Aaron Roy K, Dyke Jonathan P, Ciombor Deborah McK, Ballon Douglas, Lee Jonathan, Jung Edward, Tung Glenn A
Department of Orthopaedics, The Warren Alpert Medical School of Brown University, Providence, Rhode Island, USA.
Ann N Y Acad Sci. 2007 Nov;1117:124-37. doi: 10.1196/annals.1402.069.
Bone marrow edema is seen in osteoarthritis, avascular necrosis, and other clinical conditions including the bone marrow edema syndrome. Bone marrow edema is associated with bone pain and may be related to the pathophysiology of osteoarthritis. Our hypothesis is that bone marrow edema is associated with a reduction in perfusion in subchondral bone, which contributes to focal and segmental bone necrosis and cartilage breakdown. We further hypothesize that altered fluid dynamics in subchondral bone comprise part of the physicochemical environment to which osteocytes are highly sensitive and alter their cytokine expression profile in response to changes in fluid flow, pressure, and oxygen gradients. We have used contrast-enhanced magnetic resonance imaging with Gd-DTPA to characterize changes in subchondral bone perfusion in two relevant and related models-the Dunkin-Hartley guinea pig model of osteoarthritis and human bone marrow edema associated with osteoarthritis and avascular necrosis. Pharmacokinetic modeling was used to extract dynamic parameters of perfusion. Representative time-intensity curves are derived, which characterize normal bone and bone with marrow edema. Dynamic contrast-enhanced magnetic resonance imaging may be a useful tool for the early diagnosis of bone perfusion abnormalities and may be used to characterize marrow edema associated with a number of clinical conditions. This technique may also shed light on the pathophysiology of subchondral perfusion in osteoarthritis and avascular necrosis.
骨髓水肿可见于骨关节炎、缺血性坏死以及包括骨髓水肿综合征在内的其他临床病症。骨髓水肿与骨痛相关,且可能与骨关节炎的病理生理学有关。我们的假设是,骨髓水肿与软骨下骨灌注减少有关,这会导致局部和节段性骨坏死以及软骨破坏。我们进一步假设,软骨下骨中改变的流体动力学构成了骨细胞高度敏感的物理化学环境的一部分,并会根据流体流动、压力和氧梯度的变化改变其细胞因子表达谱。我们使用钆喷酸葡胺增强磁共振成像来表征两种相关模型中软骨下骨灌注的变化——骨关节炎的邓肯-哈特利豚鼠模型以及与骨关节炎和缺血性坏死相关的人类骨髓水肿。药代动力学建模用于提取灌注的动态参数。得出了代表性的时间-强度曲线,其表征了正常骨和伴有骨髓水肿的骨。动态对比增强磁共振成像可能是早期诊断骨灌注异常的有用工具,可用于表征与多种临床病症相关的骨髓水肿。该技术还可能有助于揭示骨关节炎和缺血性坏死中软骨下灌注的病理生理学。