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Ultra-fast bright field and fluorescence imaging of the dynamics of micrometer-sized objects

机译:超快速明场和微米级物体动力学的荧光成像

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摘要

High speed imaging has application in a wide area of industry and scientific research. In medical research, high speed imaging has the potential to reveal insight into mechanisms of action of various therapeutic interventions. Examples include ultrasound assisted thrombolysis, drug delivery, and gene therapy. Visual observation of the ultrasound, microbubble, and biological cell interaction may help the understanding of the dynamic behavior of microbubbles and may eventually lead to better design of such delivery systems. We present the development of a high speed bright field and fluorescence imaging system that incorporates external mechanical waves such as ultrasound. Through collaborative design and contract manufacturing, a high speed imaging system has been successfully developed at the University of Pittsburgh Medical Center. We named the system “UPMC Cam,” to refer to the integrated imaging system that includes the multi-frame camera and its unique software control, the customized modular microscope, the customized laser delivery system, its auxiliary ultrasound generator, and the combined ultrasound and optical imaging chamber for in vitro and in vivo observations. This system is capable of imaging microscopic bright field and fluorescence movies at 25 × 106 frames per second for 128 frames, with a frame size of 920 × 616 pixels. Example images of microbubble under ultrasound are shown to demonstrate the potential application of the system.
机译:高速成像技术已广泛应用于工业和科学研究领域。在医学研究中,高速成像具有揭示各种治疗干预作用机制的潜力。示例包括超声辅助的溶栓,药物输送和基因治疗。超声,微泡和生物细胞相互作用的视觉观察可以帮助理解微泡的动态行为,并最终可以导致这种递送系统的更好设计。我们介绍了结合了外部机械波(如超声波)的高速明场和荧光成像系统的开发。通过协同设计和合同制造,匹兹堡大学医学中心已成功开发了高速成像系统。我们将系统命名为“ UPMC Cam”,是指集成的成像系统,包括多幅相机及其独特的软件控制,定制的模块化显微镜,定制的激光传输系统,辅助超声发生器以及组合的超声和超声成像系统。光学成像室,用于体外和体内观察。该系统能够以每秒25×10 6 帧的速度对128帧图像进行显微镜的明场和荧光电影成像,帧大小为920×616像素。示出了在超声下的微泡的示例图像,以证明该系统的潜在应用。

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