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相关概念视频

Arteries of the Head and Neck01:26

Arteries of the Head and Neck

2.9K
The human body's intricate network of arteries ensures that every organ system receives the necessary oxygen and nutrients for optimal function. The arterial network in the head and neck region is particularly complex, providing vital blood flow to the brain, eyes, and other critical structures. Prominent arteries in this region include the internal carotid arteries and the vertebral arteries.
The internal carotid arteries supply blood to the anterior portion of the cerebrum. They enter the...
2.9K
Veins of Head and Neck01:19

Veins of Head and Neck

5.1K
The blood drainage from the head and neck is primarily managed by three pairs of veins: the external jugular, internal jugular, and vertebral veins. The external jugular veins drain superficial scalp and face structures, passing over the sternocleidomastoid muscles to empty into the subclavian veins.
On the other hand, the vertebral veins, unlike their arterial counterparts, are not primarily responsible for brain drainage. Instead, they drain the cervical vertebrae, spinal cord, and some small...
5.1K
The Arch of Aorta01:10

The Arch of Aorta

1.5K
The coronary arteries, originating from the ascending aorta, bifurcate from two sinuses located within the ascending aorta. Positioned just above the aortic semilunar valve, these sinuses house essential aortic baroreceptors and chemoreceptors, crucial for maintaining cardiac function. The left coronary artery and the right coronary artery branch off from the left posterior and anterior aortic sinuses, respectively.
Encircling the heart, the coronary arteries form a ring-like structure before...
1.5K
Arteries of the Upper Limbs01:12

Arteries of the Upper Limbs

2.0K
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...
2.0K
Vascular Spasm01:16

Vascular Spasm

3.3K
The vascular phase, also known as vasospasm, is the initial stage of hemostasis, crucial for preventing excessive bleeding when a blood vessel is injured. After a vessel is cut, nerves in the damaged area trigger pain and other sensory impulses. Simultaneously, the smooth muscles in the vessel wall contract, resulting in a vascular spasm. This contraction reduces the vessel's diameter at the injury site, slowing or stopping blood loss through the vessel wall. Vascular spasms typically last...
3.3K
Thoracic Aorta01:15

Thoracic Aorta

1.5K
The thoracic section of the aorta begins at the T5 vertebra and extends to the T12 level at the diaphragm, initially progressing through the mediastinum to the left of the spinal column. Throughout its course in the thoracic segment, the thoracic aorta emits various offshoots known collectively as visceral and parietal branches. The branches that predominantly supply blood to visceral organs are termed visceral branches and include bronchial, pericardial, esophageal, and mediastinal arteries,...
1.5K

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A Rat Carotid Artery Pressure-Controlled Segmental Balloon Injury with Periadventitial Therapeutic Application
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A Rat Carotid Artery Pressure-Controlled Segmental Balloon Injury with Periadventitial Therapeutic Application

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冠状动脉组织 冠状动脉组织

Eric A Grin1, Daniel D Wiggan1, Michela Rosso2

  • 1Department of Neurosurgery, NYU Langone Health, New York, New York, United States.

Seminars in neurology
|November 26, 2025
PubMed
概括
此摘要是机器生成的。

冠状动脉网,纤维状内突起,是缺血性中风的未被确诊的原因. 手术干预在症状患者中风预防方面是有效的,尽管需要进一步的研究.

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Implantation of a Carotid Cuff for Triggering Shear-stress Induced Atherosclerosis in Mice
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Implantation of a Carotid Cuff for Triggering Shear-stress Induced Atherosclerosis in Mice
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A Model of Disturbed Flow-Induced Atherosclerosis in Mouse Carotid Artery by Partial Ligation and a Simple Method of RNA Isolation from Carotid Endothelium
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科学领域:

  • 血管神经学 血管神经学
  • 脑血管疾病 脑血管疾病
  • 干预性神经放射学 干预性神经放射学

背景情况:

  • Carotid 网越来越多地被认为是缺血性中风的原因,特别是在年轻人中.
  • 这些亲密的异常导致异常的血流和血栓栓塞的风险.
  • 由于微妙的成像发现,诊断往往会延迟.

研究的目的:

  • 审查当前对动脉网的理解.
  • 讨论诊断挑战和管理策略.
  • 突出血管架构在中风风险分层中的作用.

主要方法:

  • 关于动脉网诊断和管理的文献综述.
  • 对医疗和干预治疗现有研究的分析.
  • 讨论关于状动脉网血管架构和中风风险的新兴研究.

主要成果:

  • 仅仅是医疗管理往往不足以治疗症状性动脉网.
  • 动脉支架和关节切除术显示出高的安全性和有效性.
  • 冠状动脉网血管架构可以预测中风风险.

结论:

  • 冠状动脉网需要提高临床意识,以便及时诊断.
  • 对症状患者来说,干预治疗是一种可行的选择.
  • 进一步研究风险分层和预防策略是必不可少的.