内耳结构正常的先天性感音神经性聋患儿耳蜗测量与分析

许章云, 刘文龙, 曾清香, 等. 内耳结构正常的先天性感音神经性聋患儿耳蜗测量与分析[J]. 临床耳鼻咽喉头颈外科杂志, 2018, 32(17): 1316-1318,1324. doi: 10.13201/j.issn.1001-1781.2018.17.006
引用本文: 许章云, 刘文龙, 曾清香, 等. 内耳结构正常的先天性感音神经性聋患儿耳蜗测量与分析[J]. 临床耳鼻咽喉头颈外科杂志, 2018, 32(17): 1316-1318,1324. doi: 10.13201/j.issn.1001-1781.2018.17.006
XU Zhangyun, LIU Wenlong, ZENG Qingxiang, et al. Measurement and analysis of cochlea in children with congenital sensorineural hearing loss with normal inner ear structure[J]. J Clin Otorhinolaryngol Head Neck Surg, 2018, 32(17): 1316-1318,1324. doi: 10.13201/j.issn.1001-1781.2018.17.006
Citation: XU Zhangyun, LIU Wenlong, ZENG Qingxiang, et al. Measurement and analysis of cochlea in children with congenital sensorineural hearing loss with normal inner ear structure[J]. J Clin Otorhinolaryngol Head Neck Surg, 2018, 32(17): 1316-1318,1324. doi: 10.13201/j.issn.1001-1781.2018.17.006

内耳结构正常的先天性感音神经性聋患儿耳蜗测量与分析

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    通讯作者: 罗仁忠,E-mail:luorenzhong@126.com
  • 中图分类号: R764.43

Measurement and analysis of cochlea in children with congenital sensorineural hearing loss with normal inner ear structure

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  • 目的:通过颞骨高分辨CT(HRCT)成像技术对内耳结构正常的先天性感音神经性聋患儿的耳蜗进行测量并分析,并探讨其在人工耳蜗植入术前评估以及选择合适的电极中的应用价值。方法:收集符合入组标准的120例先天性感音神经性聋患儿的颞骨HRCT图像,根据性别分为2组,其中男60例,女60例,用PACS软件测量耳蜗长径A(圆窗龛中心到骨外侧壁的最大距离),高度H(蜗轴高度),并计算耳蜗管长度,对数据进行可重复性评价、组间比较。结果:各组测量值在不同测量者间有较好的一致性,男性患儿的耳蜗长径为(8.55±0.31)mm,高径为(4.57±0.28)mm,耳蜗长度为(27.59±1.23)mm;女性患儿耳蜗长径为(8.45±0.32)mm,高径为(4.42±0.34)mm,耳蜗长度为(27.20±1.17)mm。男性患儿的耳蜗长径、高径、蜗管较女性长,差异有统计学意义(P<0.05)。结论:测量耳蜗的长径、高度以及计算耳蜗管的长度,可选择合适长度的电极或者定制个性化电极,是人工耳蜗植入术前的一种简单有效的评估方法。
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  • [1]

    第二次全国残疾人抽样调查领导小组.2006年第二次全国残疾人抽样调查主要数据公报[J].中国康复理论与实践, 2006, 12(12):1013-1013.

    [2]

    FRYAUFBERTSCHY H, TYLER R S, KELSAY D M.Cochlear implant use by prelingually deafened children:the influences of age at implant and length of device use[J].J Speech Lang Hear Res, 1997, 40:183-199.

    [3]

    罗仁忠, 温瑞金, 麦坚凝.等.听性脑干反应严重异常和耳声发射正常的小儿听力障碍的临床特征分析[J].中华耳鼻咽喉头颈外科杂志, 2004, 39(11):648-653.

    [4]

    KANDOGAN T, DALGIC A.Reliability of Auditory Steady-State Response (ASSR):comparing thresholds of auditory steady-state response (ASSR) with auditory brainstem response (ABR) in children with severe hearing loss[J].Indian J Otolaryngol Head Neck Surg, 2013, 65:604-607.

    [5]

    孔维佳, 周梁.耳鼻咽喉头颈外科学[M].北京:人民卫生出版社, 2015:90-92.

    [6]

    田勇泉.耳鼻咽喉头颈外科学[M].北京:人民卫生出版社, 2013:302-303.

    [7]

    KOCH R W, LADAK H M, ELFARNAWANY M, et al.Measuring Cochlear Duct Length-a historical analysis of methods and results[J].J Otolaryngol Head Neck Surg, 2017, 46:19-21.

    [8]

    CONNOR S E, BELL D J, O'GORMAN R.CT and MR imaging cochlear distance measurements may predict cochlear implant length required for a 360degrees insertion[J].AJNR Am J Neuroradiol, 2009, 30:1425-1430.

    [9]

    ESCUDÉB, JAMES C, DEGUINE O, et al.The size of the cochlea and predictions of insertion depth angles for cochlear implant electrodes[J].Audiol Neurootol, 2006, 11:27-33.

    [10]

    SATO H, SANDO I, TAKAHASHI H.Sexual dimorphism and development of the human cochlea:Computer 3-D measurement[J].Acta Otolaryngol, 1991, 111:1037-1040.

    [11]

    ERIXON E, HÖGSTORP H, WADIN K, et al.Variational anatomy of the human cochlea:implications for cochlear implantation[J].Otol Neurotol, 2009, 30:14-22.

    [12]

    吴佩娜, 曾辉, 葛润梅, 等.人耳蜗长度的CT及显微解剖测量的初步研究[J].中国眼耳鼻喉科杂志, 2004, 4(5):300-301.

    [13]

    FARKAS L G, POSNICK J C, HRECZKO T M.Anthropometric growth study of the head[J].Cleft Palate Craniofac J, 1992, 29:303-308.

    [14]

    MCRACKAN T R, REDA F A, RIVAS A.Comparison of cochlear implant relevant anatomy in children versus adults[J].Otol Neurotol, 2012, 33:328-334.

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收稿日期:  2018-07-04

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