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Assessing Cochlear Length Using Cone Beam Computed Tomography in Adults With Cochlear Implants

机译:使用耳蜗植入物在成人中使用锥形光束计算断层扫描的耳蜗长度

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摘要

Developing a clinically viable technique for measuring cochlear length could enhance future electrode design of cochlear implants and surgical skills to improve clinical outcomes. While computed tomography (CT) has been used, metal artifact and the exposure to higher levels of radiation limits its use. More recently, cone beam CT (CBCT) has been used to assess the integrity of the implant array in situ, exposing implantees to lower levels of radiation while retaining image quality. The current study aims to develop a technique for measuring cochlear length in implanted adults, using CBCT images combined with known dimensions of implant arrays and lengths of cochlear structures from cadaveric human temporal bones.Study Design:One hundred CBCT temporal bone images of ears implanted with Cochlear straight or perimodiolar arrays were reviewed by two independent examiners.Results:Outer-wall length, based on the position of the straight array within the cochlea and the reported average length of the organ of Corti, was 27.44 to 35.91mm (mean=32.24mm). Inner-wall length, based on the position of the perimodiolar array and the reported average length of the spiral ganglion, ranged from 17.8 to 22.24mm (mean=19.43mm).Conclusion:A novel method for calculating outer- and inner-wall cochlear length using CBCT images has been developed which is feasible in clinical settings.
机译:开发用于测量耳蜗长度的临床可行技术可以增强Cochlear植入物的未来电极设计和外科技能,以改善临床结果。虽然已经使用了计算的断层扫描(CT),但金属伪像和暴露于更高水平的辐射限制了其使用。最近,锥形光束CT(CBCT)已经用于评估植入物阵列的完整性,在挡住图像质量的同时将植入物暴露于较低水平的辐射。目前的研究旨在开发一种用于测量植入成人的耳蜗长度的技术,使用CBCT图像与来自尸体人颞骨的植入物阵列的已知尺寸和长度的耳蜗结构组合。研究:植入耳朵的一百CBCT颞骨图像通过两个独立的考官审查了耳蜗直或周天罗马拉阵列。结果:外壁长度,基于耳蜗内的直线阵列的位置和Corti器官的报告的平均长度,为27.44至35.91mm(平均值= 32.24毫米)。基于周边壁的长度和螺旋神经节的报告的平均长度,范围为17.8至22.24mm(平均值= 19.43mm)。结论:一种计算外壁和内壁耳蜗的新方法已经开发了使用CBCT图像的长度在临床环境中是可行的。

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