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一种新型的定量且无需参考标准的超声分析方法,用于区分不同浓度的骨矿物质含量。

A novel quantitative and reference-free ultrasound analysis to discriminate different concentrations of bone mineral content.

机构信息

The BioRobotics Institute, Scuola Superiore Sant'Anna, 56127, Pisa, Italy.

Department of Excellence in Robotics & AI, Scuola Superiore Sant'Anna, 56127, Pisa, Italy.

出版信息

Sci Rep. 2021 Jan 11;11(1):301. doi: 10.1038/s41598-020-79365-0.

Abstract

Bone fracture is a continuous process, during which bone mineral matrix evolves leading to an increase in hydroxyapatite and calcium carbonate content. Currently, no gold standard methods are available for a quantitative assessment of bone fracture healing. Moreover, the available tools do not provide information on bone composition. Whereby, there is a need for objective and non-invasive methods to monitor the evolution of bone mineral content. In general, ultrasound can guarantee a quantitative characterization of tissues. However, previous studies required measurements on reference samples. In this paper we propose a novel and reference-free parameter, based on the entropy of the phase signal calculated from the backscattered data in combination with amplitude information, to also consider absorption and scattering phenomena. The proposed metric was effective in discriminating different hydroxyapatite (from 10 to 50% w/v) and calcium carbonate (from 2 to 6% w/v) concentrations in bone-mimicking phantoms without the need for reference measurements, paving the way to their translational use for the diagnosis of tissue healing. To the best of our knowledge this is the first time that the phase entropy of the backscattered ultrasound signals is exploited for monitoring changes in the mineral content of bone-like materials.

摘要

骨骨折是一个连续的过程,在此过程中,骨矿物质基质不断演变,导致羟磷灰石和碳酸钙含量增加。目前,尚无金标准方法可用于定量评估骨骨折愈合。此外,现有的工具不能提供有关骨成分的信息。因此,需要客观和非侵入性的方法来监测骨矿物质含量的演变。一般来说,超声可以保证对组织进行定量描述。然而,以前的研究需要对参考样本进行测量。在本文中,我们提出了一种新的无参考参数,基于从背散射数据计算的相位信号的熵,并结合幅度信息,还考虑了吸收和散射现象。所提出的度量标准有效地鉴别了不同的羟磷灰石(10 至 50%w/v)和碳酸钙(2 至 6%w/v)在仿生骨模型中的浓度,而无需参考测量,为其在组织愈合诊断中的转化应用铺平了道路。据我们所知,这是首次利用背散射超声信号的相位熵来监测类骨材料中矿物质含量的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a66/7801603/3445123501f3/41598_2020_79365_Fig1_HTML.jpg

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