Frankenthaler R P, Moharir V, Kikinis R, van Kipshagen P, Jolesz F, Umans C, Fried M P
Joint Center for Otolaryngology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Otolaryngol Clin North Am. 1998 Apr;31(2):383-92. doi: 10.1016/s0030-6665(05)70056-6.
Imaging techniques assist the surgeon in diagnosis of disease, surgical planning, and providing image guidance during surgery. Endoscopy has the drawback of being a minimally invasive procedure and limiting visualization to the inner surface of the lumen. Ultrasound, CT, and MR imaging show volumes of tissue beyond the lumen wall; however, their planar, two-dimensional representations require mental reconstruction of anatomic structures, which often proves difficult with the small, complex structures within the temporal bone. To improve three-dimensional visualization of the inner ear, we successfully completed a virtual model that can be displayed as a contiguous, three-dimensional luminal view, known as virtual otoscopy, which emulates traditional endoscopy. A concomitant global view and a view of the related CT slice adds a distinct advantage in the presentation and study of this complex organ. Advances in computer and software technology may overcome the time and cost factors that, at present, limit widespread use of virtual otoscopy. Overall, virtual otoscopy stands as a promising new visualization technique for elucidation of the middle ear, inner ear, and temporal bone structures.
成像技术有助于外科医生进行疾病诊断、手术规划以及在手术过程中提供图像引导。内窥镜检查的缺点是属于微创手术,且只能观察管腔的内表面。超声、CT和磁共振成像可显示管腔壁以外的组织体积;然而,它们的平面二维图像需要对解剖结构进行心理重建,对于颞骨内小而复杂的结构来说,这往往很困难。为了改善内耳的三维可视化,我们成功构建了一个虚拟模型,该模型可以显示为连续的三维管腔视图,即虚拟耳镜检查,它模拟了传统的内窥镜检查。同时提供的全局视图和相关CT切片视图在展示和研究这个复杂器官方面具有明显优势。计算机和软件技术的进步可能会克服目前限制虚拟耳镜检查广泛应用的时间和成本因素。总体而言,虚拟耳镜检查是一种很有前景的新可视化技术,可用于阐明中耳、内耳和颞骨结构。