相关实验视频
Updated: Jun 25, 2025

00:10
Precision Measurements and Parametric Models of Vertebral Endplates
Published on: September 17, 2019
6.5K
正常和变形的胸脊柱有限元素模型的数据集
Morteza Rasouligandomani1, Alejandro Del Arco2, Francis Kiptengwer Chemorion3,4,5
1BCN MedTech, Department of Engineering, Universitat Pompeu Fabra, Barcelona, 08018, Spain. morteza.rasouli@upf.edu.
Scientific data
|May 29, 2024
概括
现在可以更快地生成个性化的成人脊柱形 (ASD) 有限元 (FE) 模型. 一个新的统计形状模型 (SSM) 工具为生物机械模拟创建多种FE脊柱模型.
科学领域:
- 生物力学 生物力学
- 计算建模计算建模
- 脊柱研究研究 脊柱研究
背景情况:
- 成年人脊椎形 (ASD) 导致斜腰错位.
- 有限元 (FE) 模型对于研究ASD生物力学至关重要.
- 个性化FE模型生成是复杂且耗时的.
研究的目的:
- 开发一种有效的方法来生成个性化FE模型的成年脊柱.
- 创建一个多样化的FE脊柱模型数据集,代表真实患者的几何形状.
- 为了促进ASD研究的生物力学模拟.
主要方法:
- 利用EOS成像来重建3D表面脊柱模型.
- 从患者数据构建了一个统计形状模型 (SSM).
- 采用了网格变形来适应六面形FE网格模板.
- 个性化FE模型使用SSM变形场和平衡测量.
主要成果:
- 创建了一个虚拟队列,包括16807个胸椎 FE 脊柱模型.
- 这些模型展示了多样化的脊柱形态,统计代表了患者的几何形状.
- 统一管理机制工具可以有效地个性化FE模型.
- FE模型的数据集在公共存储库中公开共享.
结论:
- 开发的六边形SSM工具显著简化了个性化的成人脊柱FE模型的创建.
- 这种资源使得大规模的生物机械模拟能够促进ASD研究.
- 开放地分享FE模型数据集可以促进对脊柱形的进一步调查.
相关概念视频
Normal Strain under Axial Loading
460
Normal strain under axial loading is an important concept in the field of mechanics of materials. Axial loading implies the application of a force along the axis of a material, like a column or bar. This force can either compress or stretch the material. In the context of axial loading, normal strain is the deformation experienced by the material in the direction of the loading force. It's calculated as the change in length divided by the original length of the material. This unitless ratio...
460
Vertebral Column: Regions and Curvature
3.6K
The vertebral column or spine is a flexible column that supports the head, neck, and body and allows for their movements. It also protects the spinal cord.
Regions of the Vertebral Column
In an adult, the spine is subdivided into five regions: the cervical, the thoracic, the lumbar, the sacral, and the coccygeal region. The spine initially develops as a series of 33 vertebrae; after 20 years of age, the nine bones in the sacral region, five sacral, and four coccygeal bones fuse to form...
Regions of the Vertebral Column
In an adult, the spine is subdivided into five regions: the cervical, the thoracic, the lumbar, the sacral, and the coccygeal region. The spine initially develops as a series of 33 vertebrae; after 20 years of age, the nine bones in the sacral region, five sacral, and four coccygeal bones fuse to form...
3.6K
Deformation of Member under Multiple Loadings
163
When a rod is made of different materials or has various cross-sections, it must be divided into parts that meet the necessary conditions for determining the deformation. These parts are each characterized by their internal force, cross-sectional area, length, and modulus of elasticity. These parameters are then used to compute the deformation of the entire rod.
In the case of a member with a variable cross-section, the strain is not constant but depends on the position. The deformation of an...
In the case of a member with a variable cross-section, the strain is not constant but depends on the position. The deformation of an...
163
Plastic Deformations of Members with a Single Plane of Symmetry
87
When a structural member undergoes plastic deformation due to bending, it is crucial to understand the position of the neutral axis and the stress distribution. This member, characterized by a single plane of symmetry, exhibits a uniform stress distribution, with negative stress above the neutral axis and positive stress below. Notably, the neutral axis does not align with the centroid of the cross-section. This misalignment is typical in cases where the cross-section is not rectangular or...
87
Plastic Deformations
86
It is essential to understand how structural members behave under plastic deformation when the bending stress exceeds the material's yield strength. This state of deformation permanently alters the shape of the member, in contrast to the linear elastic behavior observed before yielding. The strain at any point in the member is expressed in terms of maximum strain. Notably, the neutral axis, which coincides with the centroid during elastic bending, shifts away from the centroid under plastic...
86
Elastic Strain Energy for Normal Stresses
155
Strain energy quantifies the energy stored within a material due to deformation under loading conditions, a fundamental concept in materials science and engineering. The strain energy can be modeled when a material is subjected to axial loading with uniformly distributed stress. In this scenario, the stress experienced by the material is the internal force divided by the cross-sectional area, and the strain induced is directly proportional to this stress through the modulus of elasticity.
If...
If...
155

