词条 | Pericardium | |
释义 |
| Name = Pericardium | Latin = Pericardium | Greek = περίκάρδιον | Image = Blausen_0470_HeartWall.png | Caption = Walls of the heart, showing pericardium at right. | Width = | Image2 = File:Blausen 0724 PericardialSac.png| | Caption2 = Cutaway illustration of pericardial sac | Precursor = | System = | Artery = Pericardiacophrenic artery | Vein = | Nerve = Phrenic nerve | Lymph = }} The pericardium is a double-walled sac containing the heart and the roots of the great vessels. The pericardial sac has two layers, a serous layer and a fibrous layer. It encloses the pericardial cavity which contains pericardial fluid. The pericardium fixes the heart to the mediastinum, gives protection against infection and provides the lubrication for the heart. It receives its name from Ancient Greek peri (περί; "around") and cardion (κάρδιον; "heart"). StructureThe pericardium is a tough double layered fibroserous sac which covers the heart.[1] The space between the two layers of serous pericardium (see below), the pericardial cavity, is filled with serous fluid which protects the heart from any kind of external jerk or shock. There are two layers to the pericardial sac: the outermost fibrous pericardium and the inner serous pericardium. Fibrous pericardiumThe fibrous pericardium is the most superficial layer of the pericardium. It is made up of dense and loose connective tissue,[2] which acts to protect the heart, anchoring it to the surrounding walls, and preventing it from overfilling with blood. It is continuous with the outer adventitial layer of the neighboring great blood vessels. Serous pericardiumThe serous pericardium, in turn, is divided into two layers, the parietal pericardium, which is fused to and inseparable from the fibrous pericardium, and the visceral pericardium, which is part of, or in some textbooks synonymous with, the epicardium.[3] Both of these layers function in lubricating the heart to prevent friction during heart activity. The visceral layer extends to the beginning of the great vessels (the large blood vessels serving the heart) becoming one with the parietal layer of the serous pericardium. This happens at two areas: where the aorta and pulmonary trunk leave the heart and where the superior vena cava, inferior vena cava and pulmonary veins enter the heart.[4] In between the parietal and visceral pericardial layers there is a potential space called the pericardial cavity, which contains a supply of lubricating serous fluid known as the pericardial fluid. When the visceral layer of serous pericardium comes into contact with heart (not the great vessels) it is known as the epicardium. The epicardium is the layer immediately outside of the heart muscle proper (the myocardium).[4] The epicardium is largely made of connective tissue and functions as a protective layer. During ventricular contraction, the wave of depolarization moves from the endocardial to the epicardial surface. Anatomical relationships
Function
Clinical significanceInflammation of the pericardium is called pericarditis. This condition typically causes chest pain that spreads to the back that is worsened by lying flat. In patients suffering with pericarditis, a pericardial friction rub can often be heard when listening to the heart with a stethoscope. Pericarditis is often caused by a viral infection (glandular fever, cytomegalovirus, or coxsackievirus), or more rarely with a bacterial infection, but may also occur following a myocardial infarction. Pericarditis is usually a short-lived condition that can be successfully treated with painkillers, anti-inflammatories, and colchicine. In some cases, pericarditis can become a long-term condition causing scarring of the pericardium which restricts the heart's movement, known as constrictive pericarditis. Constrictive pericarditis is sometimes treated by surgically removing the pericardium in a procedure called a pericardiectomy.[5] Fluid can build up within the pericardial sack, referred to as a pericardial effusion. Pericardial effusions often occur secondary to pericarditis, kidney failure, or tumours and frequently do not cause any symptoms. However, large effusions or effusions that accumulate rapidly can compress the heart in a condition known as cardiac tamponade, causing breathlessness and potentially fatal low blood pressure. Fluid can be removed from the pericardial space for diagnosis or to relieve tamponade using a syringe in a procedure called pericardiocentesis.{{sfn|Davidson's|2010|pp=638–639}} For cases of recurrent pericardial effusion, an operation to create a hole between the pericardial and pleural spaces can be performed, known as a pericardial fenestration. Additional imagesSee also{{Anatomy-terms}}
References1. ^{{cite book|last1=Dorland's|title=Dorland's Illustrated Medical Dictionary|date=2012|publisher=Elsevier Saunders|isbn=978-1-4160-6257-8|page=1412|edition=32nd}} 2. ^{{cite book |last1=Tortora |first1=Gerard J. |last2=Nielsen |first2=Mark T. |year=2009 |title=Principles of Human Anatomy |edition=11th |pages=84–5 |publisher=John Wiley & Sons |isbn=978-0-471-78931-4}} 3. ^{{Cite book|url=https://www.worldcat.org/oclc/755068872|title=Color atlas of fetal and neonatal histology|last=|first=|date=2011|publisher=Springer|others=Ernst, Linda., Ruchelli, Eduardo D., Huff, Dale S.|year=|isbn=9781461400196|location=New York|pages=5|oclc=755068872}} 4. ^1 {{cite book |last=Laizzo |first=P.A. |title=Handbook of Cardiac Anatomy, Physiology, and Devices |isbn=978-1-60327-371-8 |edition=2nd |year=2009 |publisher=Humana Press |pages=125–8}} 5. ^{{cite journal|last1=Byrne|first1=John G|last2=Karavas|first2=Alexandros N|last3=Colson|first3=Yolonda L|last4=Bueno|first4=Raphael|last5=Richards|first5=William G|last6=Sugarbaker|first6=David J|last7=Goldhaber|first7=Samuel Z|year=2002|title=Cardiac Decortication (Epicardiectomy) for Occult Constrictive Cardiac Physiology After Left Extrapleural Pneumonectomy|journal=Chest|volume=122|issue=6|pages=2256–9|doi=10.1378/chest.122.6.2256|pmid=12475875}} External links
1 : Cardiac anatomy |
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