Lasers in Cardiovascular Medicine and Surgery: Fundamentals and Techniques (eBook)

Artikelnummer: 978-1-4613-1489-9
Einband: PDF
Verfügbarkeit: Download, sofort verfügbar (Link per E-Mail)
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Following the advent of percutaneous balloon vel oped and are available for clinical use, as well angioplasty, interventional cardiovascular pro­ as those that are still in investigational phases. cedures have become of great interest to the Clinical case reports are presented by expert in­ cardiologist, radiologist, and cardiovascular vestigators on the use of various catheter systems surgeon. One of the most extensively explored in the coronary and peripheral circulation. alternatives to bypass surgery is laser-mediated Part V (Chapters 17-23) is the most up-to­ angioplasty. The fascination with laser radia­ date review of the clinical experience with vari­ tion has greatly contributed to its popularity, ous laser delivery systems. There is an emphasis but has also burdened it with unrealistic ex­ on patient selection, criteria for lesion choice, pectations. Many commercial laser systems are and follow-up data. A detailed description of available to the clinician and the researcher, laser recanalization techniques is presented for which often makes the choice of a laser system the various systems in the clinical setting.

Following the advent of percutaneous balloon vel oped and are available for clinical use, as well angioplasty, interventional cardiovascular pro­ as those that are still in investigational phases. cedures have become of great interest to the Clinical case reports are presented by expert in­ cardiologist, radiologist, and cardiovascular vestigators on the use of various catheter systems surgeon. One of the most extensively explored in the coronary and peripheral circulation. alternatives to bypass surgery is laser-mediated Part V (Chapters 17-23) is the most up-to­ angioplasty. The fascination with laser radia­ date review of the clinical experience with vari­ tion has greatly contributed to its popularity, ous laser delivery systems. There is an emphasis but has also burdened it with unrealistic ex­ on patient selection, criteria for lesion choice, pectations. Many commercial laser systems are and follow-up data. A detailed description of available to the clinician and the researcher, laser recanalization techniques is presented for which often makes the choice of a laser system the various systems in the clinical setting.

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VerlagSpringer US
EinbandPDF
Erscheinungsjahr2012
Seitenangabe480 S.
AusgabekennzeichenEnglisch
AbbildungenXVI, 480 p.
Masse70'939 KB
PlattformPDF
ReiheDevelopments in Cardiovascular Medicine
AutorAbela, George S. (Hrsg.)

Alle Bände der Reihe "Developments in Cardiovascular Medicine"

Über den Autor George S. (Hrsg.) Abela

?George S. Abela, M.D., M.Sc., M.B.A.Michigan State UniversityDepartment of Medicine, CardiologyB208 Clinical Center, East Lansing, MI 48824Phone: 517-353-1754; Fax: 517-353-4978; email: abela@msu.eduStefan Mark Nidorf, M.B.B.S., F.R.A.C.P., M.D.Cardiologist Sir Charles Gairdner HospitalThe Heart and Vascular Research Institute 3/140 Mount Bay RdPerth, Western Australia 6000 (61+) 4803000 smnidorf@gmaiol.comGeorge S. Abela is a physician scientist and chief of cardiology at Michigan State University. He has conducted and authored the seminal research describing for the first time the critical role of cholesterol crystals in tissue injury. This was accomplished by demonstrating that cholesterol expands in volume when transformed from a liquid to solid state generating the hypothesis that this expansion in the confined environment of an atherosclerotic plaque can lead to rupture and erosion. Support data comes from demonstration of extensive crystals perforating ruptured plaques only in patients who died with myocardial infarction. Moreover, by modifying the tissue preparation process that avoids ethanol for scanning electron microscopy, he and lab co-workers were able to preserve the crystals from being dissolved by ethanol dehydration, a protocol that had been established centuries earlier. This unraveled the extent and severity of mechanical injury to the arterial wall by sharp tipped cholesterol crystals. He demonstrated that this process is not only present in coronary artery atherosclerotic plaques but also in cardiac valves, various solid cancers, brains from Alzheimer patients and most recently was found by other investigators in diabetic retinopathy. This universal process is a source of inflammation triggered by the transformation of cholesterol as a metastable molecule into a flat crystal. In a collaboration between Dr. Abela and immunologists, they demonstrated the role of cholesterol crystals in triggering inflammation via the NLRP3 inflammasome similar to the mechanism described for uric acid crystals. Overall, atherosclerosis as a crystalloid disease was recognized based on the discoveries made in Dr. Abela's laboratory at Michigan State University.Stefan Mark Nidorf   is a clinical cardiologist practicing in Perth Western Australia affiliated the Heart and Vascular Research Institute at the Perkins Research Institute. His clinical research interest in atherosclerosis led him to initiate the LoDoCo trials of low dose colchicine for the secondary prevention of chronic coronary disease, the rationale of which has been strengthened by an improved understanding of how cholesterol transitions from an essential molecule into a crystalline form that can act toinitiate and perpetuate the chronic and acute manifestations of atherosclerosis.

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