[使用零回声时间序列的磁共振成像类骨成像的新型术前模拟]。

Q4 Medicine Neurological Surgery Pub Date : 2024-03-01 DOI:10.11477/mf.1436204915
Akihiro Inoue, Yasuhiro Shiraishi, Taichi Furumochi, Takeharu Kunieda
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引用次数: 0

摘要

本研究旨在评估基于零回波时间(ZTE)的磁共振成像(MRI)在经颅手术中规划最佳手术方法和应用 ZTE 进行解剖引导的临床实用性。通过创建 ZTE/MRA 融合图像和基于 ZTE 的三维 MRI 模型,对接受经颅手术和颈动脉内膜切除术并获得基于 ZTE 的 MRI 和磁共振血管造影(MRA)数据的患者进行了分析。我们研究了这些图像和模型能否在神经外科手术过程中替代计算机断层扫描成像。此外,通过与实际手术视图进行比较,评估了基于 3D-ZTE 的 MRI 模型的临床可用性。ZTE/MRA 融合图像和基于 3D-ZTE 的磁共振成像模型清晰地显示了颅骨和颅内形态,而无需暴露于辐射或使用含碘造影剂。这些模型通过直观显示病变与邻近骨结构之间的关系,可确定脑动脉瘤、近脑表面脑肿瘤和颈内颈动脉狭窄的最佳手术方法。然而,基于 ZTE 的核磁共振成像并不能为颅底病变(如前庭裂孔瘤)的手术提供有用的信息,因为颅底的骨结构通常包括空气成分,这会导致核磁共振成像信号紊乱。磁共振成像的 ZTE 序列不仅能清晰显示骨骼,还能显示病变周围的重要结构。该技术是一种微创技术,可用于神经外科疾病的术前规划和手术中最佳方法的指导。
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[A New Preoperative Simulation Using Magnetic Resonance Imaging Bone-Like Imaging with Zero-Echo-Time Sequence].

This study aimed to evaluate the clinical usefulness of zero-echo time(ZTE)-based magnetic resonance imaging(MRI)in planning an optimal surgical approach and applying ZTE for anatomical guidance during transcranial surgery. P atients who underwent transcranial surgery and carotid endarterectomy and for whom ZTE-based MRI and magnetic resonance angiography(MRA)data were obtained, were analyzed by creating ZTE/MRA fusion images and 3D-ZTE-based MRI models. We examined whether these images and models could be substituted for computed tomography imaging during neurosurgical procedures. Furthermore, the clinical usability of the 3D-ZTE-based MRI model was evaluated by comparing it with actual surgical views. ZTE/MRA fusion images and 3D-ZTE-based MRI models clearly illustrated the cranial and intracranial morphology without radiation exposure or the use of an iodinated contrast medium. The models allowed the determination of the optimum surgical approach for cerebral aneurysms, brain tumors near the brain surface, and cervical internal carotid artery stenosis by visualizing the relationship between the lesions and adjacent bone structures. However, ZTE-based MRI did not provide useful information for surgery for skull base lesions, such as vestibular schwannoma, because bone structures of the skull base often include air components, which cause signal disturbances in MRI. ZTE sequences on MRI allowed distinct visualization of not only the bone but also the vital structures around the lesion. This technology is minimally invasive and useful for preoperative planning and guidance of the optimum approach during surgery in a subset of neurosurgical diseases.

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来源期刊
Neurological Surgery
Neurological Surgery Medicine-Medicine (all)
自引率
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发文量
99
期刊最新文献
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