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相关概念视频

Blood Flow01:29

Blood Flow

Blood is pumped by the heart into the aorta, the largest artery in the body, and then into increasingly smaller arteries, arterioles, and capillaries. The velocity of blood flow decreases with increased cross-sectional blood vessel area. As blood returns to the heart through venules and veins, its velocity increases. The movement of blood is encouraged by smooth muscle in the vessel walls, the movement of skeletal muscle surrounding the vessels, and one-way valves that prevent backflow.
Blood Pressure01:24

Blood Pressure

The movement of blood in a human body, commonly referred to as blood flow, is determined by the volume of blood that traverses a certain section of the bodily system per unit time. It is the rhythmic contraction of the heart's ventricles that primarily instigates this movement. As the ventricles contract, blood is forced into the prominent arteries, which then flow from areas of greater pressure to lower pressure areas. This movement continues into smaller arteries and arterioles and...
Autoregulation of Blood Flow01:17

Autoregulation of Blood Flow

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.
Fetal Circulation01:14

Fetal Circulation

Fetal circulation is a unique system that facilitates the exchange of gases, nutrients, and waste products between the developing fetus and the mother. This intricate process takes place through a special organ called the placenta.
Two umbilical arteries transport blood from the fetus to the placenta. At the placenta, the blood absorbs oxygen and nutrients while simultaneously eliminating waste products. This oxygen-enriched and nutrient-rich blood then returns to the fetus through one...
Pressure Relationships in Thoracic Cavity01:24

Pressure Relationships in Thoracic Cavity

Breathing, otherwise known as pulmonary ventilation, is the process of air movement into and out of the lungs. The main mechanisms propelling pulmonary ventilation are atmospheric pressure (Patm), intra-pulmonary (Ppul ) or intra-alveolar pressure (Palv) within the alveoli, and intrapleural pressure (Pip) within the pleural cavity.
Breathing Mechanisms
Both intra-alveolar and intrapleural pressures rely on specific lung properties. The ability to breathe—allowing air to enter the lungs during...
Applications of Integration to Find Blood Flow01:27

Applications of Integration to Find Blood Flow

Blood flow through a cylindrical blood vessel can be mathematically described using the principles of laminar flow, a regime in which fluid moves smoothly in parallel layers. In this model, the velocity of the blood is not uniform across the cross-section of the vessel; rather, it varies with the radial distance from the center. The maximum velocity occurs along the central axis, decreasing progressively toward the vessel walls, where it reaches zero due to viscous drag.Approximating Blood...

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相关实验视频

Updated: Jul 13, 2026

Human Fetal Blood Flow Quantification with Magnetic Resonance Imaging and Motion Compensation
06:56

Human Fetal Blood Flow Quantification with Magnetic Resonance Imaging and Motion Compensation

Published on: January 7, 2021

胎儿肺静脉流动的动力学及其与血管直径的关联.

Paulo Zielinsky1, Antônio Piccoli, Eduardo Gus

  • 1Fetal Cardiology Unit, Institute of Cardiology of Rio Grande do Sul, Porto Alegre, Brazil. pesquisa@cardnet.tche.br

Circulation
|October 15, 2003
PubMed
概括

胎儿肺静脉脉动指数 (PVPI) 随着静脉直径的增加而下降. 精确的多普勒样本体积放置在静脉关口附近对于评估胎儿肺静脉流动力学至关重要.

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相关实验视频

Last Updated: Jul 13, 2026

Human Fetal Blood Flow Quantification with Magnetic Resonance Imaging and Motion Compensation
06:56

Human Fetal Blood Flow Quantification with Magnetic Resonance Imaging and Motion Compensation

Published on: January 7, 2021

Establishment and Confirmation of a Postnatal Right Ventricular Volume Overload Mouse Model
06:04

Establishment and Confirmation of a Postnatal Right Ventricular Volume Overload Mouse Model

Published on: June 9, 2023

Adult and Pediatric Porcine Model of Acute Volume Overload
06:09

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科学领域:

  • 胎儿心脏病学 胎儿心脏病学
  • 医学成像医学成像
  • 血液动力学 血液动力学

背景情况:

  • 评估胎儿肺静脉流动通常使用多普勒样本体积在静脉的远端,更宽的部分.
  • 肺静脉脉动指数 (PVPI) 与血管直径之间的关系尚未得到充分证实.

研究的目的:

  • 为了研究胎儿肺静脉脉动指数 (PVPI) 和肺静脉直径之间的关联.
  • 为了确定胎儿肺静脉评估中多普勒样本体积的最佳定位.

主要方法:

  • 用多普勒心声图来研究23名正常胎儿 (平均妊娠年龄为28.6周).
  • 肺静脉流量被评估在近端和远端位置.
  • 肺静脉直径测量使用2D回声心脏学与功率多普勒.
  • 计算PVPI为 (缩或放缩速度的峰值 - 缩前速度) /平均速度.

主要成果:

  • 平均远端肺静脉直径 (0.33厘米) 显著大于近端直径 (0.16厘米).
  • 平均远端PVPI (0.84) 显著低于近端PVPI (2.09).
  • 在肺静脉直径和PVPI (P<0.0001) 之间发现了一个非常显著的反指数相关性.

结论:

  • 在正常胎儿中,肺静脉流动的脉动性从肺到心脏下降.
  • PVPI与肺静脉直径相反相关,直径在远部增加.
  • 正确的多普勒样本体积定位与静脉门结合相邻,对于准确的肺静脉流量评估至关重要.