课题基金 / 基金详情

Feasibility of CT in high risk breast cancer patients

Feasibility of CT in high risk breast cancer patients
CT检查在高危乳腺癌患者中的可行性
批准号:
6369934
负责人:
JOHN M BOONE
金额:
$23.93万
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-07-01 至 2004-06-30

项目摘要

项目成果

JOHN M BOONE的其他基金

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中文摘要
翻译
乳房X光检查用于筛查无症状女性的乳腺癌,使用乳房X光检查发现的典型乳腺癌直径约为11 mm。 在这种小尺寸下,切除病变导致大多数女性乳腺癌治愈。 然而,有一小部分女性(约占所有乳腺癌的5%)在遗传上易患乳腺癌(BRCA 1和BCRA 2基因),在这些女性中,需要更积极的检测方法。 除了BRCA 1和BRCA 2携带者患乳腺癌的风险极高之外,乳房密度极高的女性患乳腺癌的风险也较高(由于其乳房密度高,比值比为4至6),乳房X光检查对这些女性的敏感性较低。 对于这些高风险类别中的女性,其中大多数具有乳房X线摄影成像效果较差的致密乳房,需要具有更好病变可检测性性能(对比度分辨率)的成像模式。 而超声波所依赖的造影机制不如X射线造影可靠,这就是为什么它们不用于筛查。 然而,计算机断层扫描(CT)确实依赖于X射线对比机制,但其对比分辨率约为投影乳腺X射线摄影的10倍。 CT非常能够识别3- 5 mm范围内的软组织病变-此类病变的体积比乳房X线摄影发现的平均11 mm病变小10 - 50倍。因此,对于高危患者,CT比乳房X线摄影更有可能更早发现乳腺癌。 在这项可行性研究中,我们建议使用计算机模拟技术结合尸体乳房和乳房切除术标本的CT,彻底研究专用乳房CT的潜力。 蒙特卡罗研究将用于全面评估乳腺CT的腺体剂量,成像研究将用于定义最佳CT采集的要求。 使用CT扫描乳房病变, 10个乳房切除标本,将建立乳房肿瘤模型。 肿瘤模型将与一系列约20个尸体乳腺CT数据集一起使用,以进行广泛的ROC研究。计算机观察员将用于定义CT和乳腺X线摄影的Az与肿瘤直径曲线。 人类观察员将被用来验证和校准更广泛的计算机观察结果。 这项研究的结果应该提供一个清晰的了解乳腺CT作为一种工具,以降低乳腺癌死亡率的妇女与乳腺癌的可怕风险的人口的潜力。
英文摘要
Mammography is used to screen asymptomatic women for breast cancer, and typical breast cancer found using mammography is approximately 11 mm in diameter. At this small size, removal of lesion results in breast cancer cure in the majority of women. However, there is a small class of women (about 5% of all breast cancers) who are genetically predisposed to breast cancer (BRCA1 and BCRA2 genes), and in these women, more aggressive detection methods are needed. In addition to BRCA1 and BRCA2 carriers who are at extraordinary risk of breast cancer, women with extremely dense breasts are at higher risk from breast cancer (by virtue of their dense breasts with odds ratio from 4 to 6), and mammography is less sensitive in these women. For women in these high-risk categories, most of whom have dense breasts that are poorly imaged by mammography, an imaging modality with better lesion detectability performance (contrast resolution) is needed. While ultrasound rely on contrast mechanisms that are less reliable than X-ray contrast-that is why they are not used for screening. However, computed tomography (CT) does depend upon x-ray contrast mechanisms, but has about 10 times the contrast resolution as projection mammography. CT is very capable of identifying soft tissue lesions in the 3-5mm range- Such lesions are 10 to 50 times smaller in volume than the average 11mm lesion found by mammography. Therefore, CT has great potential for much earlier detection of breast cancer than mammography for high-risk patients. In this feasibility study, we propose to throughly investigate the potential of dedicated breast CT using computer simulation techniques coupled with CT of cadaver breasts and mastectomy specimens. Monte Carlo studies will be used to fully evaluate the glandular dose of breast CT, and imaging studies will be used to define the requirements of optimal CT acquisition. Using CT scans of breast lesions from about 10 mastectomy specimens, a breast tumor model will be developed. The tumor model will be used with a series of about 20 cadaver breast CT data sets to conduct extensive ROC studies. Computer observers will be used to define the Az versus tumor diameter curves for both CT and mammography. Human observers will be used to validate and calibrate the more extensive computer observer results. The results of this investigation should provide a clear understanding of the potential of breast CT as a tool to reduce breast cancer mortality in the population of women with dire risk of breast cancer.
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