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首页> 外文期刊>Neuroradiology >Transluminal color-coded three-dimensional magnetic resonance angiography for visualization of signal Intensity distribution pattern within an unruptured cerebral aneurysm: preliminarily assessment with anterior communicating artery aneurysms
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Transluminal color-coded three-dimensional magnetic resonance angiography for visualization of signal Intensity distribution pattern within an unruptured cerebral aneurysm: preliminarily assessment with anterior communicating artery aneurysms

机译:腔内彩色编码的三维磁共振血管造影术,用于可视化未破裂的脑动脉瘤内的信号强度分布模式:与前交通动脉瘤的初步评估

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摘要

The natural history of unruptured cerebral aneurysm is not known; also unknown is the potential growth and rupture in any individual aneurysm. The authors have developed transluminal color-coded three-dimensional magnetic resonance angiography (MRA) obtained by a time-of-flight sequence to investigate the interaction between the intra-aneurysmal signal intensity distribution patterns and configuration of unruptured cerebral aneurysms. Transluminal color-coded images were reconstructed from volume data of source magnetic resonance angiography by using a parallel volume-rendering algorithm with transluminal imaging technique. By selecting a numerical threshold range from a signal intensity opacity chart of the three-dimensional volume-rendering dataset several areas of signal intensity were depicted, assigned different colors, and visualized transparently through the walls of parent arteries and an aneurysm. Patterns of signal intensity distribution were analyzed with three operated cases of an unruptured anterior communicating artery aneurysm and compared with the actual configurations observed at microneurosurgery. A little difference in marginal features of an aneurysm was observed; however, transluminal color-coded images visualized the complex signal intensity distribution within an aneurysm in conjunction with aneurysmal geometry. Transluminal color-coded three-dimensional magnetic resonance angiography can thus provide numerical analysis of the interaction between spatial signal intensity distribution patterns and aneurysmal configurations and may offer an alternative and practical method to investigate the patient-specific natural history of individual unruptured cerebral aneurysms.
机译:脑动脉瘤破裂的自然史尚不清楚;还未知的是任何单个动脉瘤的潜在生长和破裂。作者开发了一种通过飞行时间序列获得的经腔彩色编码的三维磁共振血管造影(MRA),以研究动脉瘤内信号强度分布模式与未破裂的脑动脉瘤配置之间的相互作用。通过使用带有腔内成像技术的并行体绘制算法,从源磁共振血管造影的体数据重建腔内彩色编码图像。通过从三维体绘制数据集的信号强度不透明度图表中选择一个数值阈值范围,可以描绘出几个信号强度区域,为它们分配不同的颜色,并通过母动脉壁和动脉瘤透明地进行可视化。分析了信号强度分布的模式,分析了三例手术中未破裂的前交通动脉瘤,并与微神经外科观察到的实际结构进行了比较。观察到动脉瘤边缘特征的差异很小。然而,腔内彩色编码图像结合动脉瘤的几何形状使动脉瘤内复杂的信号强度分布可视化。腔内彩色编码的三维磁共振血管造影可提供空间信号强度分布模式与动脉瘤构型之间相互作用的数值分析,并可为研究个体未破裂的脑动脉瘤的患者特定自然史提供一种替代的实用方法。

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