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{"title":"An RF breast coil for 0.2T MRI","authors":"Barbara Blasiak, Vyacheslav Volotovskyy, Randy Tyson, Jonathan Sharp, Boguslaw Tomanek","doi":"10.1002/cmr.b.21316","DOIUrl":null,"url":null,"abstract":"<div>\n \n <p>Breast cancer is the most frequently diagnosed cancer in women. High field studies have shown the diagnostic value of breast MRI, but the examination costs greatly exceed those of competing conventional mammography. Low field MRI offers typical MRI contrast at substantially lower cost, but has suffered from lower spatial resolution. Specificity of breast MRI can potentially be increased by acquiring MR imaging with higher spatial or temporal resolution, but the signal-to-noise ratio (SNR) achievable in a given imaging time becomes limiting. SNR for the particular pulse sequence and magnet field strength is strongly influenced by the characteristics of the radio-frequency coil. An optimal breast coil should yield excellent SNR but also generate a homogeneous B<sub>1</sub> field, while allowing imaging of the both breasts simultaneously and maintaining patient comfort. RF receiver coil design is a key determinant of image quality, thus to address this we have designed and constructed a low field breast imaging coil. The coil was tested with a 4-post 0.2T MRI providing high quality breast images. Designed and constructed saddle rf coil allows to obtain good quality image of the breast using low 0.2 T MRI system within 2 minutes. The coil provides patient comfort as breast compression is not required and minimizes artefacts caused by respiration or motion. A high contrast, low-cost and pain-free breast examination using optimized low field MRI system has the potential to serve a large patient population for whom current technologies have deficiencies. © 2015 Wiley Periodicals, Inc. Concepts Magn Reson Part B (Magn Reson Engineering) 46B: 3–7, 2016</p>\n </div>","PeriodicalId":50623,"journal":{"name":"Concepts in Magnetic Resonance Part B-Magnetic Resonance Engineering","volume":"46 1","pages":"3-7"},"PeriodicalIF":0.9000,"publicationDate":"2015-11-12","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1002/cmr.b.21316","citationCount":"3","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Concepts in Magnetic Resonance Part B-Magnetic Resonance Engineering","FirstCategoryId":"3","ListUrlMain":"https://onlinelibrary.wiley.com/doi/10.1002/cmr.b.21316","RegionNum":4,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"CHEMISTRY, PHYSICAL","Score":null,"Total":0}
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Abstract
Breast cancer is the most frequently diagnosed cancer in women. High field studies have shown the diagnostic value of breast MRI, but the examination costs greatly exceed those of competing conventional mammography. Low field MRI offers typical MRI contrast at substantially lower cost, but has suffered from lower spatial resolution. Specificity of breast MRI can potentially be increased by acquiring MR imaging with higher spatial or temporal resolution, but the signal-to-noise ratio (SNR) achievable in a given imaging time becomes limiting. SNR for the particular pulse sequence and magnet field strength is strongly influenced by the characteristics of the radio-frequency coil. An optimal breast coil should yield excellent SNR but also generate a homogeneous B1 field, while allowing imaging of the both breasts simultaneously and maintaining patient comfort. RF receiver coil design is a key determinant of image quality, thus to address this we have designed and constructed a low field breast imaging coil. The coil was tested with a 4-post 0.2T MRI providing high quality breast images. Designed and constructed saddle rf coil allows to obtain good quality image of the breast using low 0.2 T MRI system within 2 minutes. The coil provides patient comfort as breast compression is not required and minimizes artefacts caused by respiration or motion. A high contrast, low-cost and pain-free breast examination using optimized low field MRI system has the potential to serve a large patient population for whom current technologies have deficiencies. © 2015 Wiley Periodicals, Inc. Concepts Magn Reson Part B (Magn Reson Engineering) 46B: 3–7, 2016
用于0.2T MRI的射频乳房线圈
乳腺癌是女性中最常见的癌症。高场研究显示了乳房MRI的诊断价值,但其检查费用大大超过了与之竞争的传统乳房x光检查。低场MRI以较低的成本提供典型的MRI对比,但空间分辨率较低。乳房MRI的特异性可以通过获得更高的空间或时间分辨率的磁共振成像来提高,但在给定的成像时间内可实现的信噪比(SNR)变得有限。特定脉冲序列和磁场强度的信噪比受射频线圈特性的强烈影响。最佳的乳房线圈应产生优异的信噪比,同时产生均匀的B1场,同时允许对两个乳房进行成像,并保持患者的舒适度。射频接收器线圈的设计是图像质量的关键决定因素,因此,为了解决这个问题,我们设计并构建了一个低场乳房成像线圈。用4柱0.2T MRI检测线圈,提供高质量的乳房图像。设计和构建的鞍形射频线圈允许使用低0.2 T MRI系统在2分钟内获得高质量的乳房图像。线圈为患者提供舒适,因为乳房不需要压缩,并最大限度地减少呼吸或运动引起的人工制品。使用优化的低场MRI系统进行高对比度、低成本和无痛的乳房检查,有可能为当前技术存在缺陷的大量患者提供服务。©2015 Wiley期刊公司核电工程B辑(核电工程),第46期,第3-7期,2016
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