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3D-Visualization and Registration for Neurovascular Compression Syndrome Analysis

机译:用于神经血管压缩综合征分析的3D可视化和配准

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Neurovascular compression syndromes are caused by a pathological contact between vessels and the root entry or exit zone of cranial nerves. Associated with a number of neurological diseases such as trigeminal neuralgia, hemifacial spasm or vertigo, there is also strong evidence for a direct relation with essential arterial hypertension. To treat the related conditions, operative microvas-cular decompression has proven to be very effective. So far, as a drawback for the examination, 2D representations of tomographic volumes served as exclusive source of information. Aiming at an improved spatial understanding, we introduce a noninvasive and fast approach providing clear delineation and interactive 3D visualization of all relevant structures. It is based on strongly T2 weighted MR volumes with sufficiently high resolution. Due to the size of the nerves and vessels at the brainstem, an explicit segmentation is extremely difficult. Therefore, we propose to segment only coarse structures with a sequence of filtering and volume growing. Consecutively, implicit segmentation with pre-defined transfer functions is applied to delineate the tiny target structures included in the area of cerebrospinal fluid. Additionally, we suggest registration with MR angiography to differentiate between vessels and nerves on one side and between arteries and veins on the other side. Overall, our approach contributes significantly to an optimized 3D analysis of vascular compression syndromes. The high value for the planning of surgery is demonstrated with several clinical examples.
机译:神经血管压迫综合症是由血管与颅神经的根部进入或离开区域之间的病理性接触引起的。与三叉神经痛,面肌痉挛或眩晕等多种神经系统疾病有关,也有充分的证据证明与原发性高血压直接相关。为了治疗相关疾病,手术微血管减压已被证明是非常有效的。迄今为止,作为检查的一个缺点,层析成像体积的2D表示是唯一的信息源。为了改善对空间的了解,我们引入了一种无创且快速的方法,可为所有相关结构提供清晰的轮廓和交互式3D可视化效果。它基于具有足够高分辨率的强T2加权MR体积。由于脑干处神经和血管的大小,要进行明确的分割非常困难。因此,我们建议仅对具有过滤和体积增长序列的粗略结构进行细分。连续地,使用具有预定义传递函数的隐式分割来描绘脑脊液区域中包含的微小目标结构。此外,我们建议通过MR血管造影进行注册,以区分一侧的血管和神经以及另一侧的动脉和静脉。总体而言,我们的方法为优化血管压迫综合征的3D分析做出了重要贡献。几个临床实例证明了手术计划的高价值。

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