Laugier Pascal
Université Pierre et Marie Curie-Paris 5, Laboratoire d'Imagerie Paramétrique, Paris, France.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008;55(6):1179-96. doi: 10.1109/TUFFC.2008.782.
Although it has been more than 20 years since the first recorded use of a quantitative ultrasound (QUS) technology to predict bone fragility, the field has not yet reached its maturity. QUS has the potential to predict fracture risk in several clinical circumstances and has the advantages of being nonionizing, inexpensive, portable, highly acceptable to patients, and repeatable. However, the wide dissemination of QUS in clinical practice is still limited and suffering from the absence of clinical consensus on how to integrate QUS technologies in bone densitometry armamentarium. Several critical issues need to be addressed to develop the role of QUS within rheumatology. These include issues of technologies adapted to measure the central skeleton, data acquisition, and signal processing procedures to reveal bone properties beyond bone mineral quantity and elucidation of the complex interaction between ultrasound and bone structure. This article reviews the state-of-the art in technological developments applied to assess bone strength in vivo. We describe generic measurement and signal processing methods implemented in clinical ultrasound devices, the devices and their practical use, and performance measures. The article also points out the present limitations, especially those related to the absence of standardization, and the lack of comprehensive theoretical models. We conclude with suggestions of future lines and trends in technology challenges and research areas such as new acquisition modes, advanced signal processing techniques, and modelization.
尽管自首次记录使用定量超声(QUS)技术来预测骨脆性至今已有20多年,但该领域尚未成熟。QUS有潜力在多种临床情况下预测骨折风险,并且具有非电离、成本低、便携、患者接受度高以及可重复等优点。然而,QUS在临床实践中的广泛应用仍然有限,且由于在如何将QUS技术整合到骨密度测量手段方面缺乏临床共识而受到影响。要发展QUS在风湿病学中的作用,需要解决几个关键问题。这些问题包括适用于测量中轴骨骼的技术问题、数据采集以及揭示除骨矿物质含量之外的骨特性的信号处理程序,还有阐明超声与骨结构之间的复杂相互作用。本文综述了用于评估体内骨强度的技术发展现状。我们描述了临床超声设备中实施的通用测量和信号处理方法、这些设备及其实际应用以及性能指标。本文还指出了当前的局限性,尤其是与缺乏标准化以及缺乏全面理论模型相关的局限性。我们最后提出了技术挑战和研究领域未来的方向和趋势建议,如新的采集模式、先进的信号处理技术和模型化等。