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Molecular breast imaging: use of a dual-head dedicated gamma camera to detect small breast tumors.分子乳腺成像:使用双头专用伽马相机检测小乳腺肿瘤。
AJR Am J Roentgenol. 2008 Dec;191(6):1805-15. doi: 10.2214/AJR.07.3693.
2
Quantification of lesion size, depth, and uptake using a dual-head molecular breast imaging system.使用双头分子乳腺成像系统对病变大小、深度和摄取情况进行定量分析。
Med Phys. 2008 Apr;35(4):1365-76. doi: 10.1118/1.2885371.
3
Breast-specific gamma imaging as an adjunct imaging modality for the diagnosis of breast cancer.乳腺特异性γ成像作为乳腺癌诊断的辅助成像方式。
Radiology. 2008 Jun;247(3):651-7. doi: 10.1148/radiol.2473061678.
4
Scintimammography with dedicated breast camera in unifocal and multifocal/multicentric primary breast cancer detection: a comparative study with SPECT.使用专用乳腺相机的乳腺闪烁显像在单灶性和多灶性/多中心性原发性乳腺癌检测中的应用:与单光子发射计算机断层扫描的比较研究
Int J Oncol. 2007 Aug;31(2):369-77.
5
Mammographic density and the risk and detection of breast cancer.乳腺钼靶密度与乳腺癌的风险及检测
N Engl J Med. 2007 Jan 18;356(3):227-36. doi: 10.1056/NEJMoa062790.
6
Molecular breast imaging: advantages and limitations of a scintimammographic technique in patients with small breast tumors.分子乳腺成像:乳腺闪烁造影技术在小乳腺肿瘤患者中的优势与局限性
Breast J. 2007 Jan-Feb;13(1):3-11. doi: 10.1111/j.1524-4741.2006.00356.x.
7
Comparison of small field of view gamma camera systems for scintimammography.用于乳腺闪烁显像的小视野γ相机系统的比较
Nucl Med Commun. 2005 May;26(5):441-5. doi: 10.1097/00006231-200505000-00008.
8
Molecular breast imaging: a new technique using technetium Tc 99m scintimammography to detect small tumors of the breast.分子乳腺成像:一种使用锝Tc 99m乳腺闪烁造影术检测乳腺小肿瘤的新技术。
Mayo Clin Proc. 2005 Jan;80(1):24-30. doi: 10.1016/S0025-6196(11)62953-4.
9
Scintimammography with dedicated breast camera detects and localizes occult carcinoma.使用专用乳腺相机的乳腺闪烁显像可检测并定位隐匿性癌。
J Nucl Med. 2004 Apr;45(4):553-8.
10
Mammography and subsequent whole-breast sonography of nonpalpable breast cancers: the importance of radiologic breast density.乳腺钼靶摄影及后续对不可触及乳腺癌的全乳超声检查:乳腺放射密度的重要性
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专用分子乳腺成像系统的最佳准直设计。

Design of optimal collimation for dedicated molecular breast imaging systems.

作者信息

Weinmann Amanda L, Hruska Carrie B, O'Connor Michael K

机构信息

Department of Radiology, Division of Nuclear Medicine, Mayo Clinic, Rochester, Minnesota 55905, USA.

出版信息

Med Phys. 2009 Mar;36(3):845-56. doi: 10.1118/1.3077119.

DOI:10.1118/1.3077119
PMID:19378745
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2736746/
Abstract

Molecular breast imaging (MBI) is a functional imaging technique that uses specialized small field-of-view gamma cameras to detect the preferential uptake of a radiotracer in breast lesions. MBI has potential to be a useful adjunct method to screening mammography for the detection of occult breast cancer. However, a current limitation of MBI is the high radiation dose (a factor of 7-10 times that of screening mammography) associated with current technology. The purpose of this study was to optimize the gamma camera collimation with the aim of improving sensitivity while retaining adequate resolution for the detection of sub-10-mm lesions. Square-hole collimators with holes matched to the pixilated cadmium zinc telluride detector elements of the MBI system were designed. Data from MBI patient studies and parameters of existing dual-head MBI systems were used to guide the range of desired collimator resolutions, source-to-collimator distances, pixel sizes, and collimator materials that were examined. General equations describing collimator performance for a conventional gamma camera were used in the design process along with several important adjustments to account for the specialized imaging geometry of the MBI system. Both theoretical calculations and a Monte Carlo model were used to measure the geometric efficiency (or sensitivity) and resolution of each designed collimator. Results showed that through optimal collimation, collimator sensitivity could be improved by factors of 1.5-3.2, while maintaining a collimator resolution of either < or =5 or < or = 7.5 mm at a distance of 3 cm from the collimator face. These gains in collimator sensitivity permit an inversely proportional drop in the required dose to perform

摘要

分子乳腺成像(MBI)是一种功能成像技术,它使用专门的小视野伽马相机来检测放射性示踪剂在乳腺病变中的优先摄取。MBI有潜力成为乳腺钼靶筛查检测隐匿性乳腺癌的一种有用辅助方法。然而,MBI目前的一个局限性是与当前技术相关的高辐射剂量(是乳腺钼靶筛查的7至10倍)。本研究的目的是优化伽马相机准直,以提高灵敏度,同时保持对小于10毫米病变检测的足够分辨率。设计了方孔准直器,其孔与MBI系统的像素化碲化镉锌探测器元件相匹配。来自MBI患者研究的数据和现有双头MBI系统的参数被用于指导所研究的所需准直器分辨率、源到准直器距离、像素大小和准直器材料的范围。在设计过程中使用了描述传统伽马相机准直器性能的通用方程,并进行了一些重要调整,以考虑MBI系统的特殊成像几何结构。理论计算和蒙特卡罗模型都被用于测量每个设计准直器的几何效率(或灵敏度)和分辨率。结果表明,通过优化准直,准直器灵敏度可提高1.5至3.2倍,同时在距准直器表面3厘米的距离处保持准直器分辨率小于或等于5毫米或小于或等于7.5毫米。准直器灵敏度的这些提高允许所需剂量成反比下降以进行