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Dissectable Modified Three-Dimensional Temporal Bone and Whole Skull Base Models for Training in Skull Base Approaches

机译:可解剖的三维颞骨和全颅底模型,用于颅底进修训练

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摘要

Training in dissection of the skull base is essential for anatomical understanding and correct surgical techniques, but chances for cadaver dissection are limited, so a substitute is very desirable. Modifications of commercially available three-dimensional (3D) temporal bone and whole skull base models made from surgically dissectable artificial bone are proposed to include artificial dura mater, venous sinuses, carotid artery, and cranial nerves as educational tools for training in skull base surgery. These 3D models precisely reproduce the surface details and inner bony structures such as the cranial foramina, inner ear organs, air cells, and so on. Dura mater and venous sinuses are made from silicone, cranial nerves from rubber fibers, and the internal carotid artery from vinyl tube. Simulations of skull base techniques were performed on these models using a high-speed drill under the operating microscope. The dissected models were evaluated by bone density computed tomography scans to confirm the areas of bony removal. The three steps of reconstruction of the skull base model, dissection, and observation of the dissected model promote clear understanding of the 3D anatomy and acquisition of surgical techniques in the skull base.
机译:颅底解剖训练对于解剖学理解和正确的手术技术至关重要,但是尸体解剖的机会有限,因此非常需要替代方法。提出将可手术切除的人造骨制成的商用三维(3D)颞骨和整个颅骨基础模型的修改包括人工硬脑膜,静脉窦,颈动脉和颅神经,作为在颅底外科手术中训练的教育工具。这些3D模型精确地再现了表面细节和内部骨骼结构,例如颅骨孔,内耳器官,气囊等。硬脑膜和静脉窦由硅树脂制成,颅神经由橡胶纤维制成,颈内动脉由乙烯基管制成。在手术显微镜下使用高速钻在这些模型上进行了颅底技术的模拟。通过骨密度计算机断层扫描对解剖的模型进行评估,以确认去除骨的区域。重建颅底模型,解剖和观察解剖模型的三个步骤促进了对3D解剖结构的清晰理解以及颅底手术技术的获得。

著录项

  • 作者

    Mori, Kentaro;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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