Laugier P, Fournier B, Berger G
Laboratoire Imagerie Paramétrique, URA CNRS 1458, 15 rue de l'Ecole de Médecine, 75006 Paris, France.
Calcif Tissue Int. 1996 May;58(5):326-31. doi: 10.1007/BF02509380.
An ultrasound transmission scanning system was constructed to make in vivo parametric images of the acoustic properties of the heel. Broadband ultrasonic attenuation (BUA) images were obtained in transmit mode by using a pair of broadband focused transducers (center frequency 0.5 MHz, diameter 29 mm, focus 50 mm) immersed in a water bath at room temperature. With these characteristics, the theoretical beam width at the focus was approximately 5 mm. The total duration of the acquisition period was 3 minutes. Comparison of the BUA image and the radiograph of the calcaneus was possible in one case and showed that all the anatomical details could be identified. The images reported here demonstrate the wide range of BUA found in both the whole bone and within a ROI centered in the posterior part of the bone thus reinforcing the idea of tremendous heterogeneity of the acoustic properties of bone. This suggests that the accurate control of the position of the measurement site is of the utmost importance for between-subject comparison and for repetitive measurements. We proposed a new method, the likelihood image, as an efficient way of highlighting the regions of the image suspected to be subject to waveform distortion. It could be used to guide the selection of the optimal measurement site. Our results suggest that ultrasound parametric imaging has the potential for enhancing the current ultrasound technique by (1) allowing reproducible, repetitive measurements, (2) permitting the selection of similar optimal measurement sites in all subjects, and (3) avoiding accuracy errors due to waveform distortion.
构建了一个超声透射扫描系统,用于生成足跟声学特性的体内参数图像。通过使用一对浸入室温水浴中的宽带聚焦换能器(中心频率0.5MHz,直径29mm,焦距50mm),在发射模式下获得宽带超声衰减(BUA)图像。基于这些特性,焦点处的理论波束宽度约为5mm。采集期的总时长为3分钟。在一个病例中,可以将跟骨的BUA图像与X线片进行比较,结果显示所有解剖细节均可识别。此处报告的图像表明,在整个骨骼以及以骨后部为中心的感兴趣区域(ROI)内都发现了广泛的BUA范围,从而强化了骨声学特性具有巨大异质性的观点。这表明,对于受试者间比较和重复测量而言,精确控制测量部位的位置至关重要。我们提出了一种新方法——似然图像,作为突出图像中疑似存在波形失真区域的有效方式。它可用于指导最佳测量部位的选择。我们的结果表明,超声参数成像具有增强当前超声技术的潜力,具体体现在:(1)实现可重复的重复测量;(2)在所有受试者中允许选择相似的最佳测量部位;(3)避免因波形失真导致的准确性误差。