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相关概念视频

Ischemic Stroke l: Introduction01:15

Ischemic Stroke l: Introduction

Ischemic stroke is an acute cerebrovascular condition in which blood flow to a brain region is suddenly interrupted, leading to tissue infarction. Neurons depend on continuous oxygen and glucose supply, so even brief reductions in perfusion cause energy failure, ionic imbalance, and irreversible injury. Ischemic strokes are classified into thrombotic and embolic types based on their underlying mechanisms.Thrombotic MechanismsThrombotic stroke develops when a clot forms within a cerebral artery.
Ischemic Stroke ll: Pathophysiology01:15

Ischemic Stroke ll: Pathophysiology

An ischemic stroke occurs when a cerebral blood vessel becomes obstructed, most often by a thrombus or embolus, interrupting the delivery of oxygen and glucose to brain tissue. Because neurons rely on continuous aerobic metabolism, energy failure begins within minutes of reduced perfusion. The region receiving the least blood flow becomes the infarct core, an area of irreversible cellular death. Surrounding this core lies the penumbra, a zone of hypoperfused but still viable tissue that is...
Hemorrhagic Stroke l: Introduction01:17

Hemorrhagic Stroke l: Introduction

A hemorrhagic stroke is an acute neurological event that occurs when a weakened cerebral blood vessel ruptures, allowing blood to accumulate within or around the brain. The sudden release of blood forms a focal hematoma that increases intracranial pressure, displaces neural tissue, and can obstruct cerebrospinal fluid pathways. These effects may be compounded by intraventricular extension of the hemorrhage, cerebral edema, or compression of adjacent structures, all of which contribute to...
Hemorrhagic Stroke ll: Pathophysiology01:29

Hemorrhagic Stroke ll: Pathophysiology

A hemorrhagic stroke develops when a cerebral blood vessel ruptures, allowing blood to escape into the surrounding brain tissue, as in intracerebral hemorrhage (ICH), or into the subarachnoid space, as in subarachnoid hemorrhage (SAH). Because the skull is a rigid compartment, the sudden presence of extravascular blood rapidly increases intracranial pressure and compresses adjacent neural structures, leading to immediate tissue injury and impaired cerebral perfusion.Mass Effect and Primary...

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相关实验视频

Updated: May 8, 2026

Isolation and Flow Cytometric Analysis of Immune Cells from the Ischemic Mouse Brain
12:14

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脑中风后的炎症反应 - 一项临床观察研究

Björn Röyter1, Nellie Andréasson2, Bianka Forgo3,4,5

  • 1Department of Obstetrics and Gynecology, Faculty of Medicine and Health, Örebro University, SE-701 82, Örebro, Sweden. bjorn.royter@oru.se.

BMC neurology
|May 30, 2025
PubMed
概括

急性中风可能会导致体温,C反应蛋白 (CRP) 和白细胞 (WBC) 计数的轻微增加. 这些标志物水平明显高通常表明并发症,有助于诊断.

关键词:
在CRP中使用CRP.感染 感染 感染一次性中风,中风.温度 温度是指温度.在WBC中,WBC就是WBC.

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Author Spotlight: Establishing a Reliable Distal MCA Occlusion Model in Mice for Stroke Research
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Isolation and Flow Cytometric Assessment of Neuroimmune Interactions in a Mini-Stroke Murine Model
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相关实验视频

Last Updated: May 8, 2026

Isolation and Flow Cytometric Analysis of Immune Cells from the Ischemic Mouse Brain
12:14

Isolation and Flow Cytometric Analysis of Immune Cells from the Ischemic Mouse Brain

Published on: February 12, 2016

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Author Spotlight: Establishing a Reliable Distal MCA Occlusion Model in Mice for Stroke Research
07:34

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Isolation and Flow Cytometric Assessment of Neuroimmune Interactions in a Mini-Stroke Murine Model
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科学领域:

  • 神经学 神经学
  • 炎症研究 炎症研究
  • 临床诊断 临床诊断 临床诊断

背景情况:

  • 升高的体温和炎症标志物在急性中风中很常见.
  • 这些升高的原因 (中风与并发症) 尚不清楚,可能会阻碍感染诊断和治疗.

研究的目的:

  • 在没有并发症的急性中风患者中调查炎症参数的动态.
  • 要区分中风引起的炎症和由并发症引起的炎症.

主要方法:

  • 在症状出现后48小时内对急性中风患者进行前性队列研究.
  • 每天监测并发症,每天测量体温和血液炎症标志物 (CRP,WBC) 长达10天.
  • 早期测量与90天随访值的比较.

主要成果:

  • 包括70名患者;51人没有并发症.
  • 与90天随访相比,中风后的早期身体温度,CRP和WBC显著升高.
  • 峰值升高:体温 (37.1°C在24-48小时),WBC (8.1 × 10^9/L在0-24小时),CRP (7.0 mg/L在120-144小时).

结论:

  • 急性中风可以导致CRP,WBC和体温的轻微升高.
  • 在没有并发症的患者中,较高的水平 (CRP>50 mg/L,WBC>11 × 10^9/L,温度>38°C) 是罕见的 (<2.5%),可能表明并发症.