Department of Clinical Radiology, Ioannina University Hospital, Ioannina, Greece.
Medical Imaging Department, Corfu General Hospital, Corfu, Greece; Division of Midwifery & Radiography, City, University of London, UK..
J Med Imaging Radiat Sci. 2022 Jun;53(2):203-211. doi: 10.1016/j.jmir.2022.03.072. Epub 2022 Apr 22.
Breast cancer is the most frequently occurring malignancy among women, having a great impact on society, economy, and healthcare. It is therefore vital to develop effective imaging methods to perform breast screening, diagnosis, and treatment follow-up. Breast MRI is the most efficient method for screening high-risk patients, for breast lesion differentiation and characterization, and for the assessment of response to treatment. Some novel MRI imaging techniques, such as Diffusion Kurtosis Imaging, perfusion imaging, MR Spectroscopy, hybrid PET/MRI imaging, fMRI and ultra-high field MRI imaging offer the capacity to improve the diagnostic accuracy of breast MRI, while reducing unnecessary biopsies. However, any techniques used in breast MRI should be treated with caution, and after a thoughtful consideration of its main strengths and weaknesses. Fast, unenhanced MRI protocols will benefit our patients, improving their overall MRI experience and avoiding the potential risks of contrast media administration. The implementation of AI-based algorithms, using Deep Learning, Convolutional Neural Networks and Radiomics, will certainly increase the superiority of breast MRI and improve patient outcomes, as they can facilitate lesion differentiation, predict response to treatment, reduce unnecessary biopsies, and also reduce scan times and artefacts.
乳腺癌是女性中最常见的恶性肿瘤,对社会、经济和医疗保健都有重大影响。因此,开发有效的成像方法来进行乳房筛查、诊断和治疗随访至关重要。乳腺 MRI 是筛查高危患者、区分和特征化乳腺病变以及评估治疗反应的最有效方法。一些新的 MRI 成像技术,如扩散峰度成像、灌注成像、磁共振波谱、杂交 PET/MRI 成像、功能磁共振成像和超高场 MRI 成像,有能力提高乳腺 MRI 的诊断准确性,同时减少不必要的活检。然而,在乳腺 MRI 中使用的任何技术都应该谨慎对待,并在充分考虑其主要优缺点后再使用。快速、非增强的 MRI 方案将使我们的患者受益,改善他们的整体 MRI 体验,并避免造影剂给药的潜在风险。基于人工智能的算法的实施,使用深度学习、卷积神经网络和放射组学,肯定会提高乳腺 MRI 的优越性,并改善患者的治疗效果,因为它们可以促进病变的区分、预测治疗反应、减少不必要的活检,同时还可以减少扫描时间和伪影。