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特发性正常压力脑积水患者心动周期中脑内水分子位移的动态状态

Dynamic state of water molecular displacement of the brain during the cardiac cycle in idiopathic normal pressure hydrocephalus.

作者信息

Kan Hirohito, Miyati Tosiaki, Mase Mitsuhito, Osawa Tomoshi, Ohno Naoki, Kasai Harumasa, Arai Nobuyuki, Kawano Makoto, Shibamoto Yuta

机构信息

Department of Radiology, Nagoya City University Hospital, 1-Kawasumi, Mizuho-cho Mizuho-ku, Nagoya 4678602, Aichi, Japan; Division of Health Sciences, Graduate School of Medical Science, Kanazawa University, 5-11-80 Kodatsuno, Kanazawa 9200942, Ishikawa, Japan.

Division of Health Sciences, Graduate School of Medical Science, Kanazawa University, 5-11-80 Kodatsuno, Kanazawa 9200942, Ishikawa, Japan.

出版信息

Comput Med Imaging Graph. 2015 Mar;40:88-93. doi: 10.1016/j.compmedimag.2014.12.004. Epub 2015 Jan 6.

Abstract

The predictive accuracy of iNPH diagnoses could be increased using a combination of supplemental tests for iNPH. To evaluate the dynamic state of water displacement during the cardiac cycle in idiopathic normal pressure hydrocephalus (iNPH), we determined the change in water displacement using q-space analysis of diffusion magnetic resonance image. ECG-triggered single-shot diffusion echo planar imaging was used. Water displacement was obtained from the displacement probability profile calculated by Fourier transform of the signal decay fitted as a function of the reciprocal spatial vector q. Then maximum minus minimum displacement (delta-displacement), of all cardiac phase images was calculated. We assessed the delta-displacement in white matter in patients with iNPH and atrophic ventricular dilation (atrophic VD), and in healthy volunteers (control group). Delta-displacement in iNPH was significantly higher than those in the atrophic VD and control. This shows that water molecules of the white matter in iNPH are easily fluctuated by volume loading of the cranium during the cardiac cycle, due to the decrease in intracranial compliance. There was no significant correlation between delta-displacement and displacement. The delta-displacement and the displacement do not necessarily yield the same kind of information. Delta-displacement demonstrated to obtain biophysical information about fluctuation. This analysis may be helpful in the understanding physiology and pathological condition in iNPH and the assisting in the diagnosis.

摘要

通过对特发性正常压力脑积水(iNPH)使用补充测试组合,可以提高iNPH诊断的预测准确性。为了评估特发性正常压力脑积水(iNPH)患者心动周期中脑脊液置换的动态状态,我们使用扩散磁共振图像的q空间分析来确定脑脊液置换的变化。采用心电图触发的单次激发扩散回波平面成像。脑脊液置换是从通过对作为倒数空间矢量q的函数拟合的信号衰减进行傅里叶变换计算得到的置换概率分布中获得的。然后计算所有心动周期图像的最大减最小置换量(δ置换量)。我们评估了iNPH合并萎缩性脑室扩张(萎缩性VD)患者和健康志愿者(对照组)白质中的δ置换量。iNPH患者的δ置换量显著高于萎缩性VD患者和对照组。这表明,由于颅内顺应性降低,iNPH患者白质中的水分子在心动周期中容易受到颅骨容量负荷的波动影响。δ置换量与置换量之间无显著相关性。δ置换量和置换量不一定产生相同类型的信息。δ置换量被证明可以获得有关波动的生物物理信息。这种分析可能有助于理解iNPH的生理和病理状况,并辅助诊断。

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