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相关概念视频

Anatomy of the Heart01:27

Anatomy of the Heart

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The human heart is made up of three layers of tissue that are surrounded by the pericardium, a membrane that protects and confines the heart. The outermost layer, closest to the pericardium, is the epicardium. The pericardial cavity separates the pericardium from the epicardium. Beneath the epicardium is the myocardium, the middle layer, and the endocardium, the innermost layer. There are four chambers of the heart: the right atrium, the right ventricle, the left atrium, and the left ventricle.
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Positive and Negative Feedback Loops01:18

Positive and Negative Feedback Loops

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Animal organs and organ systems constantly adjust to internal and external changes through a process called homeostasis ("steady state"). Examples of these changes include regulation of the level of glucose or calcium in the blood or internal responses to external temperatures. Homeostasis requires  maintaining an internal dynamic equilibrium:
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Blood and Nerve Supply to the Bones01:29

Blood and Nerve Supply to the Bones

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Bones are dynamic organs that require a rich supply of oxygen and nutrients. Around 5% to 10% of the cardiac output supplies blood to the bones. A typical long bone has three main sources: the nutrient artery, the metaphyseal and epiphyseal arteries, and the periosteal arteries.
Nutrient Artery
The nutrient artery is the main blood vessel that enters the diaphysis via the nutrient foramen. While most long bones have only one nutrient foramen, large bones, such as the femur, may have two. This...
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Pathophysiology of Heart Failure01:17

Pathophysiology of Heart Failure

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Heart failure (HF) is a progressive syndrome involving ventricles that leads to inadequate cardiac output. It can be classified based on location and output or ejection fraction. Ejection fraction (EF) is an essential measurement in the diagnosis and surveillance of HF. Reduced EF corresponds to systolic heart failure (HFrEF). However, HF with preserved ejection fraction (HFpEF) is becoming increasingly prevalent. Also known as diastolic HF, this form of HF is related to aging. The...
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Neural Regulation of Blood Pressure01:18

Neural Regulation of Blood Pressure

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The neural regulation of blood pressure involves intricate interactions between the autonomic nervous system (ANS) and cardiovascular system, ensuring adequate perfusion of tissues. This regulation primarily occurs through baroreceptor and chemoreceptor reflexes, involving both short-term and long-term mechanisms.
Baroreceptor Reflex
Baroreceptors, located in the carotid sinuses and aortic arch, detect changes in blood pressure. When blood pressure rises, these stretch-sensitive receptors...
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Autoregulation mechanisms are characterized by their inherent capacity for self-regulation without necessitating specific nervous stimulation or endocrine control. These mechanisms facilitate the adjustment of blood flow and, therefore, perfusion specific to each tissue region. This self-regulation encompasses chemical signals and myogenic controls.
Chemical Signaling in Autoregulation
Chemical signaling operates at the precapillary sphincter level, inciting either contraction or relaxation....
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相关实验视频

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Fixed Volume or Fixed Pressure: A Murine Model of Hemorrhagic Shock
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在健康人和脊髓受伤的人体中,心血管功能的神经调节中的积极和消极反机制.

J M Legramante1, G Raimondi, M Massaro

  • 1Dipartimento di Medicina Interna, Universitá di Roma "Tor Vergata," Rome, Italy.

Circulation
|March 10, 2001
PubMed
概括
此摘要是机器生成的。

发现与心血管调节的积极反相关的非巴罗反射序列在四肢患者中较少见. 这些序列可能代表一个前神经控制,与巴罗反射反相互作用.

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科学领域:

  • 心血管生理学心血管生理学
  • 神经科学是一个神经科学.
  • 自主神经系统调节自主神经系统调节

背景情况:

  • 研究自发动脉压和R-R间隔波动.
  • 假设神经心血管调节中的积极反机制.
  • 在人类心血管控制中检查非巴罗反射序列 (NBS).

研究的目的:

  • 测试高血压/心跳动以及低血压/心跳动是否是NBS正反的表现.
  • 评估NBS在脊髓损伤 (SCI) 患者心血管调节中的作用.
  • 为了比较四肢,和健康受试者的NBS和巴罗反射序列 (BS).

主要方法:

  • 研究了15名SCI受试者 (8名四肢,7名四肢) 和8名健康对照.
  • 在休息和抬头倾斜 (HUT) 期间评估NBS和BS的发生.
  • 计算了巴罗反射和非巴罗反射序列之间的比率 (B/NB比率).

主要成果:

  • 休息时NBS发生率在四肢患者中明显低于患者和健康受试者.
  • 在HUT期间,四肢患者的B/NB比率显著下降,与健康受试者不同.
  • 麻患者在HUT期间B/NB比率没有显著变化.

结论:

  • 非巴罗反射序列发生在人类中,并表明神经介导的,前进的心血管调节.
  • NBS可能会与巴罗反射反机制动态交互.
  • 这些发现突出显示了脊髓损伤中自主调节的改变,特别是在四肢中.