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利用过滤交换成像技术无创性绘制人脑水扩散交换图。

Noninvasive mapping of water diffusional exchange in the human brain using filter-exchange imaging.

机构信息

Department of Medical Radiation Physics, Lund University, Lund, Sweden.

出版信息

Magn Reson Med. 2013 Jun;69(6):1573-81. doi: 10.1002/mrm.24395. Epub 2012 Jul 26.

Abstract

We present the first in vivo application of the filter-exchange imaging protocol for diffusion MRI. The protocol allows noninvasive mapping of the rate of water exchange between microenvironments with different self-diffusivities, such as the intracellular and extracellular spaces in tissue. Since diffusional water exchange across the cell membrane is a fundamental process in human physiology and pathophysiology, clinically feasible and noninvasive imaging of the water exchange rate would offer new means to diagnose disease and monitor treatment response in conditions such as cancer and edema. The in vivo use of filter-exchange imaging was demonstrated by studying the brain of five healthy volunteers and one intracranial tumor (meningioma). Apparent exchange rates in white matter range from 0.8±0.08 s(-1) in the internal capsule, to 1.6±0.11 s(-1) for frontal white matter, indicating that low values are associated with high myelination. Solid tumor displayed values of up to 2.9±0.8 s(-1). In white matter, the apparent exchange rate values suggest intra-axonal exchange times in the order of seconds, confirming the slow exchange assumption in the analysis of diffusion MRI data. We propose that filter-exchange imaging could be used clinically to map the water exchange rate in pathologies. Filter-exchange imaging may also be valuable for evaluating novel therapies targeting the function of aquaporins.

摘要

我们展示了过滤交换成像方案在活体中的首次应用,该方案可用于非侵入性地绘制具有不同自扩散率的微环境之间水交换的速率,例如组织内的细胞内和细胞外空间。由于细胞膜扩散水交换是人类生理学和病理生理学的基本过程,因此临床可行且非侵入性的水交换率成像将为诊断疾病和监测癌症和水肿等疾病的治疗反应提供新的手段。通过研究五名健康志愿者和一名颅内肿瘤(脑膜瘤)的大脑,证明了过滤交换成像的体内应用。白质中的表观交换率范围从内囊的 0.8±0.08 s(-1)到额白质的 1.6±0.11 s(-1),表明低值与高髓鞘化有关。实体瘤的数值高达 2.9±0.8 s(-1)。在白质中,表观交换率值表明轴内交换时间为秒级,这证实了扩散 MRI 数据分析中缓慢交换的假设。我们提出过滤交换成像可用于临床绘制病变中水交换率的图谱。过滤交换成像对于评估针对水通道蛋白功能的新型疗法也可能具有重要价值。

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