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Investigation of murine Vasodynamics by Fourier Domain Optical Coherence Tomography

机译:傅里叶域光学相干层析成像技术研究小鼠血管动力学

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In vivo imaging of blood vessels obtain useful insights in characterizing the dynamics of vasoconstriction and vasodilation. Fourier domain optical Coherence Tomography (FD-OCT) imaging technique permits in vivo investigation of blood vessels in their anatomical context without preparation traumata by temporal resolved image stacks. OCT is an optical, contact less imaging technique based on Michelson interferometry of short coherent near infrared light. Particularly by the possibility of a contact-less measurement and the high axial resolution up to 10 microns OCT is superior to an investigation by ultra sound measurement. Furthermore we obtain a high time resolution of vessel dynamic measurements with the used Fourier domain OCT-system by a high A-scan rate [1,22kHz]. In this study the model of saphenous artery was chosen for analyzing function and dynamics. The arteria saphena in the mouse is a suitable blood vessel due to the small inner diameter, a sensitive response to vasoactive stimuli and an advantageous anatomically position. Male wild type mice (C57BL/6) at the age of 8 weeks were fed control or high-fat diet for 10 weeks before analyzing the vasodynamics. The blood vessel was stimulated by dermal application of potassium to induce vasoconstriction or Sodium-Nitroprusside (SNP) to induce vasodilation. The morphology of the a. saphena and vein was determined by 3D image stacks. Time series (72 seconds, 300x512 pixel per frame) of cross-sectional images were analysed using semi automatic image processing software. Time course of dynamic parameters of the vessel was measured.
机译:血管的体内成像在表征血管收缩和血管舒张动力学方面获得了有用的见识。傅里叶域光学相干断层扫描(FD-OCT)成像技术允许在解剖背景下对血管进行体内研究,而无需通过时间分辨图像堆栈来准备创伤。 OCT是一种基于短相干近红外光的迈克尔逊干涉法的光学,非接触式成像技术。特别是通过非接触式测量和高达10微米的OCT的高轴向分辨率,优于通过超声测量进行的研究。此外,我们以较高的A扫描速率[1,22kHz]使用所使用的Fourier域OCT系统获得了较高的船舶动态测量时间分辨率。在这项研究中,选择了大隐动脉模型来分析功能和动力学。由于小内径,对血管活性刺激的敏感反应以及有利的解剖位置,小鼠隐静脉是合适的血管。在分析血管动力学之前,对8周龄的雄性野生型小鼠(C57BL / 6)进行了10周的对照或高脂饮食喂养。通过皮肤上施用钾刺激血管引起血管收缩,或硝化钠(SNP)诱导血管舒张。的形态通过3D图像堆栈确定隐静脉和静脉。使用半自动图像处理软件分析了横截面图像的时间序列(72秒,每帧300x512像素)。测量了容器的动态参数的时程。

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