Download Cardiopulmonary Bypass: Principles and Practice by Glenn P. Gravlee MD, Visit Amazon's Richard F. Davis MD PDF

By Glenn P. Gravlee MD, Visit Amazon's Richard F. Davis MD Page, search results, Learn about Author Central, Richard F. Davis MD, , Alfred H. Stammers MSA CCP, Ross M. Ungerleider MD MBA

Established because the usual reference on cardiopulmonary pass, Dr. Gravlee's textual content is now in its 3rd variation. This accomplished, multidisciplinary textual content covers all features of cardiopulmonary pass together with sections on gear, body structure and pathology, hematologic elements, and scientific applications.

This variation includes a new part on cardiopulmonary pass in neonates, babies, and youngsters and a brand new bankruptcy on circulatory help for minimally invasive cardiac surgical procedure. different highlights comprise cutting-edge details on low-volume circuits and different new gear and discussions of results facts for on-pump and off-pump surgeries.

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Clinical study of blood trauma during perfusion with membrane and bubble oxygenators. J Thorac Cardiovasc Surg 1982;83:108–116. 76. van Oeveren W, Kazatchkine MD, Descamps-Latscha B, et al. Deleterious effects of cardiopulmonary bypass. A prospective study of bubble versus membrane oxygenation. J Thorac Cardiovasc Surg 1985;89:888–899. 77. Boers M, van den Dungen JJAM, Karlicek GF, et al. Two membrane oxygenators and a bubbler. A clinical comparison. Ann Thorac Surg 1983;35:455–462. 78. Lande AJ, Dos SJ, Carlson RG, et al.

The oxygenation of blood by gas dispersion. Science 1950;111:85–87. 65. Crafoord CA, Senning A. Utvecklingen av extra-corporeal cirkulation med hjart-lungmaskin. Nordisk Med 1956;56:1263. 66. Clowes GHA, Neville WE. The membrane oxygenator. In: Allen JG, ed. Extracorporeal circulation. Springfield, IL: Charles C Thomas Publishers, 1958:81–100. 67. Melrose DM. A mechanical heart-lung for use in man. Br Med J 1953;2:57–66. 68. Gerbode F, Osborn JJ, Bramson ML. Experiences in the development of a membrane heart-lung machine.

Gruber and von Frey achieved this objective by dispersing the blood as a thin film inside a rotating slanted cylinder filled with oxygen. The oxygenating capacity of their exceedingly complex apparatus was quite small, sufficient only for perfusion of isolated organs. Other investigators also used the filming method in small oxygenators of various designs. That of Richards and Drinker (17), for example, filmed the blood by having it flow down a cloth cylinder inside an oxygen chamber and that of Bayliss et al.

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