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相关概念视频

Bone Structure01:55

Bone Structure

48.1K
Within the skeletal system, the structure of a bone, or osseous tissue, can be exemplified in a long bone, like the femur, where there are two types of osseous tissue: cortical and cancellous.
48.1K
Classification of Bones01:18

Classification of Bones

5.3K
The bones of the human skeletal system are of varied shapes, sizes, and functions. They can be classified based on their shape and function into four major classes: long bones, short bones, flat bones, and irregular bones. Some classifications include a fifth type, the sesamoid bones, as a separate class, whereas others categorize them under short bones.
Long and Short Bones
The appendicular skeleton, particularly the upper and lower limbs, is primarily made of long and short bones. The...
5.3K
Bone Remodeling01:40

Bone Remodeling

38.3K
Bone remodeling is a continuous and balanced process of bone resorption by osteoclasts and bone formation by osteoblasts. In adults, it helps maintain bone mass and calcium homeostasis. While mechanical stress can stimulate turnover as part of the normal maintenance and reparative process, several hormones also regulate bone remodeling.
38.3K
Bones of the Upper Limb: Humerus01:19

Bones of the Upper Limb: Humerus

3.1K
The upper limb consists of the arm, forearm, wrist, and hand bones. The humerus is the single bone of the upper arm region. Proximally, it has a large, spherical, smooth head that articulates with the glenoid cavity of the scapula to form the glenohumeral or shoulder joint. The margin of the head is the anatomical neck, a residual epiphyseal plate. Laterally it extends to form bony projections called the greater tubercle and the lesser tubercle. Next to the tubercles is the surgical neck, a...
3.1K
Bones of the Upper Limb: Radius01:09

Bones of the Upper Limb: Radius

2.2K
The radius is longer of the two bones that make up the human antebrachium or forearm. At the proximal end, the radius articulates with the capitulum of the humerus and the radial notch of the ulna to form the elbow joint. At the distal end, the radius articulates with the ulna via the ulnar notch, forming the distal radioulnar joint. Distally, the radius also attaches to the carpal wrist bones (scaphoid and lunate) to form the radiocarpal joint.
The radius has a nail-shaped head, and a...
2.2K
Bone Markings01:26

Bone Markings

5.2K
Bones have various surface features that help form joints and attach to other soft tissues. Depending on the function, bone markings are categorized into articulating projections, processes for attachment, depressions, and openings.
Articulating Projections
Articulating projections are found where two bones meet to form a joint. These structures are usually found at the ends of bones. The largest articulation is a rounded projection called the head, supported by a narrow neck at the ends of...
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相关实验视频

Updated: Jun 22, 2025

Biomechanical Testing of Murine Tendons
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开放的手:一个开源的指骨统计形状模型.

T A Munyebvu1, C D Metcalf1, C B Burson-Thomas1

  • 1University of Southampton, Southampton, UK.

Annals of biomedical engineering
|July 3, 2024
PubMed
概括

手的统计形状模型.

关键词:
解剖学建模模型的解剖学建模人类测量学 人类测量学.远距离的间关节关节人体工程学就是人体工程学.机器学习 机器学习主要组件分析的主要组件分析.靠近的间关节关节

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Subject-specific Musculoskeletal Model for Studying Bone Strain During Dynamic Motion
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Subject-specific Musculoskeletal Model for Studying Bone Strain During Dynamic Motion

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Estimation of Contact Regions Between Hands and Objects During Human Multi-Digit Grasping
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Estimation of Contact Regions Between Hands and Objects During Human Multi-Digit Grasping

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相关实验视频

Last Updated: Jun 22, 2025

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Published on: October 15, 2019

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Subject-specific Musculoskeletal Model for Studying Bone Strain During Dynamic Motion
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Subject-specific Musculoskeletal Model for Studying Bone Strain During Dynamic Motion

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科学领域:

  • 生物机械工程 生物机械工程
  • 医学成像分析 医学成像分析
  • 人体解剖学 解剖学 解剖学

背景情况:

  • 统计形状模型 (SSM) 对于理解解剖变异至关重要.
  • 以前的模型往往缺乏详细的联合分析,或者没有公开提供.
  • 手的生物力学需要精确的骨结构的3D表示.

研究的目的:

  • 开发和介绍四个手指的开源统计形状模型.
  • 分析近距离和远距离间关节的解剖变异.
  • 为手部生物机械分析和设备设计提供资源.

主要方法:

  • 一个多体SSM管道被应用到计算机断层扫描 (CT) 扫描10个健康的右手.
  • 数据被细分,网格和对齐,并进行姿势中和以消除关节角度变化.
  • 主要成分分析 (PCA) 用于识别形态变异的模式.

主要成果:

  • 主要的变异方式 (PC1) 代表了整体法兰克斯大小.
  • 随后的PC捕获了骨比例和关节位置的变化.
  • 模型产生了骨长度和关节空间的粗度测量.

结论:

  • 开发的SSM提供了指骨和关节的详细解剖描述.
  • 这些开源模型支持手的生物力学研究和手接口产品的设计.
  • 这些模型代表了特定的人口统计数据,并且应对更广泛的人口群体谨慎使用.