颅面部手术的术中导航。

Q2 Medicine
Archives of Craniofacial Surgery Pub Date : 2024-10-01 Epub Date: 2024-10-20 DOI:10.7181/acfs.2024.00472
Dong Hee Kang
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引用次数: 0

摘要

颅颌面手术需要全面的头颈部解剖知识,以确保患者安全和手术精确度。近几十年来,成像技术和实时手术导航系统的发展突飞猛进。术中导航技术使手术器械与患者解剖结构的成像信息保持一致,使外科医生能够严格按照术前计划进行手术。该系统就像一张放射地图,提高了器械放置的准确性,最大限度地减少了手术并发症。20 世纪 90 年代初,第一代导航系统问世,利用术前成像对器械进行实时跟踪,彻底改变了外科手术。术中导航系统最初用于神经外科,后来成为耳鼻喉科、颅颌面外科和骨科的标准做法。自 2000 年代以来,第二代导航系统应运而生,以满足各外科专科对精确度日益增长的需求。这些系统在颅颌面外科的应用较慢,但其使用量正在增加,尤其是在异物取出、面部骨折重建、肿瘤切除、颅颌面重建和植入等手术中。在韩国,颅面外科手术导航的保险覆盖范围从 2021 年开始,用于眶壁骨折治疗的新医疗技术也于 2022 年 8 月获得批准。这些技术最近才开始应用于临床,但预计将在颅面外科中发挥越来越重要的作用。术中导航增强了手术洞察力,改善了目标定位,提高了手术安全性。虽然这些系统的学习曲线比较陡峭,最初会延长手术时间,但随着经验的积累,效率会有所提高。校准问题、注册错误和软组织变形都会造成误差。尽管如此,导航技术仍在不断发展,术中计算机断层扫描数据的整合有望进一步提高手术的准确性。本文讨论了颅颌面手术中使用的各种导航类型和应用,重点介绍了它们的优点和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intraoperative navigation in craniofacial surgery.

Craniofacial surgery requires comprehensive anatomical knowledge of the head and neck to ensure patient safety and surgical precision. Over recent decades, there have been significant advancements in imaging techniques and the development of real-time surgical navigation systems. Intraoperative navigation technology aligns surgical instruments with imaging-derived information on patient anatomy, enabling surgeons to closely follow preoperative plans. This system functions as a radiologic map, improving the accuracy of instrument placement and minimizing surgical complications. The introduction of first-generation navigation systems in the early 1990s revolutionized surgical procedures by enabling real-time tracking of instruments using preoperative imaging. Initially utilized in neurosurgery, intraoperative navigation has since become standard practice in otolaryngology, cranio-maxillofacial surgery, and orthopedics. Since the 2000s, second-generation navigation systems have been developed to meet the growing demand for precision across various surgical specialties. The adoption of these systems in craniofacial surgery has been slower, but their use is increasing, particularly in procedures such as foreign body removal, facial bone fracture reconstruction, tumor resection, and craniofacial reconstruction and implantation. In Korea, insurance coverage for navigation in craniofacial surgery began in 2021, and new medical technologies for orbital wall fracture treatment were approved in August 2022. These technologies have only recently become clinically available, but are expected to play an increasingly important role in craniofacial surgery. Intraoperative navigation enhances operative insight, improves target localization, and increases surgical safety. Although these systems have a steep learning curve and initially prolong surgery, efficiency improves with experience. Calibration issues, registration errors, and soft tissue deformation can introduce inaccuracies. Nonetheless, navigation technology is evolving, and the integration of intraoperative computed tomography data holds promise for further enhancements of surgical accuracy. This paper discusses the various types and applications of navigation employed in craniofacial surgery, highlighting their benefits and limitations.

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来源期刊
Archives of Craniofacial Surgery
Archives of Craniofacial Surgery Medicine-Otorhinolaryngology
CiteScore
2.90
自引率
0.00%
发文量
44
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