Black Bone MRI for Virtual Surgical Planning in Craniomaxillofacial Surgery.

IF 2.3 3区 医学 Q2 SURGERY Seminars in Plastic Surgery Pub Date : 2022-12-07 eCollection Date: 2022-08-01 DOI:10.1055/s-0042-1756451
Krishna S Vyas, Marissa A Suchyta, Christopher H Hunt, Waleed Gibreel, Samir Mardini
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引用次数: 2

Abstract

Abstract Advances in computer-aided design and computer-aided manufacturing software have improved translational applications of virtual surgical planning (VSP) in craniomaxillofacial surgery, allowing for precise and accurate fabrication of cutting guides, stereolithographic models, and custom implants. High-resolution computed tomography (CT) imaging has traditionally been the gold standard imaging modality for VSP in craniomaxillofacial surgery but delivers ionizing radiation. Black bone magnetic resonance imaging (MRI) reduces the risks related to radiation exposure and has comparable functionality when compared with CT for VSP. Our group has studied the accuracy of utilizing black bone MRI in planning and executing several types of craniofacial surgeries, including cranial vault remodeling, maxillary advancement, and mandibular reconstruction using fibular bone. Here, we review clinical applications of black bone MRI pertaining to VSP and three-dimensional (3D)-printed guide creation for craniomaxillofacial surgery. Herein, we review the existing literature and our institutional experience comparing black bone MRI and CT in VSP-generated 3D model creation in cadaveric craniofacial surgeries including cranial vault reconstruction, maxillary advancement, and mandibular reconstruction with fibular free flap. Cadaver studies have demonstrated the ability to perform VSP and execute the procedure based on black bone MRI data and achieve outcomes similar to CT when performed for cranial vault reshaping, maxillary advancement, and mandibular reconstruction with free fibula. Limitations of the technology include increased time and costs of the MRI compared with CT and the possible need for general anesthesia or sedation in the pediatric population. VSP and 3D surgical guide creation can be performed using black bone MRI with comparable accuracy to high-resolution CT scans in a wide variety of craniofacial reconstructions. Successful segmentation, VSP, and 3D printing of accurate guides from black bone MRI demonstrate potential to change the preoperative planning standard of care. Black bone MRI also reduces exposure to ionizing radiation, which is of particular concern for the pediatric population or patients undergoing multiple scans.
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用于颅颌面外科虚拟手术规划的黑色骨骼磁共振成像。
计算机辅助设计和计算机辅助制造软件的进步改善了虚拟手术规划(VSP)在颅颌面外科中的转化应用,使切割导板、立体光刻模型和定制植入物的制作更加精确和准确。高分辨率计算机断层扫描(CT)成像一直是颅颌面外科 VSP 的黄金标准成像模式,但会产生电离辐射。黑骨磁共振成像(MRI)降低了与辐射相关的风险,与 CT 相比,它在 VSP 方面的功能相当。我们的研究小组已经研究了利用黑骨磁共振成像规划和实施几种颅颌面手术的准确性,包括颅顶重塑、上颌骨前移和使用腓骨进行下颌骨重建。在此,我们回顾了黑色骨磁共振成像在颅颌面外科手术中与 VSP 和三维(3D)打印导板创建相关的临床应用。在此,我们回顾了现有文献,并结合本机构的经验,比较了黑骨磁共振成像和 CT 在 VSP 生成的三维模型创建中在尸体颅颌面手术中的应用,包括颅顶重建、上颌骨前移和下颌骨重建与腓骨游离瓣。尸体研究表明,在进行颅顶重塑、上颌骨前移和下颌骨游离腓骨瓣重建时,可以根据黑色骨骼核磁共振成像数据执行 VSP 和手术,并取得与 CT 类似的效果。该技术的局限性包括:与 CT 相比,磁共振成像的时间和成本增加,而且在儿童群体中可能需要全身麻醉或镇静。在各种颅颌面重建中,使用黑骨核磁共振成像可进行 VSP 和三维手术导板创建,其精确度可与高分辨率 CT 扫描媲美。利用黑色骨磁共振成像成功分割、创建 VSP 和三维打印精确导板,显示了改变术前规划标准的潜力。黑骨磁共振成像还能减少电离辐射的暴露,这对儿童或接受多次扫描的患者尤为重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.10
自引率
5.00%
发文量
27
期刊介绍: Seminars in Plastic Surgery is a quarterly review journal that publishes topic-specific issues covering all areas of aesthetic and reconstructive plastic surgery. The journal''s scope includes issues devoted to breast reconstruction, rhinoplasty, lipogenesis and lipoplasty, craniomaxillofacial trauma, and all other major plastic surgery procedures. The journal also covers such emerging areas as free tissue transfer, lasers, endoscopic facial plastic procedures, as well as all the related technologies associated with these techniques.
期刊最新文献
Esthetics of Facial Reconstruction following Mohs Surgery. Eyelid Reconstruction. James F. Thornton, MD. Judging Surgical Quality in Facial Reconstruction. Lip Reconstruction.
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