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Dual optical channel three-dimensional neuroendoscopy: Clinical application as an assistive technique in endoscopic endonasal surgery

机译:双光通道三维神经内镜:作为内窥镜鼻内科手术辅助技术的临床应用

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Three-dimensional (3D) high-definition endoscopy is an innovative technical advancement that helps surgeons gain precise depth perception and spatial recognition during endoscopic surgery. Here, we describe a new dual optical channel 3D neuroendoscopic technique and its clinical application. We performed endoscopic endonasal surgery on 88 patients using 3D and two-dimensional (2D) endoscopes in conjunction. We evaluated the usefulness of stereoscopic images acquired by dual optical channel 3D endoscopy during endoscopic surgery and compared the image resolution between dual optical channel 3D endoscopy and 2D endoscopy. Additionally, we compared the stereoscopic images acquired by dual optical channel and Visionsense 3D endoscopy in three cases. Combination surgery using 3D and 2D endoscopy was found to be safe. Stereoscopic images were useful in several surgical steps, especially in recognition of complex bony structures, bone drilling, and suprasellar manipulation. The magnitude of binocular disparity was greater in dual optical channel 3D endoscopy than in Visionsense 3D endoscopy. Stereoscopic images acquired by dual optical channel 3D neuroendoscopy were of adequate quality and were useful for endoscopic endonasal surgery. In consideration of its lower image resolution compared to that of 2D high-definition endoscopy, dual optical channel 3D neuroendoscopy can be applied as an assistive technique in endoscopic endonasal surgery. The magnitude of binocular disparity is one of the key factors to be considered for evaluation of the clinical significance of 3D endoscopy. Highlights ? Efficacy of three-dimensional (3D) endoscopy for evaluation of ventral skull base pathology has been reported in several studies, in addition to being recently reviewed in World Neurosurgery (Zaidi et al., 86:419-413, 2016). ? The clinical significance of 3D endoscopy is conventionally discussed with the assumption that the stereoscopic effect is constant among various 3D techniques. ? However, we would like to stress that the stereoscopic effect varies according to the integrated 3D technology, which can affect the surgical performance of 3D endoscopy. ? In the present study, we report our clinical experience of dual optical channel 3D high-definition neuroendoscopy and discuss its clinical significance. ? In addition, we review how depth perception is obtained during endoscopic surgery to gain a better understanding of the efficacy of 3D endoscopic surgery, which has rarely been discussed in studies involving 3D endoscopic endonasal surgery.
机译:三维(3D)高清内窥镜是一项创新的技术进步,可帮助外科医生在内窥镜手术中获得精确的深度感知和空间识别。在这里,我们描述了一种新的双光通道3D神经内窥镜技术及其临床应用。我们结合3D和二维(2D)内窥镜对88例患者进行了内窥镜鼻腔手术。我们评估了在内窥镜手术期间通过双光通道3D内窥镜获取的立体图像的有用性,并比较了双光通道3D内窥镜和2D内窥镜之间的图像分辨率。此外,我们在三种情况下比较了通过双光学通道和Visionsense 3D内窥镜获得的立体图像。发现使用3D和2D内窥镜进行联合手术是安全的。立体图像在几个外科手术步骤中很有用,尤其是在识别复杂的骨结构,骨钻和鞍骨上操作时。在双光学通道3D内窥镜中,双眼视差的幅度大于在Visionsense 3D内窥镜中。通过双光通道3D神经内窥镜获取的立体图像质量足够,可用于内窥镜鼻内手术。考虑到与2D高清晰度内窥镜相比其图像分辨率较低,可以将双光通道3D神经内窥镜作为内窥镜鼻内窥镜手术的辅助技术。双眼视差的大小是评估3D内窥镜检查的临床意义时应考虑的关键因素之一。强调 ?三维(3D)内窥镜评估腹侧颅底病理的功效已在几项研究中报道,此外最近在《世界神经外科杂志》(Zaidi et al。,86:419-413,2016)中对此进行了评论。 ?常规地,在各种3D技术中立体效果恒定的假设下讨论3D内窥镜的临床意义。 ?但是,我们要强调的是,立体效果会根据集成的3D技术而有所不同,这会影响3D内窥镜的手术性能。 ?在本研究中,我们报告了我们的双光通道3D高清神经内窥镜检查的临床经验,并讨论了其临床意义。 ?此外,我们回顾了在内窥镜手术期间如何获得深度感知,以更好地理解3D内窥镜手术的功效,这在涉及3D内窥镜鼻内窥镜手术的研究中很少讨论。

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