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Header for SpringerLink: Imaging (Section Editors Thomas Lang and Felix Wehrli)

机译:SpringerLink的标题:图像处理(部分编辑Thomas Lang和Felix Wehrli)

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摘要

Magnetic resonance imaging (MRI) plays a pivotal role for assessment of the musculoskeletal system. It is currently the clinical modality of choice for evaluation of soft tissues including cartilage, ligaments, tendons, muscle, and bone marrow. By comparison, the study of calcified tissue by MRI is still in its infancy. In this article we review the potential of the modality for assessment of cortical bone properties known to be affected in degenerative bone disease, with focus on parameters related to matrix and mineral densities, and porosity, by means of emerging solid-state 1H and 31P MRI techniques.In contrast to soft tissues, the MRI signal in calcified tissues has very short lifetime, on the order of 100 μs to a few milliseconds, demanding customized imaging approaches that allow capture of the signal almost immediately after excitation. The technologies described are suited for quantitatively imaging human cortical bone in specimens as well as in vivo in patients on standard clinical imagers, yielding either concentrations in absolute units when measured against a reference standard, or more simply, in the form of surrogate biomarkers.The two major water fractions in cortical bone are those of collagen-bound and pore water occurring at an approximately 3:1 ratio. Collagen-bound water density provides a direct quantitative measure of osteoid density. While at an earlier stage of development, quantification of mineral phosphorus by 31P MRI yields mineral density, and together with knowledge of matrix density, should allow quantification of the degree of bone mineralization.
机译:磁共振成像(MRI)在评估肌肉骨骼系统中起着关键作用。目前,它是评估包括软骨,韧带,肌腱,肌肉和骨髓在内的软组织的临床选择。相比之下,MRI对钙化组织的研究仍处于起步阶段。在本文中,我们将综述这种方式在评估退化性骨疾病中受影响的皮质骨特性方面的潜力,重点是通过新兴的固态 1与基质和矿物质密度以及孔隙度相关的参数 H和 31 P MRI技术。与软组织相比,钙化组织中的MRI信号的寿命非常短,大​​约在100μs到几毫秒之间,需要定制的成像方法允许在激发后几乎立即捕获信号。所描述的技术适用于在标准临床成像仪上对标本中的人类皮层骨以及患者体内进行定量成像,相对于参考标准测量时可以产生绝对单位的浓度,或者更简单地以替代生物标记物的形式产生浓度。皮质骨中的两个主要水部分是胶原蛋白结合的水和孔隙水,它们的比例大约为3:1。胶原蛋白结合的水密度提供了类骨质密度的直接定量度量。在开发的早期阶段,通过 31 P MRI对矿物质磷进行定量可产生矿物质密度,并结合基质密度知识可对骨矿化程度进行定量。

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