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首页> 外文期刊>Clinical hemorheology and microcirculation >Automated method for tracking vasomotion of intravital microvascular and microlymphatic vessels
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Automated method for tracking vasomotion of intravital microvascular and microlymphatic vessels

机译:跟踪体内微血管和微淋巴管血管运动的自动化方法

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摘要

Dynamic tracking of microvascular and microlymphatic vasomotion presents a critical image processing technique in the evaluation of function and dysfunction of the microvasculature. Many methods for determination of diameter changes have been reported. Previous methods which were specifically developed for vasomotion tracking of intravital, fluorescence-free, rapidly constricting microvascular and microlymphatic vessels have various limitations due to complex image background, vessel wall distortion, image drift, noise and other artifacts. In order to overcome these major obstacles and remove undesirable limitations, this study proposed a tracking strategy based on feature matching of moving object - VasTrack. First, we calculate the image drift vector by feature template matching of a landmark in the background. Second, dynamically regulate the position of a sample line in accordance with the drift vector for sustaining the consistency of measurement location. Third, dynamically recognize and track edge position changes by applying feature template matching using edge context. This method does not require special preprocessing of video image registration and rotation. VasTrack compensates efficiently for image drift and vessel wall distortion, can simultaneously track and determine vessel diameters at any orientation and in multiple locations. Testing proved that VasTrack is robust and accurate, and will satisfy the needs of basic microcirculatory research and clinical inspection.
机译:动态跟踪微血管和微淋巴管的血管运动提出了关键的图像处理技术,在评估微血管功能和功能障碍。已经报道了许多确定直径变化的方法。由于复杂的图像背景,血管壁变形,图像漂移,噪声和其他伪像,专门开发用于活体跟踪,无荧光,快速收缩的微血管和微淋巴管的血管运动的先前方法存在各种局限性。为了克服这些主要障碍并消除不希望的限制,本研究提出了一种基于运动对象特征匹配的跟踪策略-VasTrack。首先,我们通过背景中地标的特征模板匹配来计算图像漂移矢量。其次,根据漂移矢量动态调节采样线的位置,以维持测量位置的一致性。第三,通过使用边缘上下文应用特征模板匹配来动态识别和跟踪边缘位置变化。此方法不需要对视频图像配准和旋转进行特殊的预处理。 VasTrack可以有效补偿图像漂移和血管壁变形,可以在任何方向和多个位置同时跟踪和确定血管直径。测试证明,VasTrack功能强大且准确,可以满足基础微循环研究和临床检查的需求。

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