the lifetime, a theoretical description of the complex photon paths is required. We have applied Random-walk theory to successfully model photon migration in turbid medias such as tissue. We show how time-resolve intensity measurements may be used to determine fluorophore location and lifetime even when the fluorophore site is located many mean photon scattering lengths from the emitter and detector.
机译:固有和外源性荧光分子可用作疾病过程的特定标志物或代谢状态。已经成功地用于透明组织,体外研究以及标记物位于靠近组织表面的情况下的各种荧光标记物。例如,给定荧光寿命测量荧光团如双(羧酸)染料,pH的已知关系可用于确定荧光团位置的组织的pH。对于正常组织中大于约1毫米的荧光团深度,例如在体内研究中可能遇到,多次散射使得不可能直接测量荧光团寿命的特性。在多散射环境中,收集的强度大大取决于在激发和发射频率下组织的散射和吸收系数。因此,为了获得诸如寿命的特定荧光团特性的值,需要对复合光子路径的理论描述。我们已经应用了随机步行理论来成功模型在混浊介质中的光子迁移,如组织。我们表明,即使荧光团位点位于来自发射极和检测器的许多平均光子散射长度,也可以使用时间分辨率测量来确定荧光团位置和寿命。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号