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长期单侧耳聋患者听神经的扩散张量成像

Diffusion tensor imaging of the auditory nerve in patients with long-term single-sided deafness.

作者信息

Vos Sjoerd B, Haakma Wieke, Versnel Huib, Froeling Martijn, Speleman Lucienne, Dik Pieter, Viergever Max A, Leemans Alexander, Grolman Wilko

机构信息

Department of Otorhinolaryngology and Head & Neck Surgery, University Medical Center Utrecht, Utrecht, The Netherlands; Image Sciences Institute, University Medical Center Utrecht, Utrecht, The Netherlands; Brain Center Rudolf Magnus, University Medical Center Utrecht, Utrecht, The Netherlands.

Department of Radiology, University Medical Center Utrecht, Utrecht, The Netherlands; Department of Forensic Medicine & Comparative Medicine Lab, Aarhus University, Aarhus, Denmark.

出版信息

Hear Res. 2015 May;323:1-8. doi: 10.1016/j.heares.2015.01.010. Epub 2015 Feb 3.

Abstract

A cochlear implant (CI) can restore hearing in patients with profound sensorineural hearing loss by direct electrical stimulation of the auditory nerve. Therefore, the viability of the auditory nerve is vitally important in successful hearing recovery. However, the nerve typically degenerates following cochlear hair cell loss, and the amount of degeneration may considerably differ between the two ears, also in patients with bilateral deafness. A measure that reflects the nerve's condition would help to assess the best of both nerves and decide accordingly which ear should be implanted for optimal benefit from a CI. Diffusion tensor MRI (DTI) may provide such a measure, by allowing noninvasive investigations of the nerve's microstructure. In this pilot study, we show the first use of DTI to image the auditory nerve in five normal-hearing subjects and five patients with long-term profound single-sided sensorineural hearing loss. A specialized acquisition protocol was designed for a 3 T MRI scanner to image the small nerve bundle. The nerve was reconstructed using fiber tractography and DTI metrics - which reflect the nerve's microstructural properties - were computed per tract. Comparing DTI metrics from the deaf-sided with the healthy-sided nerves in patients showed no significant differences. There was a small but significant reduction in fractional anisotropy in both auditory nerves in patients compared with normal-hearing controls. These results are the first evidence of possible changes in the microstructure of the bilateral auditory nerves as a result of single-sided deafness. Our results also indicate that it is too early to assess the degenerative status of the auditory nerve of a subject-specific basis.

摘要

人工耳蜗(CI)可通过直接电刺激听神经来恢复重度感音神经性听力损失患者的听力。因此,听神经的活力对于听力成功恢复至关重要。然而,听神经通常会在耳蜗毛细胞丧失后发生退化,而且双耳之间的退化程度可能有很大差异,双侧耳聋患者也是如此。一种能够反映神经状况的测量方法将有助于评估双耳的状况,并据此决定应植入哪只耳朵,以便从人工耳蜗中获得最佳效果。扩散张量磁共振成像(DTI)或许可以提供这样一种测量方法,它能够对神经的微观结构进行无创性研究。在这项初步研究中,我们首次展示了利用DTI对5名听力正常的受试者和5名长期重度单侧感音神经性听力损失患者的听神经进行成像。为一台3T磁共振成像扫描仪设计了专门的采集方案,以对细小的神经束进行成像。利用纤维束成像技术重建神经,并计算每条神经束反映神经微观结构特性的DTI指标。对患者患侧与健侧神经的DTI指标进行比较,未发现显著差异。与听力正常的对照组相比,患者双耳的分数各向异性均有小幅但显著的降低。这些结果首次证明了单侧耳聋可能导致双侧听神经微观结构发生变化。我们的结果还表明,基于个体情况评估听神经的退化状态还为时过早。

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