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首页> 外文期刊>International Archives of Otorhinolaryngology >Radiographic Measurement of Cochlear Duct Length in an Indian Cadaveric Population - Importance of Custom Fit Cochlear Implant Electrodes
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Radiographic Measurement of Cochlear Duct Length in an Indian Cadaveric Population - Importance of Custom Fit Cochlear Implant Electrodes

机译:印度尸体群体耳蜗管长的射线照相测量 - 定制坐限性耳蜗植入电极的重要性

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Introduction Successful cochlear implantation requires an appropriate insertion depth of the electrode, which depends on cochlear duct length CDL). The CDL can vary due to ethnic factors. Objective The objective of the current study was to determine the CDL in an Indian adult cadaveric population. Methods The present was a cadaveric study using the temporal bones obtained after permission of the Institutional Review Board. The temporal bones were subjected to high-resolution computed tomography (HRCT), and the double oblique reformatted CT images were reconstructed through the basal turn of the cochlea. The reformatted images were then viewed in the minimum-intensity projection (minIP) mode, and the ‘A’ value (the diameter of the basal turn of the cochlea) was calculated. The CDL was then measured using the formula CDL = 4.16A - 4 (Alexiades et al). The data analysis was performed using the Microsoft Excel software, version 2016. Results A total of 51 temporal bones were included for imaging analysis. The CDL varied from 27.6 mm to 33.4 mm, with a mean length of 30.7 mm. There was no statistically significant difference between the two sides. Conclusion The CDL can be calculated with preoperative high-resolution CT, and can provide a roadmap for effective cochlear implant electrode insertion. The population-based anatomical variability needs to be taken into account to offer the most efficient and least traumatic insertion of the electrode.
机译:引言成功的耳蜗植入需要电极的适当插入深度,这取决于耳蜗管长度CD1)。 CDL可能因种族因素而有所不同。目的目前的研究目的是确定印度成人尸体群中的CDL。方法目前是使用制度审查委员会许可获得的时间骨骼进行尸体研究。临时骨骼经受高分辨率计算断层扫描(HRCT),通过耳蜗的基础转动重建双倾斜重新格式化CT图像。然后在最小强度投影(小型)模式中观察重新格式的图像,并计算'a'值(柯克群的基础转弯的直径)。然后使用式CDL = 4.16a-4(Alexiades等)测量CDL。使用Microsoft Excel软件,2016年版本进行数据分析。结果总共包括51个时间骨骼进行成像分析。 CDL从27.6mm到33.4 mm变化,平均长度为30.7mm。双方没有统计学上有显着差异。结论CDL可以用术前高分辨率CT计算,并且可以提供用于有效耳蜗植入电极插入的路线图。需要考虑基于人口的解剖学可变性,以提供最有效且最低创伤的电极插入。

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