首页> 外文会议>Conference on Visualization, Image-Guided Procedures, and Display: Medical Imaging 2004; 20040215-20040217; San Diego,CA; US >Development of A Percutaneous Optical Imaging System For Tracking Vascular Gene Expression: A feasibility study using human tissue like phantoms
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Development of A Percutaneous Optical Imaging System For Tracking Vascular Gene Expression: A feasibility study using human tissue like phantoms

机译:跟踪血管基因表达的经皮光学成像系统的开发:使用人体组织如幻像的可行性研究。

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Noninvasive tracking of vascular gene delivery and expression forms an important part of successfully implementing vascular gene therapy methods for the treatment of atherosclerosis and various cardiovascular disorders. While ultrasound and MR imaging have shown promise in the monitoring of gene delivery to the vasculatures, optical imaging has shown promise for tracking gene expression. Optical imaging using bioreporter genes like Green Fluorescent Protein (GFP), Red Fluorescent Protein (RFP) and Luciferase to track and localize the therapeutic gene have helped provide an in vivo detection method of the process. The usage of GFP and RFP entails the detection of the fluorescent signal emitted by them on excitation with light of appropriate wavelength. We have developed a novel percutaneous optical imaging system that may be used for in vivo tracking vascular fluorescent gene expression in deep-seated vessels. It is based on the detection of the fluorescent signal emitted from GFP tagged cells. This phantom study was carried out to investigate the performance of the optical imaging system and gain insights into its performance record and study improvisation possibilities.
机译:血管基因传递和表达的无创跟踪是成功实施血管基因治疗方法以治疗动脉粥样硬化和各种心血管疾病的重要组成部分。超声和MR成像在监测基因向脉管系统的输送中显示出了希望,而光学成像显示了跟踪基因表达的显示。使用生物报告基因(例如绿色荧光蛋白(GFP),红色荧光蛋白(RFP)和荧光素酶)跟踪和定位治疗性基因的光学成像有助于提供该过程的体内检测方法。 GFP和RFP的使用需要在适当波长的光激发下检测它们发出的荧光信号。我们已经开发了一种新颖的经皮光学成像系统,可用于体内跟踪深层血管中的血管荧光基因表达。它基于对GFP标记细胞发出的荧光信号的检测。进行了这项幻影研究,以研究光学成像系统的性能,并深入了解其性能记录并研究即兴创作的可能性。

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