Department of Neurosurgery, Jichi Medical University.
Neurol Med Chir (Tokyo). 2023 Apr 15;63(4):137-140. doi: 10.2176/jns-nmc.2022-0278. Epub 2023 Jan 20.
Stereotactic neurosurgery is an established technique, but it has several limitations. In frame-based stereotaxy using a stereotactic frame, frame setting errors may decrease the accuracy of the procedure. Frameless stereotaxy using neuronavigation requires surgeons to shift their view from the surgical field to the navigation display and to advance the needle while assuming a physically uncomfortable position. To overcome these limitations, several researchers have applied augmented reality in stereotactic neurosurgery. Augmented reality enables surgeons to visualize the information regarding the target and preplanned trajectory superimposed over the actual surgical field. In frame-based stereotaxy, a researcher applies tablet computer-based augmented reality to check for the setting errors of the stereotactic frame, thereby improving the safety of the procedure. Several researchers have reported performing frameless stereotaxy guided by head-mounted-display-based augmented reality that enables surgeons to advance the needle at a more natural posture. These studies have shown that augmented reality can address the limitations of stereotactic neurosurgery. Conversely, they have also revealed the limited accuracy of current augmented reality systems for small targets, which indicates that further development of augmented reality systems is needed.
立体定向神经外科是一种成熟的技术,但它有几个局限性。在使用立体定向框架的基于框架的立体定向中,框架设置错误可能会降低手术的准确性。使用神经导航的无框架立体定向要求外科医生将视线从手术区域转移到导航显示器,并在保持不舒适的身体姿势的情况下推进针头。为了克服这些局限性,一些研究人员将增强现实技术应用于立体定向神经外科。增强现实技术使外科医生能够在实际手术区域上可视化目标和预先规划的轨迹的相关信息。在基于框架的立体定向中,研究人员应用基于平板电脑的增强现实技术来检查立体定向框架的设置错误,从而提高手术的安全性。一些研究人员报告了使用基于头戴式显示器的增强现实技术进行无框架立体定向,使外科医生能够以更自然的姿势推进针头。这些研究表明,增强现实技术可以解决立体定向神经外科的局限性。相反,它们也揭示了当前增强现实系统对于小目标的有限准确性,这表明需要进一步开发增强现实系统。