课题基金 / 基金详情

IN VIVO ULTRASONIC MICROPROBE FOR TUMOR DIAGNOSIS

IN VIVO ULTRASONIC MICROPROBE FOR TUMOR DIAGNOSIS
用于肿瘤诊断的体内超声显微探针
批准号:
2896715
负责人:
William D. O'Brien
金额:
$12.29万
依托单位国家:
美国
项目类别:
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-07-01 至 2001-06-30

项目摘要

项目成果

William D. O'Brien的其他基金

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中文摘要
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英文摘要
The objective of this two-year initiative is to develop the basis for a fundamentally new technology for an in situ clinical diagnosis of solid tumors with the expectation of rapid and accurate detection and diagnosis of cancer. The research approach is interdisciplinary (acoustic and electrical engineers, image and signal processor, material scientists, and board-certified veterinary pathologist). Given the important in patient health-care management of obtaining a highly accurate and timely diagnosis of a tumor and the difficulties, processing time, and risks associated with surgical and aspirational biopsies, a technique which would permit the evaluation of tumors in situ would be enormously beneficial medically and cost effective. The specific aims of this two-year initiative are: (1) to identify ultrasonic image features of tissues and cells that differentiate cytoarchitectural features of normal tissues from selected neoplastic tissues using well-established non-invasive pulse-echo data acquisition schemes and high-definition image formation techniques applicable for the invasive in vivo ultrasonic microprobe geometry, (3) to construct and evaluate invasive in vivo ultrasonic microprobes using two separate construction approaches, and (4) to identify ultrasonic image features of tissues and cells that differentiate cytoarchitectural features of normal tissues from selected neoplastic tissues using the invasive in vivo ultrasonic microprobes. Light microscopic histopathologic evaluation of the identical tissues by a board-certified veterinary pathologist will be used as the gold standard. Three categories of ultrasonic data acquisition are proposed, viz., non- invasive using commercial transducers; invasive microprobe using existing, commercially available materials; and invasive microprobe using newly developed materials. Conventional B-mode and C-mode imaging techniques will be investigated. In addition, it is proposed to adapt signal processing techniques from synthetic aperture radar (SAR) imaging techniques. Also, image formation and enhancement methods will be tested and verified on stimulate data based on a full-fledged statistical model of the ultrasound imaging processing, adopting an enhanced version of the standard fully-developed-speckle model.
期刊论文(10)
专著(0)
科研奖励(0)
会议论文
Overdetermined least-squares aberration estimates using common-midpoint signals.
使用共同中点信号的超定最小二乘像差估计。
DOI: 10.1109/tmi.2004.831792
发表时间: 2004
期刊: IEEE transactions on medical imaging
影响因子: 10.6
作者: [Haun,MarkA, Jones,DouglasL, O'BrienJr,WilliamD]
通讯作者: O'BrienJr,WilliamD
Quantifying B-mode images of in vivo rat mammary tumors by the frequency dependence of backscatter.
通过反向散射的频率依赖性量化体内大鼠乳腺肿瘤的 B 模式图像。
DOI: 10.7863/jum.2001.20.6.605
发表时间: 2001
期刊: Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine
影响因子: --
作者: [Topp,KA, Zachary,JF, O'BrienJr,WD]
通讯作者: O'BrienJr,WD
Efficient three-dimensional imaging from a small cylindrical aperture.
通过小圆柱形孔径进行高效三维成像。
DOI: 10.1109/tuffc.2002.1020156
发表时间: 2002
期刊: IEEE transactions on ultrasonics, ferroelectrics, and frequency control
影响因子: --
作者: [Haun,MarkA, Jones,DouglasL, O'BrienJr,WilliamD]
通讯作者: O'BrienJr,WilliamD
Improved diagnostics through quantitative ultrasound imaging.
通过定量超声成像改进诊断。
DOI: 10.1109/iembs.2009.5333465
发表时间: 2009
期刊: Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference
影响因子: --
作者: [Hruska,DavidP, Sanchez,Jose, Oelze,MichaelL]
通讯作者: Oelze,MichaelL
Tumor Detection and Classification using QUS Technology's Structure Function
Tumor Detection and Classification using QUS Technology's Structure Function
Tumor Detection and Classification using QUS Technology's Structure Function
High-Resolution In Vivo Ultrasound Imaging Using VisualSonics VEVO 2100 System