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Short Term Reproducibility of a High Contrast 3-D Isotropic Optic Nerve Imaging Sequence in Healthy Controls

机译:健康对照中高对比度3-D各向同性视神经成像序列的短期可重复性

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摘要

The optic nerve (ON) plays a crucial role in human vision transporting all visual information from the retina to the brain for higher order processing. There are many diseases that affect the ON structure such as optic neuritis, anterior ischemic optic neuropathy and multiple sclerosis. Because the ON is the sole pathway for visual information from the retina to areas of higher level processing, measures of ON damage have been shown to correlate well with visual deficits. Increased intracranial pressure has been shown to correlate with the size of the cerebrospinal fluid (CSF) surrounding the ON. These measures are generally taken at an arbitrary point along the nerve and do not account for changes along the length of the ON. We propose a high contrast and high-resolution 3-D acquired isotropic imaging sequence optimized for ON imaging. We have acquired scan-rescan data using the optimized sequence and a current standard of care protocol for 10 subjects. We show that this sequence has superior contrast-to-noise ratio to the current standard of care while achieving a factor of 11 higher resolution. We apply a previously published automatic pipeline to segment the ON and CSF sheath and measure the size of each individually. We show that these measures of ON size have lower short-term reproducibility than the population variance and the variability along the length of the nerve. We find that the proposed imaging protocol is (1) useful in detecting population differences and local changes and (2) a promising tool for investigating biomarkers related to structural changes of the ON.
机译:视神经(ON)在人类视觉中起着至关重要的作用,它将所有视觉信息从视网膜传输到大脑以进行更高阶的处理。有许多影响ON结构的疾病,例如视神经炎,前部缺血性视神经病变和多发性硬化症。由于ON是从视网膜到更高级别处理区域的视觉信息的唯一途径,因此ON损伤的度量与视觉缺陷密切相关。颅内压升高已显示与ON周围的脑脊液(CSF)大小相关。这些措施通常是沿着神经的任意位置进行的,并不考虑ON长度的变化。我们提出了针对ON成像优化的高对比度和高分辨率3-D采集的各向同性成像序列。我们已经使用优化的顺序和当前10位受试者的护理协议标准来获取扫描-再扫描数据。我们表明,该序列具有比当前护理标准更高的对比度-噪声比,同时实现了11倍的高分辨率。我们应用以前发布的自动管道对ON和CSF护套进行分段,并分别测量每个管道的尺寸。我们显示,这些ON大小的度量比总体变异和沿神经长度的变异具有较低的短期可重复性。我们发现拟议的成像协议是(1)可用于检测人口差异和局部变化,以及(2)一种有前途的工具,用于研究与ON结构变化有关的生物标记。

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