Echo(通信协议)
等价(形式语言)
包络线(雷达)
中心极限定理
背景(考古学)
计算机科学
估计员
趋同(经济学)
高斯分布
极限(数学)
算法
统计模型
噪音(视频)
应用数学
收敛速度
包络检波器
数学
高斯过程
统计假设检验
估计理论
蒙特卡罗方法
统计理论
牙石(牙科)
高斯噪声
数学证明
不确定度量化
统计推断
限制
统计分析
物理
统计物理学
频域
作者
François Destrempes,Guy Cloutier
出处
期刊:IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control
[Institute of Electrical and Electronics Engineers]
日期:2025-11-13
卷期号:72 (12): 1566-1581
标识
DOI:10.1109/tuffc.2025.3632084
摘要
The purpose of this methods and concepts tutorial is to present the homodyned K-distribution (HKD) statistical modeling of the echo envelope of received radio frequency (RF) signals in the context of medical quantitative ultrasound (QUS) imaging, with the aim of explaining its physical, mathematical, and statistical foundations. Several notions and equations are recalled from previous works on HKD modeling and estimation methods. Proofs of claims are presented in Appendices that can be found in Supplementary Materials. Some descriptions have been completed or refined without modifying the main conclusions on HKD or mixtures of HKDs. Mixtures of HKDs are recalled, as well as other models proposed in previous works, such as the generalized KD (GKD), HKD with additive Gaussian noise (HKDN), and the generalized HKD (GHKD), the latter resorting to the generalized central limit theorem (CLT) in the case where the scattering cross section has infinite variance. This article also presents three innovations on the topic: 1) a revised derivation of the HKD model based on Stein's condition to obtain an explicit rate of convergence of the CLT in the case of weakly dependent terms, corresponding to ultrasound (US) scatterers; 2) HKD imaging under frequency-domain filtering of RF signals, yielding information on second-order statistics of the echo envelope; and 3) quantitative results on the Kolmogorov distance between the HKD and other distributions (Nakagami and Rice distributions, GKD, HKDN, and GHKD) together with the domains insuring validity (i.e., statistical equivalence with a confidence level of 0.05).
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