Experimental system for perfusion imaging and time-intensity processing based on ultrasound contrast agent
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Experimental system for perfusion imaging and time-intensity processing based on ultrasound contrast agent
Experimental system for perfusion imaging and time-intensity processing based on ultrasound contrast agent
解放军医学杂志(英文版)2006年第1期 页码:38-41
Affiliations:
1. Key Laboratory of Biomedical Information Engineering of Ministry of Educationand Department of Biomedical Engineering School of Life Science and Technology
2. Xi’an Jiaotong University
3. ,China
Author bio:
Funds:
Supported by the National Natural Science Foundation of China(30270404)Specialized Research Fund for the Doctoral Program of Higher Education(2003069816)
DOI:
中图分类号:R445.1
纸质出版:2006
Accepted:
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Experimental system for perfusion imaging and time-intensity processing based on ultrasound contrast agent[J]. 解放军医学杂志(英文版), 2006,(1):38-41.
[1]宋延淳,万明习,吴方刚,樊华,宗瑜瑾.Experimental system for perfusion imaging and time-intensity processing based on ultrasound contrast agent[J].Journal of Medical Colleges of PLA,2006(01):38-41.
Experimental system for perfusion imaging and time-intensity processing based on ultrasound contrast agent[J]. 解放军医学杂志(英文版), 2006,(1):38-41.DOI:
[1]宋延淳,万明习,吴方刚,樊华,宗瑜瑾.Experimental system for perfusion imaging and time-intensity processing based on ultrasound contrast agent[J].Journal of Medical Colleges of PLA,2006(01):38-41.DOI:
Experimental system for perfusion imaging and time-intensity processing based on ultrasound contrast agent
摘要
Abstract
<正>Objective: To present a self-developed experimental system for basic studies of blood perfusion imaging and time-intensity evaluating based on ultrasound contrast agent. Methods: The experimental system performed the image reconstruction and time-intensity processing with radio frequency signals. The system was comprised of ultra-high speed hardware data acquisition interface and low computational cost algorithms. The self-made contrast agent
blood mimic phantom and capillary phantom model were used to validate the experimental system. Results: The images acquired in blood phantoms with linear-array and curve-array transducers were given. The time-intensity curves corresponding to selected region of interested from image sequence were demonstrated. It was also shown the time-intensity based decay curves and a comparison of decay of ultrasound contrast agent under different ultrasound powers. Conclusion: Several experiments resulted from two in vitro phantom models show that the experimental system can be used to basic studies of blood perfusion and further clinical studies of microvasculature perfusion.
关键词
Keywords
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