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In-vivo validation of fluorescence lifetime imaging (FLIm) of coronary arteries in swine

机译:猪冠状动脉荧光寿命成像(FLIm)的体内验证

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We report a scanning imaging system that enables high speed multispectral fluorescence lifetime imaging (FLIm) of coronary arteries. This system combines a custom low profile (3 Fr) imaging catheter using a 200 μm core side viewing UV-grade silica fiber optic, an acquisition system able to measure fluorescence decays over four spectral bands at 20 kHz and a fast data analysis and display module. In vivo use of the system has been optimized, with particular emphasis on clearing blood from the optical pathway. A short acquisition time (5 seconds for a 20 mm long coronary segment) enabled data acquisition during a bolus saline solution injection through the 7 Fr catheter guide. The injection parameters were precisely controlled using a power injector and optimized to provide good image quality while limiting the bolus injection duration and volume (12 cc/s, 80 cc total volume). The ability of the system to acquire data in vivo was validated in healthy swine by imaging different sections of the left anterior descending (LAD) coronary. A stent coated with fluorescent markers was placed in the LAD and imaged, demonstrating the ability of the system to discriminate in vivo different fluorescent features and structures from the vessel background fluorescence using spectral and lifetime information. Intensity en face images over the four bands of the instrument were available within seconds whereas lifetime images were computed in 2 minutes, providing efficient feedback during the procedure. This successful demonstration of FLIm in coronaries enables future study of atherosclerotic cardiovascular diseases.
机译:我们报告了一种扫描成像系统,该系统可实现冠状动脉的高速多光谱荧光寿命成像(FLIm)。该系统结合了定制的低轮廓(3 Fr)成像导管,该导管使用200μm芯侧观察紫外级石英光纤,能够在20 kHz的四个光谱带上测量荧光衰减的采集系统以及快速数据分析和显示模块。该系统在体内的使用已得到优化,尤其着重于从光路中清除血液。较短的采集时间(20毫米长的冠状动脉节段为5秒)使得在通过7 Fr导管导管注入大剂量盐水溶液期间可以进行数据采集。使用电动注射器精确控制注射参数,并对其进行优化以提供良好的图像质量,同时限制大剂量注射的持续时间和体积(12 cc / s,总体积为80 cc)。通过对左前降支(LAD)冠状动脉的不同部位成像,在健康的猪中验证了该系统在体内获取数据的能力。将涂有荧光标记物的支架放置在LAD中并进行成像,以证明该系统使用光谱和寿命信息将体内不同的荧光特征和结构与血管背景荧光区分开的能力。可以在几秒钟内获得仪器四个波段的面对面强度图像,而寿命图像则在2分钟内计算出来,从而在手术过程中提供了有效的反馈。 FLIm在冠状动脉中的成功展示使得将来可以研究动脉粥样硬化性心血管疾病。

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