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相关概念视频

Arteries of the Upper Limbs01:12

Arteries of the Upper Limbs

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The subclavian artery transitions into the axillary artery as it exits the chest and enters the axillary region. This artery is critical for supplying blood to the shoulder area, including the head of the humerus, through the humeral circumflex arteries. As the vessel continues into the upper arm or brachium, it becomes the brachial artery. This artery plays a key role in vascularizing the brachial region and bifurcates at the elbow into several branches. These branches include the deep...
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Veins of Upper Limbs01:17

Veins of Upper Limbs

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The human circulatory system, a marvel of biological engineering, is a complex network of vessels that transport blood throughout the body. Among these, the veins responsible for carrying blood from the upper limbs are divided into two categories: deep and superficial.
The deep venous system is primarily composed of the ulnar and radial veins. The ulnar vein, which drains the fingers through the superficial palmar venous arches, and the radial vein, which serves the palms via the deep palmar...
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Bones of the Upper Limb: Humerus01:19

Bones of the Upper Limb: Humerus

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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...
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Bones of the Upper Limb: Ulna01:15

Bones of the Upper Limb: Ulna

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The ulna and radius are parallel bones of the antebrachium or the forearm. The ulna lies medially and consists of a bony tip called the olecranon process at its proximal end. This hook-like projection articulates with the olecranon fossa of the humerus and forms the "hinged" ulnohumeral part of the elbow joint. This joint facilitates forearm extension and flexion while preventing its hyperextension. Similarly, the coronoid process, another bony projection on the proximal/anterior side...
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Bones of the Upper Limb: Radius01:09

Bones of the Upper Limb: Radius

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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...
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Intracellular Signaling Affects Focal Adhesions01:17

Intracellular Signaling Affects Focal Adhesions

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Integrins act both as extracellular input receivers and as intracellular processing activators. As their name suggests, integrins are entirely integrated into the membrane structure. Their hydrophobic membrane-spanning regions interact with the phospholipid bilayer's hydrophobic region. These membrane receptors provide extracellular attachment sites for effectors like hormones and growth factors. They activate intracellular response cascades when their effectors are bound and active.
Some...
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Measurement & Analysis of the Temporal Discrimination Threshold Applied to Cervical Dystonia
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在焦点上肢 dystonia 中的结构性大脑分析.

Danilo Donizete de Faria1,2,3,4, Artur José Marques Paulo5, Joselisa Péres Queiroz de Paiva5

  • 1Department of Neurology and Neurosurgery, Universidade Federal de São Paulo, R. Pedro de Toledo, 650, São Paulo, SP, 04039-002, Brazil. ddf.danilofaria@gmail.com.

Scientific reports
|February 14, 2026
PubMed
概括

这项研究在使用MRI和扩散张力成像 (DTI) 的上肢 dystonia 个体中没有发现显著的灰色或白质变化. 这些发现表明,与对照人群相比,焦点 dystonia 患者的大脑结构得到保护.

关键词:
在 DTI 中,DTI 是 DTI 的代名词.迪斯托尼亚 (Dystonia) 是一种疾病.焦点 dystonia 焦点 dystonia 焦点 dystonia 焦点 dystonia 焦点 dystonia 焦点 dystonia 焦点 dystonia 焦点 dystonia结构性核磁共振成像 (MRI)在T1成像中使用T1成像.上肢 dystonia 脊髓缩症 在上肢 dystonia 脊髓缩症

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科学领域:

  • 神经成像是一种神经成像.
  • 神经学 神经学
  • 放射学 放射学是一门学科.

背景情况:

  • 关于焦点 dystonia 中的结构性大脑变化存在不一致的发现.
  • 方法上的局限性和样本异质性可能导致以前的研究差异.

研究的目的:

  • 用先进的MRI技术来调查上肢 dystonia 的灰色和白质变化.
  • 为了比较焦点上肢 dystonia 患者和健康对照者之间的大脑结构.

主要方法:

  • 使用了3T MRI,包括T1加权图像和扩散张力成像 (DTI).
  • 使用FreeSurfer分析皮质形态 (厚度,体积,面积).
  • 评估白质完整性使用DTI指标,基于通道的空间统计和兴趣区域 (ROI) 分析,包括基底腺,乳头和小脑.

主要成果:

  • 在 dystonia 患者和对照人群之间没有发现皮质形态的显著差异.
  • 基于路径和ROI的分析显示,DTI指标没有显著变化.
  • 灰色和白色物质的微观结构完整性似乎保留在焦点上肢 dystonia.

结论:

  • 目前的MRI方法可能不涉及可检测到的灰色或白质微观结构异常.
  • 没有显著的发现表明神经调节和基于网络的治疗的潜力.
  • 建议进行更大规模的多模式研究,以进一步探索焦点 dystonia 的解剖基质.