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首页> 外文期刊>Otology and neurotology: official publication of the American Otological Society, American Neurotology Society [and] European Academy of Otology and Neurotology >Human Cochlear Nucleus on 7 Tesla Diffusion Tensor Imaging: Insights Into Micro-anatomy and Function for Auditory Brainstem Implant Surgery
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Human Cochlear Nucleus on 7 Tesla Diffusion Tensor Imaging: Insights Into Micro-anatomy and Function for Auditory Brainstem Implant Surgery

机译:7特斯拉扩散张量成像的人工耳核:对听觉脑干植入手术进行微观解剖学和功能的见解

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摘要

Objective:The cochlear nucleus (CN) is the target of the auditory brainstem implant (ABI). Most ABI candidates have Neurofibromatosis Type 2 (NF2) and distorted brainstem anatomy from bilateral vestibular schwannomas. The CN is difficult to characterize as routine structural MRI does not resolve detailed anatomy. We hypothesize that diffusion tensor imaging (DTI) enables both in vivo localization and quantitative measurements of CN morphology.Study Design:We analyzed 7 Tesla (T) DTI images of 100 subjects (200 CN) and relevant anatomic structures using an MRI brainstem atlas with submillimetric (50 mu m) resolution.Setting:Tertiary referral center.Patients:Young healthy normal hearing adults.Intervention:Diagnostic.Main Outcome Measures:Diffusion scalar measures such as fractional anisotropy (FA), mean diffusivity (MD), mode of anisotropy (Mode), principal eigenvectors of the CN, and the adjacent inferior cerebellar peduncle (ICP).Results:The CN had a lamellar structure and ventral-dorsal fiber orientation and could be localized lateral to the inferior cerebellar peduncle (ICP). This fiber orientation was orthogonal to tracts of the adjacent ICP where the fibers run mainly caudal-rostrally. The CN had lower FA compared to the medial aspect of the ICP (0.440.09 vs. 0.64 +/- 0.08, p<0.001).Conclusions:7T DTI enables characterization of human CN morphology and neuronal substructure. An ABI array insertion vector directed more caudally would better correspond to the main fiber axis of CN. State-of-the-art DTI has implications for ABI preoperative planning and future image guidance-assisted placement of the electrode array.
机译:目的:耳蜗核(CN)是听觉脑干植入物(ABI)的靶标。大多数ABI候选者具有2型(NF2)的神经纤维瘤病,以及来自双侧前庭施瓦莫玛的畸变脑干解剖学。 CN难以表征,因为常规结构MRI无法解决详细的解剖学。我们假设扩散张量成像(DTI)能够体内定位和CN形态的定量测量。研究:使用MRI脑干地图集,分析了100个受试者(200CN)的7个TesLA(T)DTI图像和相关的解剖结构Subsillimetric(50 mu m)分辨率。诱缝:第三次推荐中心.Patiants:年轻健康的正常听力成人。Intervention:诊断时间结果措施:扩散标量措施,如分数各向异性(FA),平均扩散性(MD),各向异性模式(模式),CN的主要特征向量,以及相邻的下小脑梗死(ICP)。结果:CN具有层状结构和腹部背纤维取向,并且可以局部横向于下小脑梗死(ICP)。这种纤维取向与相邻的ICP的椎间晶体正交,纤维主要在尾部流动。与ICP的内侧方面相比,CN具有较低的FA(0.440.09与0.64 +/- 0.08,P <0.001)。结论:7T DTI能够表征人CN形态和神经元子结构。指向的ABI阵列插入载体更透明地将更好地对应于CN的主纤维轴。最先进的DTI对ABI术前规划和未来图像引导辅助放置具有对电极阵列的影响。

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