Jove
Visualize
联系我们
JoVE
x logofacebook logolinkedin logoyoutube logo
关于 JoVE
概览领导团队博客JoVE 帮助中心
作者
出版流程编辑委员会范围与政策同行评审常见问题投稿
图书馆员
用户评价订阅访问资源图书馆顾问委员会常见问题
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experiments存档
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教师资源中心教师网站
使用条款与条件
隐私政策
政策

相关概念视频

Venous Return01:04

Venous Return

4.2K
The circulatory system plays a crucial role in ensuring the optimal functioning of the human body. One of its critical components is venous return - the process that completes the blood circulation cycle. This article will delve into the concept of venous return, how it works, and its significance to our health.
What is Venous Return?
Venous return refers to the rate at which blood flows back to the heart from the body's peripheral veins. It's an integral part of the circulatory system...
4.2K
Imbalances in Cardiac Output01:26

Imbalances in Cardiac Output

1.4K
The heart's primary function is to pump blood throughout the body, maintaining a balance between blood sent out (cardiac output) and blood returning (venous return). If this balance is disrupted, it can result in congestive heart failure (CHF), a severe condition where the heart becomes an inefficient pump, leading to inadequate blood circulation.
CHF can occur due to the failure of either side of the heart. Left-side failure leads to pulmonary congestion—the right side continues to send...
1.4K
Weightlessness01:01

Weightlessness

5.0K
When an object is dropped, it accelerates toward the center of the Earth. If the net external force on the object is its weight, it is said to be in free fall; that is, the only force acting on the object is gravity. Galileo was instrumental in showing that, in the absence of air resistance, all objects fall with the same acceleration g. However, when objects on the Earth fall downward, they are never truly in free fall, because there is always some upward resistance force from the air acting...
5.0K
Assessment of the Cardiovascular System III: Palpation01:27

Assessment of the Cardiovascular System III: Palpation

326
Palpation involves feeling the body to evaluate texture, size, consistency, and tenderness for assessing cardiovascular health. The following steps are organized in a head-to-toe order:
Jugular Venous Pressure (JVP) Measurement
Position the patient at a thirty- to forty-five-degree angle or in a semi-fowler's position. Look for the highest point of pulsation in the internal jugular vein and measure the vertical distance to the angle of Loius or sternal angle. A normal JVP is 3-4 cm above...
326
Pressure Relationships in Thoracic Cavity01:24

Pressure Relationships in Thoracic Cavity

2.3K
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...
2.3K
Pressure Variation in a Fluid at Rest01:11

Pressure Variation in a Fluid at Rest

253
In a fluid at rest, the pressure at any point beneath the fluid surface depends solely on the depth, not on the container's shape or size. This principle, known as hydrostatic pressure, arises because, in stationary fluids, there is no acceleration, meaning the forces within the fluid balance out. Only vertical forces, caused by the weight of the fluid above, contribute to pressure changes with depth.
When measuring pressure at two different levels within the fluid, the difference in...
253

您也可能阅读

相关文章

通过共同作者、期刊和引用图与本文相关的文章。

排序
Same author

Bam-readcount - rapid generation of basepair-resolution sequence metrics.

Journal of open source software·2026
Same author

Trientine for hypertrophic cardiomyopathy: a phase 2 trial.

European heart journal·2026
Same author

Automating neoantigen selection for personalized cancer vaccine design.

medRxiv : the preprint server for health sciences·2026
Same author

pVACtools v6: A comprehensive suite for neoantigen prediction, visualization, and therapy design.

ArXiv·2026
Same author

Repeat Exposures to Spaceflight or Bed Rest and Spaceflight-Associated Neuro-Ocular Syndrome Findings.

JAMA ophthalmology·2026
Same author

Individualised N-terminal Pro-B-type Natriuretic Peptide Thresholds for the Diagnosis of Heart Failure: A Proof-of-Concept Study.

Cureus·2026

相关实验视频

Updated: Jul 1, 2025

Continuous Venous-Arterial Doppler Ultrasound During a Preload Challenge
09:32

Continuous Venous-Arterial Doppler Ultrasound During a Preload Challenge

Published on: January 20, 2023

3.4K

在急性无重量状态下脉静脉流动的动态.

Karina Marshall-Goebel1, Stuart M C Lee2, Jason R Lytle2

  • 1NASA Johnson Space Center, Houston, Texas, United States.

Journal of applied physiology (Bethesda, Md. : 1985)
|March 14, 2024
PubMed
概括

太空飞行会导致液体的移动,导致内静脉 (IJV) 膨胀. 急性无重量进一步增加了IJV大小,并可能导致左侧IJV的流静止,可能增加血栓形成风险.

关键词:
流体的移动是流体的移动.内 jugular 静脉 内 jugular 静脉 静脉 静脉 静脉 静脉抛物线飞行 抛物线飞行太空飞行模拟空间飞行模拟

更多相关视频

Coherence between Brain Cortical Function and Neurocognitive Performance during Changed Gravity Conditions
12:29

Coherence between Brain Cortical Function and Neurocognitive Performance during Changed Gravity Conditions

Published on: May 23, 2011

19.5K
Tilt Testing with Combined Lower Body Negative Pressure: a "Gold Standard" for Measuring Orthostatic Tolerance
14:09

Tilt Testing with Combined Lower Body Negative Pressure: a "Gold Standard" for Measuring Orthostatic Tolerance

Published on: March 21, 2013

20.8K

相关实验视频

Last Updated: Jul 1, 2025

Continuous Venous-Arterial Doppler Ultrasound During a Preload Challenge
09:32

Continuous Venous-Arterial Doppler Ultrasound During a Preload Challenge

Published on: January 20, 2023

3.4K
Coherence between Brain Cortical Function and Neurocognitive Performance during Changed Gravity Conditions
12:29

Coherence between Brain Cortical Function and Neurocognitive Performance during Changed Gravity Conditions

Published on: May 23, 2011

19.5K
Tilt Testing with Combined Lower Body Negative Pressure: a "Gold Standard" for Measuring Orthostatic Tolerance
14:09

Tilt Testing with Combined Lower Body Negative Pressure: a "Gold Standard" for Measuring Orthostatic Tolerance

Published on: March 21, 2013

20.8K

科学领域:

  • 心血管生理学心血管生理学
  • 太空医学 太空医学
  • 静脉血液动力学 静脉血液动力学

背景情况:

  • 太空飞行会诱导脑膜液体的移动,改变静脉血液动力学.
  • 在太空任务期间,内静脉 (IJV) 膨胀和潜在的血栓形成风险是令人担忧的.

研究的目的:

  • 为了研究急性无重力 (0-G) 对IJV尺寸和血液流动动学的影响.
  • 为了评估在抛物线飞行期间IJV截面面积 (CSA) 和流量模式的变化.

主要方法:

  • 两维 (2D) 超声波测量了IJV CSA. 两维 (2D) 超声波测量了IJV CSA.
  • 多普勒超声波描述了静脉血液流动模式.
  • 在抛物线飞行过程中,测量是在坐姿,卧姿 (1G) 和卧姿 (0G) 条件下进行的.

主要成果:

  • 仰卧姿势在地球上增加了IJV CSA (1-G).
  • 进入0-G进一步增加了双边的IJV CSA,相比躺着的1-G.
  • 在0-G期间,在一名参与者的左侧IJV中观察到流静止,在水平飞行期间持续存在.

结论:

  • 急性无重量状态会改变左侧IJV的大脑外流动力学.
  • 这些变化可能会增加太空飞行期间静脉血栓形成的风险.
  • IJV膨胀和潜在的流动静止是宇航员健康的重要发现.