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Design and simulation of a 2-D array flexible ultrasound transducer system for tissue characterization-A pilot study

作     者:Zhihua Gan Brian Guo Jiqi Cheng Yi-Xian Qin 

作者机构:Department of Biomedical EngineeringStony Brook UniversityStony BrookNY11794USA Department of Electrical and Computer EngineeringStony Brook UniversityStony BrookNY11794USA 

出 版 物:《Medicine in Novel Technology and Devices》 (医学中新技术与新装备(英文))

年 卷 期:2022年第13卷第1期

页      面:59-64页

学科分类:08[工学] 081101[工学-控制理论与控制工程] 0811[工学-控制科学与工程] 081102[工学-检测技术与自动化装置] 

基  金:This work is kindly supported by the National Institute of Health(R01 AR52379 and R01 AR61821) the National Space Biomedical Research Institute through a NASA contract NCC 9-58 

主  题:Flexible ultrasound system Noninvasive diagnostic imaging Sub-block triggering Ultrasound imaging resolution Apodization Quantitative ultrasound Trabecular bone property Scanning ultrasound Bone density and strength 

摘      要:Noninvasive diagnosis of bone density and mechanical properties using non-radiation imaging modality is an emerging area with promising in early prediction of osteopenia and treatment effectiveness in the clinic and functional disuse,i.e.,long-term bedrest and space *** in quantitative ultrasound have shown advantages in measuring both bone density and mechanical strength,non-radiation,imaging capability,and easy to *** challenge that remained is the poor penetration of ultrasound signals passing through trabecular and cortical bones and acoustic energy scattering.A new scanning confocal ultrasound technology is developed in this lab to detect the alteration of bone to provide diagnostic results in bone density and structure properties.A software-controlled flexible ultrasound system with 2-D dual array transducer is developed and proposed for the purpose of noninvasive bone density diagnosis and assessment of bone ***(Tx)transducer elements are divided into sub-blocks to excite the ultrasound signals in sequence to decrease the system complexity while maintaining beam pattern properties by the signal processing procedure at receiving(Rx)*** is also applied to reduce acoustic side lobes and to make the resolution in the ultrasound field of view(FOV)more *** study may provide basic understanding of modulated confocal ultrasound beam forming for tissue characterization,such as trabecular bone structual and strength properties.

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