Literature DB >> 31307317

The Ability of Ultrasonic Backscatter Parametric Imaging to Characterize Bovine Trabecular Bone.

Ying Li1, Boyi Li1, Yifang Li1, Chengcheng Liu2, Feng Xu1, Rong Zhang3, Dean Ta1,4,5, Weiqi Wang1.   

Abstract

The ultrasonic backscatter technique holds the promise of characterizing bone density and microstructure. This paper conducts ultrasonic backscatter parametric imaging based on measurements of apparent integrated backscatter (AIB), spectral centroid shift (SCS), frequency slope of apparent backscatter (FSAB), and frequency intercept of apparent backscatter (FIAB) for representing trabecular bone mass and microstructure. We scanned 33 bovine trabecular bone samples using a 7.5 MHz focused transducer in a 20 mm × 20 mm region of interest (ROI) with a step interval of 0.05 mm. Images based on the ultrasonic backscatter parameters (i.e., AIB, SCS, FSAB, and FIAB) were constructed to compare with photographic images of the specimens as well as two-dimensional (2D) μ-CT images from approximately the same depth and location of the specimen. Similar structures and trabecular alignments can be observed among these images. Statistical analyses demonstrated that the means and standard deviations of the ultrasonic backscatter parameters exhibited significant correlations with bone density (|R| = 0.45-0.78, p < 0.01) and bone microstructure (|R| = 0.44-0.87, p < 0.001). Some bovine trabecular bone microstructure parameters were independently associated with the ultrasonic backscatter parameters (ΔR2 = 4.18%-44.45%, p < 0.05) after adjustment for bone apparent density (BAD). The results show that ultrasonic backscatter parametric imaging can provide a direct view of the trabecular microstructure and can reflect information about the density and microstructure of trabecular bone.

Entities:  

Keywords:  microstructure; osteoporosis; parametric imaging; trabecular bone; ultrasonic backscatter

Year:  2019        PMID: 31307317     DOI: 10.1177/0161734619862190

Source DB:  PubMed          Journal:  Ultrason Imaging        ISSN: 0161-7346            Impact factor:   1.578


  2 in total

1.  Quantitative imaging of ultrasound backscattered signals with information entropy for bone microstructure characterization.

Authors:  Chiao-Yin Wang; Sung-Yu Chu; Yu-Ching Lin; Yu-Wei Tsai; Ching-Lung Tai; Kuen-Cheh Yang; Po-Hsiang Tsui
Journal:  Sci Rep       Date:  2022-01-10       Impact factor: 4.379

2.  A Combined Ultrasonic Backscatter Parameter for Bone Status Evaluation in Neonates.

Authors:  Weiying Mao; Yang Du; Chengcheng Liu; Boyi Li; Dean Ta; Chao Chen; Rong Zhang
Journal:  Comput Math Methods Med       Date:  2020-05-01       Impact factor: 2.238

  2 in total

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