Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Related Concept Videos

Development of the Heart01:27

Development of the Heart

The development of the human heart, a crucial organ, commences from the mesoderm on the 18th or 19th day after fertilization. This process initiates in the cardiogenic area, a group of mesodermal cells at the embryo's head end, which evolves into elongated strands known as cardiogenic cords. These cords undergo a transformation to form hollow-centered endocardial tubes.
As the embryo undergoes lateral folding, these paired tubes approach each other, merging into a single primitive heart tube by...
Chambers of the Heart01:16

Chambers of the Heart

The human heart is a complex organ made up of four chambers: the right and left atria and the right and left ventricles. These internal chambers are separated by partitions known as the interatrial and interventricular septa. The exterior of the heart features a groove known as the coronary sulcus that demarcates the atria from the ventricles, while the anterior and posterior interventricular sulci distinguish between the two ventricles.
Deoxygenated blood from the body is received in the right...
Overview of the Heart01:07

Overview of the Heart

The heart, a muscular organ located in the chest, functions as the body's pump, circulating blood through the vascular system. It has four chambers: two atria on top and two ventricles below. The right atrium receives deoxygenated blood from the body and passes it to the right ventricle, which pumps it to the lungs for oxygenation. The left atrium receives oxygenated blood from the lungs and transfers it to the left ventricle, which pumps it to the rest of the body.
The heart's structure...
Heart Valves01:16

Heart Valves

The human heart is a complex organ with an intricate system of valves that regulate blood flow. There are two main types of valves: atrioventricular (AV) valves and semilunar valves.
The AV valves prevent the backflow of blood from the ventricles to the atria during ventricular contraction. These valves function with the assistance of the chordae tendineae and papillary muscles. When the ventricles are relaxed, the chordae tendineae are slack, allowing blood to flow from the atria into the...
Location and Orientation of the Heart01:13

Location and Orientation of the Heart

The human heart, despite its modest size and weight, is an organ of remarkable strength and endurance. Roughly the size of a fist, the heart weighs between 250 and 350 grams and is nestled within the mediastinum, the medial cavity of the thorax. It extends obliquely for about 12 to 14 cm, resting on the superior surface of the diaphragm. The heart is positioned anterior to the vertebral column and posterior to the sternum, with two-thirds of its mass lying to the left of the midsternal line.
Heart Sounds01:15

Heart Sounds

Heart sounds are generated by the turbulence in blood flow due to the closing of heart valves. These sounds are best perceived slightly away from the valves, where the blood flow disseminates the sound.
Auscultation is the process of listening to these internal body sounds using a stethoscope. The heart produces four types of sounds, but only two—S1 and S2—can usually be heard with a stethoscope.
S1, also known as the "lub" sound, is caused by the closure of atrioventricular (A-V) valves at the...

You might also read

Related Articles

Articles linked to this work by shared authors, journal, and citation graph.

Sort by
Same author

Human breast milk-derived exosomes attenuate lipopolysaccharide-induced activation in microglia.

Journal of neuroinflammation·2025
Same author

A quantitative image analysis platform for assessing trophoblast differentiation.

Placenta·2024
Same author

Nonclinical Safety Profile of Sotorasib, a KRAS<sup>G12C</sup>-Specific Covalent Inhibitor for the Treatment of <i>KRAS p.G12C</i>-Mutated Cancer.

International journal of toxicology·2021
Same author

Mercapturate pathway metabolites of sotorasib, a covalent inhibitor of KRAS<sup>G12C</sup>, are associated with renal toxicity in the Sprague Dawley rat.

Toxicology and applied pharmacology·2021
Same author

Impact of comorbid cannabis use on outcome in first episode psychosis.

Early intervention in psychiatry·2016
Same author

therapy services: from ancillary to necessary.

Healthcare financial management : journal of the Healthcare Financial Management Association·2016

Related Experiment Video

Updated: Jul 16, 2026

Pipeline for Multi-Scale Three-Dimensional Anatomic Study of the Human Heart
04:22

Pipeline for Multi-Scale Three-Dimensional Anatomic Study of the Human Heart

Published on: June 28, 2024

A heart for change.

John Britt1, Barbara Thomas

  • 1Ernst & Young, Louisville, Ky, USA. john.britt@ey.com

Healthcare Financial Management : Journal of the Healthcare Financial Management Association
|March 21, 2007
PubMed
Summary

Effective change management relies on clear leadership messaging, strong leader-clinician connections, interdepartmental collaboration, managed resistance, and robust communication and monitoring systems. These elements ensure successful implementation and adaptation.

Area of Science:

  • Healthcare Management
  • Organizational Behavior
  • Change Management Strategies

Background:

  • Implementing organizational change in healthcare settings presents unique challenges.
  • Effective change management is crucial for improving patient care and operational efficiency.
  • Previous research highlights various factors influencing change success.

Purpose of the Study:

  • To identify key drivers of effective change management in healthcare.
  • To provide a framework for optimizing change implementation processes.
  • To understand the interplay between leadership, communication, and departmental collaboration.

Main Methods:

  • Qualitative analysis of change management initiatives.
  • Identification of critical success factors through expert consensus.

More Related Videos

Visualizing the Beating Heart in Drosophila
10:15

Visualizing the Beating Heart in Drosophila

Published on: September 28, 2009

Related Experiment Videos

Last Updated: Jul 16, 2026

Pipeline for Multi-Scale Three-Dimensional Anatomic Study of the Human Heart
04:22

Pipeline for Multi-Scale Three-Dimensional Anatomic Study of the Human Heart

Published on: June 28, 2024

Visualizing the Beating Heart in Drosophila
10:15

Visualizing the Beating Heart in Drosophila

Published on: September 28, 2009

  • Framework development based on established change management principles.
  • Main Results:

    • Six critical factors identified: clear top-level messaging, leader-clinician connection, interdepartmental synergy, appropriate resistance levels, effective communication, and monitoring systems.
    • These factors are interdependent and collectively contribute to successful change.
    • Early variance detection and response are vital for sustained progress.

    Conclusions:

    • A multi-faceted approach incorporating leadership, communication, collaboration, and monitoring is essential for effective healthcare change.
    • Addressing resistance proactively and fostering strong connections can mitigate implementation challenges.
    • Continuous monitoring and adaptive responses are key to navigating complex change processes.