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Application of the active shape model in a commercial medical device for bone densitometry

机译:活动形状模型在用于骨密度测定的商用医疗设备中的应用

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Osteoporosis is a common disorder characterised mainly by low bone mineral density (BMD), and leading to an increased risk of fracture. We have developed a new device that estimates BMD from ordinary hand radiographs. A crucial element of this method is the reconstruction of the metacarpals. This paper describes how this was solved using the active shape model (ASM). Standard ASM is unable to locate the metacarpal shafts in the direction along the bones. Therefore ASM was extended with a translation operator, which solved the problem. A hierarchical filtering method was used to construct a sufficient list of initial guesses for the ASM. The performance of ASM and the experience with the integration of ASM in a commercial medical device is reported. The ASM achieves 99.5% reconstruction success and is able to validate its own reconstruction in 97% of the cases. The system (Pronosco X-posure system, version 2.0) has been approved by the FDA, and more than 100 units have been sold. The concept of the translation operator is generalised to the more active shape model (MASM), which also allows a natural integration with the active appearance model.
机译:骨质疏松是一种常见的疾病,其主要特征是骨密度低(BMD),导致骨折的风险增加。我们开发了一种新设备,可根据普通的手部X线照片估算BMD。该方法的关键要素是掌骨的重建。本文介绍了如何使用主动形状模型(ASM)解决此问题。标准ASM无法沿骨骼方向定位掌骨干。因此,使用翻译运算符扩展了ASM,从而解决了该问题。分层过滤方法用于为ASM构造足够的初始猜测列表。报告了ASM的性能以及将ASM集成到商用医疗设备中的经验。 ASM实现了99.5%的重建成功,并且能够在97%的情况下验证其自身的重建。该系统(Pronosco X-posure系统,版本2.0)已获得FDA批准,已售出100多个单位。平移运算符的概念被概括为更活跃的形状模型(MASM),这也允许与活跃外观模型自然地集成。

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