Transesophageal echocardiography (TEE) is a valuable diagnostic modality now routinely used during cardiac surgery and in the intensive care unit. Increasingly, anesthesiologists, cardiologists and critical care physicians trained in TEE provide the service in both settings where they face the challenge of integrating numerous current TEE guidelines into day-to-day practice. Perioperative Two-Dimensional Transesophageal Echocardiography: A Practical Handbook, 2nd Edition has been designed to be a concise, portable guide for using TEE to recognize cardiac pathology during the perioperative period.

This compact guide has a diverse appeal for anesthesiologists, cardiac surgeons and cardiologists desiring comprehensive up-to-date echocardiographic information at their fingertips.

Features

Updated to include 4 new chapters

Now contains more than 600 full-color, high quality clinical images and illustrations

Includes the most recent guidelines

Retains a compact format that highlights key information

Synopsis of cardiac pathology commonly encountered in cardiac surgery patients

On-the-spot reference for echocardiographers with a wide range from novice to expert experience



Autorentext

Dr. Annette Vegas, MD, FRCPC, FASE
Associate Professor of Anesthesiology
Director of Perioperative TEE
Department of Anesthesia
Toronto General Hospital
University of Toronto
Toronto, Ontario, Canada



Klappentext




Inhalt
Table of Contents

1. TEE Views
2. Doppler and Hemodynamics
3. Left Ventricle
4. Right Ventricle
5. Coronary Artery Disease
6. Diastology
7. Native Valves
8. Prosthetic Valves, Transcatheter Valves, Valve Repairs 
9. Aorta
10. Congenital Heart Disease
11. Variants, Foreign Material, Artifacts, Masses, Endocarditis
12. Mechanical Support, Heart Transplant
13. Cardiomyopathies
14. Pericardium
Index

Titel
Perioperative Two-Dimensional Transesophageal Echocardiography
Untertitel
A Practical Handbook
EAN
9783319609027
Format
E-Book (pdf)
Veröffentlichung
09.02.2018
Digitaler Kopierschutz
Wasserzeichen
Dateigrösse
38.87 MB
Anzahl Seiten
339