Hughes M S, McCarthy J E, Marsh J N, Arbeit J M, Neumann R G, Fuhrhop R W, Wallace K D, Znidersic D R, Maurizi B N, Baldwin S L, Lanza G M, Wickline S A
School of Medicine, Washington University, St. Louis, Missouri 63108, USA.
J Acoust Soc Am. 2007 Jun;121(6):3542-57. doi: 10.1121/1.2722050.
Qualitative and quantitative properties of the finite part, H(f), of the Shannon entropy of a continuous waveform f(t) in the continuum limit are derived in order to illuminate its use for waveform characterization. Simple upper and lower bounds on H(f), based on features of f(t), are defined. Quantitative criteria for a priori estimation of the average-case variation of H(f) and log E(f), where E(f) is the signal energy of f(t) are also derived. These provide relative sensitivity estimates that could be used to prospectively choose optimal imaging strategies in real-time ultrasonic imaging machines, where system bandwidth is often pushed to its limits. To demonstrate the utility of these sensitivity relations for this application, a study designed to assess the feasibility of identification of angiogenic neovasculature targeted with perfluorocarbon nanoparticles that specifically bind to alpha(v)beta3-integrin expression in tumors was performed. The outcome of this study agrees with the prospective sensitivity estimates that were used for the two receivers. Moreover, these data demonstrate the ability of entropy-based signal receivers when used in conjunction with targeted nanoparticles to elucidate the presence of alpha(v)beta3 integrins in primordial neovasculature, particularly in acoustically unfavorable environments.
为了阐明连续波形f(t)的香农熵的有限部分H(f)在连续极限下的定性和定量性质,以便将其用于波形表征。基于f(t)的特征定义了H(f)的简单上下界。还推导了用于先验估计H(f)和log E(f)平均情况变化的定量标准,其中E(f)是f(t)的信号能量。这些提供了相对灵敏度估计,可用于在实时超声成像机器中前瞻性地选择最佳成像策略,在这类机器中系统带宽常常被推向极限。为了证明这些灵敏度关系在此应用中的效用,进行了一项研究,旨在评估用全氟碳纳米颗粒靶向识别血管生成性新生血管的可行性,这些纳米颗粒特异性结合肿瘤中α(v)β3整合素的表达。该研究的结果与用于两个接收器的前瞻性灵敏度估计一致。此外,这些数据证明了基于熵的信号接收器与靶向纳米颗粒结合使用时,能够阐明原始新生血管中α(v)β3整合素的存在,特别是在声学不利的环境中。