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An Optimized Approach to Perform Bone Histomorphometry

机译:一种进行骨组织形态计量学的优化方法

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摘要

Bone histomorphometry allows quantitative evaluation of bone micro-architecture, bone formation, and bone remodeling by providing an insight to cellular changes. Histomorphometry plays an important role in monitoring changes in bone properties because of systemic skeletal diseases like osteoporosis and osteomalacia. Besides, quantitative evaluation plays an important role in fracture healing studies to explore the effect of biomaterial or drug treatment. However, until today, to our knowledge, bone histomorphometry remain time-consuming and expensive. This incited us to set up an open-source freely available semi-automated solution to measure parameters like trabecular area, osteoid area, trabecular thickness, and osteoclast activity. Here in this study, the authors present the adaptation of Trainable Weka Segmentation plugin of ImageJ to allow fast evaluation of bone parameters (trabecular area, osteoid area) to diagnose bone related diseases. Also, ImageJ toolbox and plugins (BoneJ) were adapted to measure osteoclast activity, trabecular thickness, and trabecular separation. The optimized two different scripts are based on ImageJ, by providing simple user-interface and easy accessibility for biologists and clinicians. The scripts developed for bone histomorphometry can be optimized globally for other histological samples. The showed scripts will benefit the scientific community in histological evaluation.
机译:骨组织形态计量学可以通过洞察细胞变化来定量评估骨微结构,骨形成和骨重塑。由于骨质疏松和骨软化症等全身性骨骼疾病,组织形态计量学在监测骨质变化方面起着重要作用。此外,定量评估在骨折愈合研究中探索生物材料或药物治疗的作用也起着重要作用。然而,直到今天,据我们所知,骨组织形态测量仍然是耗时且昂贵的。这促使我们建立了一个开放源代码的免费可用的半自动化解决方案,以测量诸如小梁面积,类骨质面积,小梁厚度和破骨细胞活性等参数。在此研究中,作者介绍了ImageJ的Trainable Weka Segmentation插件的改编,以允许快速评估骨骼参数(小梁区域,类骨质区域)以诊断与骨相关的疾病。同样,ImageJ工具箱和插件(BoneJ)也适用于测量破骨细胞活性,小梁厚度和小梁分离。通过为生物学家和临床医生提供简单的用户界面和易于访问的功能,优化的两个不同脚本基于ImageJ。为骨骼组织形态计量学开发的脚本可以针对其他组织学样本进行全局优化。所显示的脚本将有助于科学界进行组织学评估。

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