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3D Rapid Prototyping for Otolaryngology—Head and Neck Surgery: Applications in Image-Guidance Surgical Simulation and Patient-Specific Modeling

机译:耳鼻喉科的3D快速原型制作-头颈外科:在图像指导手术模拟和患者特定模型中的应用

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摘要

The aim of this study was to demonstrate the role of advanced fabrication technology across a broad spectrum of head and neck surgical procedures, including applications in endoscopic sinus surgery, skull base surgery, and maxillofacial reconstruction. The initial case studies demonstrated three applications of rapid prototyping technology are in head and neck surgery: i) a mono-material paranasal sinus phantom for endoscopy training ii) a multi-material skull base simulator and iii) 3D patient-specific mandible templates. Digital processing of these phantoms is based on real patient or cadaveric 3D images such as CT or MRI data. Three endoscopic sinus surgeons examined the realism of the endoscopist training phantom. One experienced endoscopic skull base surgeon conducted advanced sinus procedures on the high-fidelity multi-material skull base simulator. Ten patients participated in a prospective clinical study examining patient-specific modeling for mandibular reconstructive surgery. Qualitative feedback to assess the realism of the endoscopy training phantom and high-fidelity multi-material phantom was acquired. Conformance comparisons using assessments from the blinded reconstructive surgeons measured the geometric performance between intra-operative and pre-operative reconstruction mandible plates. Both the endoscopy training phantom and the high-fidelity multi-material phantom received positive feedback on the realistic structure of the phantom models. Results suggested further improvement on the soft tissue structure of the phantom models is necessary. In the patient-specific mandible template study, the pre-operative plates were judged by two blinded surgeons as providing optimal conformance in 7 out of 10 cases. No statistical differences were found in plate fabrication time and conformance, with pre-operative plating providing the advantage of reducing time spent in the operation room. The applicability of common model design and fabrication techniques across a variety of otolaryngological sub-specialties suggests an emerging role for rapid prototyping technology in surgical education, procedure simulation, and clinical practice.
机译:这项研究的目的是证明先进制造技术在广泛的头部和颈部手术程序中的作用,包括在内窥镜鼻窦手术,颅底手术和颌面重建中的应用。最初的案例研究表明,快速原型技术在头颈部手术中的三个应用是:i)用于内窥镜检查训练的单材料鼻旁窦体模ii)多材料颅底模拟器和iii)3D患者特定的下颌骨模板。这些体模的数字处理基于真实的患者或尸体3D图像,例如CT或MRI数据。三名内窥镜鼻窦外科医师检查了内镜医师训练模型的真实性。一位经验丰富的内窥镜颅底手术医师在高保真多材料颅底模拟器上进行了高级窦道手术。十名患者参加了一项前瞻性临床研究,研究了针对下颌骨重建手术的患者特定模型。获得定性反馈以评估内窥镜训练体模和高保真多材料体模的真实性。使用盲人重建医生的评估进行的一致性比较测量了术中和术前重建下颌骨板之间的几何性能。内窥镜训练体模和高保真多材料体模都收到了关于体模模型现实结构的正面反馈。结果表明,需要进一步改进幻影模型的软组织结构。在针对特定患者的下颌骨模板研究中,两名盲人将术前钢板判断为10例病例中有7例具有最佳依从性。在制版时间和一致性方面未发现统计学差异,术前电镀具有减少手术室时间的优势。通用模型设计和制造技术在各种耳鼻喉科专业中的适用性表明,快速原型技术在外科手术教育,过程仿真和临床实践中正在发挥新的作用。

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