UCL Institute of Ophthalmology, London, EC1V 9EL, UK.
Division of Brain Sciences, Department of Medicine, Imperial College, London, UK.
Sci Rep. 2022 Feb 2;12(1):1806. doi: 10.1038/s41598-022-05815-6.
The resident macrophages of the central nervous system, microglia, are becoming increasingly implicated as active participants in neuropathology and ageing. Their diverse and changeable morphology is tightly linked with functions they perform, enabling assessment of their activity through image analysis. To better understand the contributions of microglia in health, senescence, and disease, it is necessary to measure morphology with both speed and reliability. A machine learning approach was developed to facilitate automatic classification of images of retinal microglial cells as one of five morphotypes, using a support vector machine (SVM). The area under the receiver operating characteristic curve for this SVM was between 0.99 and 1, indicating strong performance. The densities of the different microglial morphologies were automatically assessed (using the SVM) within wholemount retinal images. Retinas used in the study were sourced from 28 healthy C57/BL6 mice split over three age points (2, 6, and 28-months). The prevalence of 'activated' microglial morphology was significantly higher at 6- and 28-months compared to 2-months (p < .05 and p < .01 respectively), and 'rod' significantly higher at 6-months than 28-months (p < 0.01). The results of the present study propose a robust cell classification SVM, and further evidence of the dynamic role microglia play in ageing.
中枢神经系统的常驻巨噬细胞,小胶质细胞,越来越被认为是神经病理学和衰老的积极参与者。它们多样且多变的形态与其执行的功能紧密相关,通过图像分析可以评估它们的活性。为了更好地理解小胶质细胞在健康、衰老和疾病中的作用,有必要快速、可靠地测量其形态。本研究开发了一种机器学习方法,使用支持向量机 (SVM) 自动对视网膜小胶质细胞图像进行分类,分为五种形态类型之一。该 SVM 的接收者操作特征曲线下面积在 0.99 到 1 之间,表明性能很强。使用 SVM 对全视网膜图像中的不同小胶质细胞形态的密度进行了自动评估。本研究使用的视网膜来自 28 只健康的 C57/BL6 小鼠,分为三个年龄点(2、6 和 28 个月)。与 2 个月相比,6 个月和 28 个月时“激活”小胶质细胞形态的患病率明显更高(分别为 p<0.05 和 p<0.01),而 6 个月时“杆状”小胶质细胞形态的患病率明显高于 28 个月(p<0.01)。本研究的结果提出了一种稳健的细胞分类 SVM,并进一步证明了小胶质细胞在衰老过程中发挥的动态作用。