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相关概念视频

Axial and Appendicular Muscles01:18

Axial and Appendicular Muscles

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Skeletal muscles, the key players in our body's movement, can be classified into two groups based on their location and function: axial muscles and appendicular muscles. These classifications reflect the primary roles the muscles play in the body's structure and movement.
Axial Muscles
Axial muscles, situated along the body's midline, are intricately connected to the axial skeleton, which includes the skull, spine, ribs, and sternum. These muscles facilitate facial expressions and...
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Muscle Coordination and Action01:24

Muscle Coordination and Action

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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....
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Muscles that Move the Arm01:31

Muscles that Move the Arm

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Nine muscles are involved in arm movements. Two of these, the pectoralis major and latissimus dorsi, originate from the axial skeleton and are called axial muscles. The other seven originate from the scapula and are called the scapular muscles.
The pectoralis major has two origins. Its clavicular head originates on the medial half of the clavicle. In contrast, the sternocostal head originates on the costal cartilages of ribs 1-6, the sternum, and the aponeurosis of the external oblique of the...
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Muscles that Move the Forearm01:16

Muscles that Move the Forearm

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The muscles that move the forearms can be divided into four groups: forearm flexors, forearm extensors, forearm pronators, and forearm supinators. The flexors and extensors act on the elbow joint, while the pronators and supinators act on the radioulnar joints.
Forearm Flexors
The biceps brachii, brachialis, and brachioradialis are forearm flexors. The biceps brachii is made up of two heads. Its long head originates at the supraglenoid tubercle of the scapula, whereas that of the short head is...
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Excitation-Contraction Coupling in Skeletal Muscles01:20

Excitation-Contraction Coupling in Skeletal Muscles

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Excitation-contraction coupling is a series of events that occur between generating an action potential and initiating a muscle contraction. It occurs at the triad, a structure found in skeletal muscle fibers that comprise a T-tubule and terminal cisternae of the sarcoplasmic reticulum on each side. These triads are visible in longitudinally sectioned muscle fibers. They are typically located at the A-I junction — the junction between the A and I bands of the sarcomere.
When an action...
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Muscles of the Vertebral Column01:27

Muscles of the Vertebral Column

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The back muscles that lie deep into the thoracolumbar fascia are called intrinsic or true back muscles. These muscles are divided into four layers: superficial, intermediate, deep, and deepest layers.
Superficial Layer:
The superficial layer consists primarily of the splenius muscles, which include the splenius capitis and splenius cervicis. These muscles are mainly responsible for the head and cervical spine movements, including extension, rotation, and lateral bending. The splenius capitis...
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Assessing Corticospinal Excitability During Goal-Directed Reaching Behavior
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在自愿直立伸展期间,姿势肌肉之间的任务依赖性肌肉间连贯性.

Imma Ceriello1,2, Riccardo Borzuola1, Valentina Camomilla1

  • 1Laboratory of Bioengineering and Neuromechanics, Department of Movement, Human and Health Sciences, University of Rome 'Foro Italico', Rome, Italy.

Experimental physiology
|March 10, 2026
PubMed
概括

姿势肌肉中的神经连贯性适应到达任务. 前向伸展强调双边协调,而横向伸展涉及不对称的稳定策略,展示了可适应的神经控制.

关键词:
EMGEMG的一致性 EMGEMG的一致性一个共同的输入.肌肉间的一致性 肌肉间的一致性姿势控制 姿势控制直立,伸手伸手的人.

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科学领域:

  • 神经科学是一个神经科学.
  • 生物力学 生物力学
  • 发动机控制器的控制器

背景情况:

  • 肌肉间连贯性揭示了姿势和运动的神经协调.
  • 了解特定任务的肌肉协调对于运动控制研究至关重要.

研究的目的:

  • 研究前进和横向达到任务时,姿势肌肉之间的连贯性如何变化.
  • 检查年轻成年人依赖任务的肌肉协调背后的神经机制.

主要方法:

  • 从骨干和脚肌肉中记录了双边电肌图 (EMG) 活动.
  • 在三角波,α,β和低马频段分析了肌肉间的一致性.
  • 与运动参数相关的连贯性,如压力中心路径长度和协同收缩.

主要成果:

  • 与侧向伸展相比,向前伸展在同类肌肉和后链对中显示出更高的三角带连贯性.
  • 在非主导的脚对抗剂对中,横向接触显示出增加的三角波段连贯性,以及更高的β/低玛连贯性.
  • 关节激动剂对显示出比对抗剂更大的三角波段连贯性,这表明在姿势控制中具有协同作用.

结论:

  • 凝聚力组织适应特定的姿势要求,向前伸展有利于斜腰稳定性,向侧伸展采用不对称的策略.
  • 这些发现凸显了神经控制系统在调节基于机械要求的肌肉协调方面的适应性.
  • 肌肉间连贯性的调节反映了复杂运动期间自动和自愿的神经过程的组合.