肢体间协调和动力学的变化是由于在经过横截肢的人中逐渐引入的运动器适应
Brian P Selgrade1, Young-Hui Chang2
1Department of Sports Medicine and Human Performance, Westfield State University, Westfield, MA, USA.
medRxiv : the preprint server for health sciences
|August 8, 2025
概括
经过腿截肢的人可以适应分带跑步机行走,显示出纠正步态不对称的潜力. 然而,在完整的腿部增加的制动力可能会带来受伤的风险.
科学领域:
- 生物力学 生物力学
- 神经科学是一个神经科学.
- 康复工程 康复工程 康复工程
背景情况:
- 截肢导致不对称的行走,增加完整的肢体损伤的风险.
- 与错误增强的分带跑步机训练显示了纠正步态不对称的承诺.
研究的目的:
- 为了调查跨腿截肢和对照对象的个体如何在逐渐开始的分带跑步机行走过程中适应他们的四肢力量.
- 评估对步行参数的影响,如步骤长度对称性和双支时间.
主要方法:
- 参与者接受了逐渐开始的分腰带跑步机行走.
- 肢体力量,步长对称性和双支时间被测量并分析后果.
主要成果:
- 截肢者和对照组都在制动力,推进力,双支时间和步骤长度对称性方面表现出后续效应.
- 截肢的个体表现出一步长度后效应,抵消了他们的基线不对称性.
- 与基线相比,在完整的四肢中的后果在制动中更明显,在推进中更少.
结论:
- 渐进的分裂皮带适应包括对腿间协调和力量的预测性控制,不受跨腿截肢的影响.
- 研究结果表明,与突然发作的分裂带研究相比,推进的适应性控制不同.
- 虽然有利于步骤长度对称性,但增加完整的腿部制动后果需要考虑伤害预防.
相关概念视频
Changes in the Appendicular Skeleton with Age
The upper and lower limb initially develops as a small bulge called a limb bud, which appears on the lateral side of the early embryo. The upper limb bud appears near the end of the fourth week of development, with the lower limb bud appearing shortly after.
Initially, the limb buds consist of a core of mesenchyme covered by a layer of ectoderm. The ectoderm at the end of the limb bud thickens to form a narrow crest called the apical ectodermal ridge. This ridge stimulates the underlying...
Initially, the limb buds consist of a core of mesenchyme covered by a layer of ectoderm. The ectoderm at the end of the limb bud thickens to form a narrow crest called the apical ectodermal ridge. This ridge stimulates the underlying...
Introduction to Joints
The adult human body usually has 206 bones, and except for the hyoid bone in the neck, each bone is connected to at least one other bone. Joints are the location where bones come together. Many joints allow for movement between the bones. At these joints, the articulating surfaces of the adjacent bones can move smoothly against each other. However, the bones of other joints may be joined by connective tissue or cartilage. These joints are designed for stability and provide little or no movement.
Development of the Limb Synovial Joints
Joints form during embryonic development in conjunction with the formation and growth of the associated bones. The embryonic tissue that gives rise to all bones, cartilage, and connective tissues of the body is called mesenchyme.
The mesenchymal stem cells differentiate into chondrocytes that form the hyaline cartilage, and later the cartilaginous model of the bone. This model further transforms into a bone. This process is known as endochondral ossification.
During development, the limbs...
The mesenchymal stem cells differentiate into chondrocytes that form the hyaline cartilage, and later the cartilaginous model of the bone. This model further transforms into a bone. This process is known as endochondral ossification.
During development, the limbs...
Anatomical Movements
Anatomical movements refer to the various actions or motions that can be performed by the body's joints and muscles. These movements are described using specific terms to provide a standardized way of discussing and understanding the range of motion at different joints.
Here are some common anatomical movements:
Flexion and extension motions are in the sagittal (anterior–posterior) plane of motion. These movements take place at the shoulder, hip, elbow, knee, wrist, metacarpophalangeal,...
Here are some common anatomical movements:
Flexion and extension motions are in the sagittal (anterior–posterior) plane of motion. These movements take place at the shoulder, hip, elbow, knee, wrist, metacarpophalangeal,...
Muscle Coordination and Action
Muscle coordination is a complex and finely tuned process essential for smooth and purposeful movements like flexion, extension, adduction, abduction, and rotation. The human body orchestrates the actions of various muscles working in concert, each with a specific role. Four functional types describe how muscles work together: agonist, antagonist, synergist, and fixator.
Agonists
Agonist muscles, often called prime movers, are the primary muscles responsible for producing a specific movement.
Agonists
Agonist muscles, often called prime movers, are the primary muscles responsible for producing a specific movement.
Alterations in Muscle Tone ll
Alterations in muscle tone are common manifestations of neurological disorders and reflect dysfunction within different nervous system regions. Spasticity, paratonia, and dystonia represent distinct forms of hypertonia, each with unique mechanisms, clinical features, and diagnostic importance.CharacteristicsSpasticity happens from upper motor neuron lesions and is characterized by velocity-dependent resistance to passive movement. Clinical features include:Exaggerated deep tendon reflexesClonus...


