首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Bone Position and Ligament Deformations of the Foot From CT Images to Quantify the Influence of Footwear in ex vivo Feet
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Bone Position and Ligament Deformations of the Foot From CT Images to Quantify the Influence of Footwear in ex vivo Feet

机译:从CT图像中脚的骨骼位置和韧带变形,量化鞋类在离体脚下的影响

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The mechanical behaviour of the foot is often studied through the movement of the segments composing it and not through the movement of each individual bone, preventing an accurate and unambiguous study of soft tissue strains and foot posture. In order to describe the internal behaviour of the foot under static load, we present here an original methodology that automatically tracks bone positions and ligament deformations through a series of CT acquisitions for a foot under load. This methodology was evaluated in a limited clinical study based on on three cadaveric feet in different static load cases, first performed with bare feet and then with a sports shoe to get first insights on how the shoe influences the foot's behaviour in different configurations. A model-based tracking technique using hierarchical distance minimization was implemented to track the position of 28 foot bones for each subject, while a mesh-morphing technique mapped the ligaments from a generic model to the patient-specific model in order to obtain their deformations. Comparison of these measurements between the ex vivo loaded bare foot and the shod foot showed evidence that wearing a shoe affects the deformation of specific ligaments, has a significant impact on the relative movement of the bones and alters the posture of the foot skeleton (plantar-dorsal flexion, arch sagging and forefoot abductionadduction on the midfoot). The developed method may provide new clinical indicators to guide shoe design and valuable data for detailed foot model validation.
机译:脚的力学行为通常通过组成它而不是通过每个骨骼的运动的运动来研究,防止对软组织菌株和足部姿势进行准确和明确的研究。为了描述脚下的静态负荷的内部行为,我们在这里介绍了一种原始方法,其通过在负载下的一系列CT采集时自动跟踪骨骼位置和韧带变形。在不同静载壳体的三个尸体脚上基于三个尸体脚的有限临床研究评估了这种方法,首先用赤脚进行,然后用运动鞋进行首先识别鞋子如何在不同配置中影响脚的行为。实现了使用分层距离最小化的基于模型的跟踪技术,以跟踪每个受试者的28英尺骨骼的位置,而网格变形技术将韧带从通用模型映射到患者特定模型以获得它们的变形。比较偏见的赤脚和鞋面的这些测量的比较显示佩戴鞋子影响特定韧带的变形的证据,对骨骼的相对运动产生了重大影响,并改变了足部骨骼的姿势(跖骨 - 背部屈曲,拱下垂和前脚的鞋面上脚踏板)。开发方法可以为新的临床指标提供引导鞋设计和有价值的数据,以进行详细的脚模型验证。

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