A multiresolution approach with method-informed statistical analysis for quantifying lymphatic pumping dynamics.

Mohammad S Razavi, Katarina J Ruscic, Elizabeth G Korn, Marla Marquez, Timothy T Houle, Dhruv Singhal, Lance L Munn, Timothy P Padera
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Abstract

Despite significant strides in lymphatic system imaging, the timely diagnosis of lymphatic disorders remains elusive. This is driven by the absence of standardized, non-invasive, reliable, quantitative methods for real-time functional analysis of lymphatic contractility with adequate spatial and temporal resolution. Here, we address this unmet need by integrating near-infrared fluorescence lymphangiography imaging with an innovative analytical workflow that combines data acquisition, signal processing, and statistical analysis to integrate traditional peak-and-valley analysis with advanced wavelet time-frequency analyses. Variance component analysis was used to evaluate the drivers of variance attributable to each experimental variable for each lymphangiography measurement type. Generalizability studies were used to assess the reliability of measured parameters and how reliability improves as the number of repeat measurements per subject increases. This allowed us to determine the minimum number of repeat measurements needed per subject for acceptable measurement reliability. This approach not only offers detailed insights into lymphatic pumping behaviors across species, sex and age, but also significantly boosts the reliability of these measurements by incorporating multiple regions of interest and evaluating the lymphatic system under various gravitational loads. For example, the reliability of the peak-and-valley analysis of human lymphatic vessels was increased 3-fold using the described approach. By addressing the critical need for improved imaging and quantification methods, our study offers a new standard approach for the imaging and analysis of lymphatic function that can improve our understanding, diagnosis, and treatment of lymphatic diseases. The results highlight the importance of comprehensive data acquisition strategies to fully capture the dynamic behavior of the lymphatic system.

Abstract Image

Abstract Image

Abstract Image

一个多分辨率的方法与方法知情的统计分析量化淋巴泵动力学。
尽管淋巴系统成像取得了重大进展,但淋巴疾病的及时诊断仍然难以捉摸。这是由于缺乏标准化、无创、可靠、定量的方法来实时分析淋巴收缩性的功能,并具有足够的空间和时间分辨率。在这里,我们通过将近红外荧光淋巴管造影成像与创新的分析工作流程相结合来解决这一未满足的需求,该工作流程结合了数据采集,信号处理和统计分析,将传统的峰谷分析与先进的小波时频分析相结合。方差成分分析用于评估每个实验变量对每个淋巴管造影测量类型的方差驱动因素。通用性研究用于评估测量参数的可靠性,以及可靠性如何随着每个受试者重复测量次数的增加而提高。这使我们能够确定每个受试者为可接受的测量可靠性所需的最小重复测量次数。这种方法不仅提供了对不同物种、性别和年龄的淋巴泵送行为的详细见解,而且通过结合多个感兴趣的区域和评估不同重力载荷下的淋巴系统,显著提高了这些测量的可靠性。例如,使用所描述的方法,人类淋巴管峰谷分析的可靠性提高了3倍。通过解决对改进成像和量化方法的迫切需求,我们的研究为淋巴功能的成像和分析提供了一种新的标准方法,可以提高我们对淋巴疾病的理解、诊断和治疗。结果强调了综合数据采集策略的重要性,以充分捕捉淋巴系统的动态行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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