量化角膜神经轮型。

IF 2.6 3区 医学 Q2 OPHTHALMOLOGY Translational Vision Science & Technology Pub Date : 2024-12-02 DOI:10.1167/tvst.13.12.11
Maryse Lapierre-Landry, Eric Y Lu, Matthew T McPheeters, Made Airanthi K Widjaja-Adhi, David L Wilson, Rony R Sayegh, Patricia R Taylor, Marcin Golczak, Michael W Jenkins
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引用次数: 0

摘要

目的:基底下神经丛(SBNP)内的角膜神经显示出一种独特的螺旋状结构,这种高度动态的结构可能是疾病的标志。先前的研究报道了糖尿病患者的全神经密度下降,这为糖尿病神经病变的无创监测提供了一条途径。然而,矛盾的结果已经报道,强调需要改进的定量分析角膜轮。我们提出了一种自动算法来表征螺旋形状和测试假设,即螺旋组织受到糖尿病神经病变的影响。方法:将SBNP螺旋作为矢量场进行分析,计算7个螺旋指标。在合成图像、离体小鼠角膜以及糖尿病患者和对照组的宽视场体内共聚焦显微镜(IVCM)图像的公开数据集中,证明了这些螺旋指标的有效性。采用线性判别分析和孔雀检验检验统计差异。我们的分析代码是免费提供的。结果:使用我们的螺旋指标,我们能够量化患者群体中不同的螺旋模式,并在统计上比较队列。我们确定患者的螺旋型倾向于双侧出现(P < 0.001),但糖尿病患者和对照组的螺旋型之间没有显著差异,有或没有神经病变症状的患者之间也没有显著差异。结论:我们提出了一个可推广的框架来统计比较患者队列中的角膜神经模式。翻译相关性:SBNP螺旋模式可以作为眼部疾病的非侵入性标志物,而迄今为止很少有定量的IVCM终点被确定。
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Quantifying the Corneal Nerve Whorl Pattern.

Purpose: The corneal nerves within the sub-basal nerve plexus (SBNP) display a distinctive whorl-like pattern, a highly dynamic structure that could be a marker of diseases. Previous studies have reported a decrease in whorl nerve density in patients with diabetes, indicating an avenue for noninvasive monitoring of diabetic neuropathy. However, conflicting results have since been reported, highlighting the need for improved quantitative analysis of the corneal whorl. We present an automated algorithm to characterize the whorl shape and test the hypothesis that the whorl organization is affected by diabetic neuropathy.

Methods: The SBNP whorl was analyzed as a vector field, from which seven whorl metrics were calculated. The efficacy of these whorl metrics was demonstrated in synthetic images, ex vivo mouse corneas, and in a publicly available dataset of wide-field in vivo confocal microscopy (IVCM) images of diabetic and control subjects. Linear discriminant analysis and the Peacock test were used to test for statistical differences. Our analysis code is made freely available.

Results: Using our whorl metrics, we were able to quantify different whorl patterns in our patient population and statistically compare cohorts. We determined that whorl patterns tend to present bilaterally in patients (P < 0.001), but there were no significant differences between whorl patterns in patients with diabetes and control subjects, nor between patients with or without neuropathy symptoms.

Conclusions: We present a generalizable framework to statistically compare corneal nerve patterns in cohorts of patients.

Translational relevance: SBNP whorl patterns could serve as a noninvasive marker for ocular diseases, whereas few quantitative IVCM endpoints have been identified to date.

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来源期刊
Translational Vision Science & Technology
Translational Vision Science & Technology Engineering-Biomedical Engineering
CiteScore
5.70
自引率
3.30%
发文量
346
审稿时长
25 weeks
期刊介绍: Translational Vision Science & Technology (TVST), an official journal of the Association for Research in Vision and Ophthalmology (ARVO), an international organization whose purpose is to advance research worldwide into understanding the visual system and preventing, treating and curing its disorders, is an online, open access, peer-reviewed journal emphasizing multidisciplinary research that bridges the gap between basic research and clinical care. A highly qualified and diverse group of Associate Editors and Editorial Board Members is led by Editor-in-Chief Marco Zarbin, MD, PhD, FARVO. The journal covers a broad spectrum of work, including but not limited to: Applications of stem cell technology for regenerative medicine, Development of new animal models of human diseases, Tissue bioengineering, Chemical engineering to improve virus-based gene delivery, Nanotechnology for drug delivery, Design and synthesis of artificial extracellular matrices, Development of a true microsurgical operating environment, Refining data analysis algorithms to improve in vivo imaging technology, Results of Phase 1 clinical trials, Reverse translational ("bedside to bench") research. TVST seeks manuscripts from scientists and clinicians with diverse backgrounds ranging from basic chemistry to ophthalmic surgery that will advance or change the way we understand and/or treat vision-threatening diseases. TVST encourages the use of color, multimedia, hyperlinks, program code and other digital enhancements.
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