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Cardiac skeleton and Heart

Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.

Difference between Cardiac skeleton and Heart

Cardiac skeleton vs. Heart

The cardiac skeleton, also known as the fibrous skeleton of the heart, is a high density single structure of connective tissue that forms and anchors the valves and influences the forces exerted through them. The heart is a muscular organ in most animals, which pumps blood through the blood vessels of the circulatory system.

Similarities between Cardiac skeleton and Heart

Cardiac skeleton and Heart have 18 things in common (in Unionpedia): Aorta, Artery, Atrioventricular node, Atrium (heart), Bundle of His, Cardiac muscle cell, Chordae tendineae, Collagen, Endocardium, Galen, Heart, Heart valve, Infundibulum (heart), Mitral valve, Pulmonary artery, Sinoatrial node, Tricuspid valve, Ventricle (heart).

Aorta

The aorta is the main artery in the human body, originating from the left ventricle of the heart and extending down to the abdomen, where it splits into two smaller arteries (the common iliac arteries).

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Artery

An artery (plural arteries) is a blood vessel that takes blood away from the heart to all parts of the body (tissues, lungs, etc).

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Atrioventricular node

The atrioventricular node, or AV node is a part of the electrical conduction system of the heart that coordinates the top of the heart.

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Atrium (heart)

The atrium is the upper chamber in which blood enters the heart.

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Bundle of His

The bundle of His or His bundle is a collection of heart muscle cells specialized for electrical conduction.

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Cardiac muscle cell

Cardiac muscle cells or cardiomyocytes (also known as myocardiocytes or cardiac myocytes) are the muscle cells (myocytes) that make up the cardiac muscle (heart muscle).

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Chordae tendineae

The chordae tendineae (tendinous chords), colloquially known as the heart strings, are tendon-resembling fibrous cord connective tissue that connect the papillary muscles to the tricuspid valve and the bicuspid valve in the heart.

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Collagen

Collagen is the main structural protein in the extracellular space in the various connective tissues in animal bodies.

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Endocardium

The endocardium is the innermost layer of tissue that lines the chambers of the heart.

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Galen

Aelius Galenus or Claudius Galenus (Κλαύδιος Γαληνός; September 129 AD – /), often Anglicized as Galen and better known as Galen of Pergamon, was a Greek physician, surgeon and philosopher in the Roman Empire.

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Heart

The heart is a muscular organ in most animals, which pumps blood through the blood vessels of the circulatory system.

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Heart valve

A heart valve normally allows blood to flow in only one direction through the heart.

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Infundibulum (heart)

The infundibulum (also known as conus arteriosus) is a conical pouch formed from the upper and left angle of the right ventricle in the chordate heart, from which the pulmonary trunk arises.

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Mitral valve

The mitral valve, also known as the bicuspid valve or left atrioventricular valve, is a valve with two flaps in the heart, that lies between the left atrium and the left ventricle.

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Pulmonary artery

A pulmonary artery is an artery in the pulmonary circulation that carries deoxygenated blood from the right side of the heart to the lungs.

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Sinoatrial node

The sinoatrial node (SA node), also known as sinus node, is a group of cells located in the wall of the right atrium of the heart.

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Tricuspid valve

The tricuspid valve, or right atrioventricular valve, is on the right dorsal side of the mammalian heart, between the right atrium and the right ventricle.

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Ventricle (heart)

A ventricle is one of two large chambers in the heart that collect and expel blood received from an atrium towards the peripheral beds within the body and lungs.

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The list above answers the following questions

Cardiac skeleton and Heart Comparison

Cardiac skeleton has 29 relations, while Heart has 482. As they have in common 18, the Jaccard index is 3.52% = 18 / (29 + 482).

References

This article shows the relationship between Cardiac skeleton and Heart. To access each article from which the information was extracted, please visit:

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