磁共振弹性成像
磁共振成像
弹性成像
医学
组织病理学
病理
肝肿瘤
磁共振弥散成像
成像生物标志物
有效扩散系数
核医学
结缔组织
肿瘤进展
肝癌
生物医学工程
癌症
生物标志物
转移
核磁共振
放射科
蛋白质组学
机械生物学
超声波
糖胺聚糖
作者
Justus Ramtke,Friederike Hesse,Lasse Noack,Justus Klockner,Yubei He,Yü Liu,Yanglei Wu,R Schmidt,Selma Saclier,Salma AS Abosabie,Tom Meyer,Richard Ruppel,Nikolaus Berndt,Michael Mülleder,Eyk Schellenberger,Nicola Beindorff,Dominik N. Müller,Ingolf Sack,Jing Guo,Shraga Nahum Goldberg
摘要
ABSTRACT Conventional magnetic resonance imaging (MRI) often detects liver tumors after morphologic and vascular changes become apparent, whereas biomechanical alterations may precede visible tumor formation. Here, we evaluate multifrequency magnetic resonance elastography (mMRE)‐derived shear wave speed (SWS) and phase angle (ϕ) covering stiffness and viscosity as non‐invasive biomechanical imaging markers for liver cancer formation and progression in a translational rabbit model. VX2 liver tumor‐bearing New Zealand White rabbits underwent five longitudinal multiparametric MRI scans over 14 days, including mMRE at clinically relevant frequencies on a 3 Tesla scanner. SWS and ϕ maps were compared with apparent diffusion coefficient (ADC) maps, histopathology, and proteomics. Tumor SWS and ϕ increased 2–3 days after implantation and were significantly higher than liver at two weeks (SWS: p = .002; ϕ: p = .008). Tumor ADC decreased significantly only from days 11–13 onward (day 14: p = .02). Histopathology and proteomics demonstrated tumoral enrichment of collagen, proteoglycan, and glycosaminoglycan pathways compared to liver, suggesting matrix remodeling as a key contributor to increased stiffness and viscosity measured by mMRE. The early elevation of SWS and ϕ preceding ADC changes highlights mMRE as a promising tool for detecting tumor‐associated biomechanical remodeling and enabling earlier liver cancer diagnosis and monitoring beyond conventional MRI.
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