By Michael Schuenke, Erik Schulte, Udo Schumacher, Wayne Cass, Hugo Zeberg

Scholar compliment for the former version: ""This e-book includes nice illustrations and suitable, succinct details ... I hugely suggest this product to all scholars of any undergraduate or graduate point anatomy course."" positive factors of the second one version: Labels and anatomic terminology are in Latin nomenclature a brand new introductory part with assessment of organs and embryologic improvement assurance of the organs Read more...

summary: pupil compliment for the former variation: ""This e-book includes nice illustrations and correct, succinct details ... I hugely suggest this product to all scholars of any undergraduate or graduate point anatomy course."" positive aspects of the second one variation: Labels and anatomic terminology are in Latin nomenclature a brand new introductory part with assessment of organs and embryologic improvement assurance of the organs elevated by way of over 50%, together with extra medical functions and radiologic correlations An cutting edge, easy structure within which every one two-page unfold offers a self-contained guid

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Additional resources for Internal Organs (THIEME Atlas of Anatomy), Latin nomenclature

Example text

Pulmonales, the oxygen saturation decreases leading secondarily to cyanosis. During childhood, acyanotic heart defects are usually well tolerated and become symptomatic only later in life. , using an endoscopic catheter) before complications occur, life expectancy is normal. a Normal postnatal heart: The foramen ovale closes, the ductus arteriosus atrophies, and systemic and pulmonary circulation are completely separated. b Ventricular septal defect (VSD): VSDs are usually located in the pars membranacea of the septum interventriculare and arise from failure of fusion of the pars muscularis of the septum interventriculare with the proximal septum aorticopulmonale.

They are ventricular septal defects (31%), atrial septal defects (10%) and patent ductus arteriosus (9%), in which a non-physiological connection exists between the left and right sides of the heart. Since blood always flows from high pressure to low pressure, and the left side of the heart has the higher pressure in postnatal circulation, the heart abnormalities described are characterized by an initial left-to-right shunt. The shunt leads to higher pressure in the right side of the heart. In response to the increased pressure, the walls of the ventriculus dexter and aa.

The future valvae atrioventriculares will form at the level of the canalis atrioventricularis. Between the 27th and 37th day of development, a complex series of steps occurs in the ansa cordis to form septa in the atrium, ventriculus and tractus effluxionis (see p. 18) to divide the cor into right and left sides. Fused tubera endocardiaca Common canalis atrioventricularis Ventriculus sinister Opening of sinus venosus Plane of section in c Atrium Opening of sinus venosus Foramen primum Right atrioventricular canal Canalis atrioventricularis sinister Developing ventriculus dexter Dorsal tuber endocardiacum Developing ventriculus sinister Ventriculus a Ventral tuber endocardiacum b Canalis atrioventricularis dexter B Formation of the tubera endocardiaca and development of the cor’s internal chambers a and b╇ Sagittal section of the ansa cordis; c Anterior view at the level of the tubera endocardiaca (for plane of section see b).

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