Grover Mohnish, Sharma Shitanshu, Singh Shashank Nath, Kataria Tanmaya, Lakhawat Rajendra Singh, Sharma Man Prakash
Department of Otorhinolaryngology and Head Neck Surgery, SMS Medical College and Hospital, Jaipur, Rajasthan, 302004, India.
Eur Arch Otorhinolaryngol. 2018 Mar;275(3):725-728. doi: 10.1007/s00405-018-4868-9. Epub 2018 Jan 13.
The anatomy of the cochlea forms the basis for a successful cochlear implantation. Cochlear duct length (CDL) is defined as the length of the scala media as measured from the middle of the round window to helicotrema. Preoperative measurement of CDL is particularly important when precise intracochlear electrode array placement is desired. It can be done both histologically and radiologically. Preoperative high-resolution computed tomography (HRCT) scan which forms an integral part of cochlear implant workup is a useful tool to calculate CDL using 3D reconstructions.
This study was done in SMS Medical College and Hospital, Jaipur, India, which is a tertiary care hospital and referral centre for cochlear implants. HRCT temporal bones of all children less than 6 years of age, with congenital bilateral severe-to-profound SNHL who were being worked up for cochlear implant were studied and analysed. 124 patients (56 females and 68 males) with hearing loss were evaluated for cochlear implantation. HRCT temporal bone of these patients was analysed and a variable A was measured which is defined as the linear measurement from the round window to the farthest point on the opposite wall of the cochlea on a reformatted CT scan slice.
Mean of distance A for right ear of these patients was 8.10 mm (range 7.7-9.2 mm). Mean for the same in left ear of these patients was 8.14 mm (range 7.7-9.0 mm), giving an overall average of 8.12 mm. Using the formula, CDL = 4.16A-3.98, we calculated the length of cochlear duct. Mean cochlear duct length was 29.8 mm with a range from 28 to 34.3 mm.
To the best of our knowledge, this is the first large sample study of cochlear length in population of this part of the world. A smaller cochlear length in this part of the world as compared to the Caucasian cochlear duct is a significant finding in understanding of the cochlear anatomy and physiology. It would also have great implications on the insertion depth in cochlear implantation.
耳蜗的解剖结构是成功进行人工耳蜗植入的基础。耳蜗管长度(CDL)定义为从中耳圆窗中点至蜗孔测量的中阶长度。当期望精确地将耳蜗内电极阵列放置到位时,术前测量CDL尤为重要。它可以通过组织学和放射学方法来完成。术前高分辨率计算机断层扫描(HRCT)是人工耳蜗术前评估的一个组成部分,是使用三维重建计算CDL的有用工具。
本研究在印度斋浦尔的SMS医学院及医院进行,该医院是一家三级护理医院及人工耳蜗植入转诊中心。对所有6岁以下、患有先天性双侧重度至极重度感音神经性听力损失且正在接受人工耳蜗植入评估的儿童的颞骨HRCT进行了研究和分析。对124例(56例女性和68例男性)听力损失患者进行了人工耳蜗植入评估。分析了这些患者的颞骨HRCT,并测量了变量A,变量A定义为在重新格式化的CT扫描切片上从圆窗到耳蜗对侧壁上最远点的线性测量值。
这些患者右耳的距离A平均值为8.10毫米(范围为7.7 - 9.2毫米)。左耳的该平均值为8.14毫米(范围为7.7 - 9.0毫米),总体平均为8.12毫米。使用公式CDL = 4.1……此处原文公式不完整,推测为CDL = 4.16A - 3.98,我们计算了耳蜗管的长度。耳蜗管平均长度为29.8毫米,范围为28至34.3毫米。
据我们所知,这是世界该地区人群耳蜗长度的首个大样本研究。与白种人的耳蜗管相比,世界该地区耳蜗长度较小,这在理解耳蜗解剖学和生理学方面是一个重要发现。它对人工耳蜗植入的插入深度也将有重大影响。