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将无创参数 MRI 与有创生理测量相结合(MR-PHYSIOL):探索急性肾损伤的杂交和集成方法在大鼠中的应用。

Linking non-invasive parametric MRI with invasive physiological measurements (MR-PHYSIOL): towards a hybrid and integrated approach for investigation of acute kidney injury in rats.

机构信息

Berlin Ultrahigh Field Facility (B.U.F.F.), Max Delbrück Center for Molecular Medicine, Berlin, Germany.

出版信息

Acta Physiol (Oxf). 2013 Apr;207(4):673-89. doi: 10.1111/apha.12065. Epub 2013 Feb 20.

Abstract

Acute kidney injury of various origins shares a common link in the pathophysiological chain of events: imbalance between renal medullary oxygen delivery and oxygen demand. For in vivo assessment of kidney haemodynamics and oxygenation in animals, quantitative but invasive physiological methods are established. A very limited number of studies attempted to link these invasive methods with parametric Magnetic Resonance Imaging (MRI) of the kidney. Moreover, the validity of parametric MRI (pMRI) as a surrogate marker for renal tissue perfusion and renal oxygenation has not been systematically examined yet. For this reason, we set out to combine invasive techniques and non-invasive MRI in an integrated hybrid setup (MR-PHYSIOL) with the ultimate goal to calibrate, monitor and interpret parametric MR and physiological parameters by means of standardized interventions. Here we present a first report on the current status of this multi-modality approach. For this purpose, we first highlight key characteristics of renal perfusion and oxygenation. Second, concepts for in vivo characterization of renal perfusion and oxygenation are surveyed together with the capabilities of MRI for probing blood oxygenation-dependent tissue stages. Practical concerns evoked by the use of strong magnetic fields in MRI and interferences between MRI and invasive physiological probes are discussed. Technical solutions that balance the needs of in vivo physiological measurements together with the constraints dictated by small bore MR scanners are presented. An early implementation of the integrated MR-PHYSIOL approach is demonstrated including brief interventions of hypoxia and hyperoxia.

摘要

各种来源的急性肾损伤在病理生理事件链中具有共同的联系

肾髓质氧输送与氧需求之间的失衡。为了在动物体内评估肾脏血液动力学和氧合,已经建立了定量但有创的生理方法。极少数研究试图将这些有创方法与肾脏的参数磁共振成像(MRI)联系起来。此外,参数 MRI(pMRI)作为肾脏组织灌注和氧合的替代标志物的有效性尚未得到系统检查。出于这个原因,我们着手将侵入性技术和非侵入性 MRI 结合在一个集成的混合设置(MR-PHYSIOL)中,最终目标是通过标准化干预来校准、监测和解释参数 MRI 和生理参数。在这里,我们首次报告了这种多模态方法的现状。为此,我们首先强调了肾脏灌注和氧合的关键特征。其次,我们调查了用于体内描述肾脏灌注和氧合的概念,以及 MRI 探测血氧依赖组织阶段的能力。讨论了 MRI 中强磁场的使用和 MRI 与侵入性生理探头之间的干扰引起的实际问题。提出了平衡体内生理测量需求与小口径 MRI 扫描仪规定的限制的技术解决方案。展示了集成的 MR-PHYSIOL 方法的早期实现,包括短暂的缺氧和高氧干预。

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