03358oam 2200673I 450 991045388620332120200520144314.00-429-14666-31-281-73193-597866117319391-4200-6079-110.3109/9781420060799 (CKB)1000000000537581(EBL)354106(OCoLC)476175664(SSID)ssj0000176512(PQKBManifestationID)11165397(PQKBTitleCode)TC0000176512(PQKBWorkID)10207474(PQKB)11033333(MiAaPQ)EBC1406549(MiAaPQ)EBC354106(Au-PeEL)EBL1406549(CaPaEBR)ebr10231562(CaONFJC)MIL173193(OCoLC)276310073(Au-PeEL)EBL354106(EXLCZ)99100000000053758120180331d2008 uy 0engur|n|---|||||txtccrImage-guided radiation therapy of prostate cancer /edited by Richard K. Valicenti, Adam P. Dicker, David A. JaffrayNew York :Informa Healthcare,2008.1 online resource (318 p.)Description based upon print version of record.1-4200-6078-3 Includes bibliographical references and index.Front Cover; Title Page; Preface; Contents; Chapter 1; Chapter 2; Chapter 3; Chapter 4; Chapter 5; Chapter 6; Chapter 7; Chapter 8; Chapter 9; Chapter 10; Chapter 11; Chapter 12; Chapter 13; Chapter 14; Chapter 15; Chapter 16; Chapter 17; Chapter 18; Chapter 19; Chapter 20; Chapter 21; Index; Back Cover; Answering the need that exists for a single reference to address the practical issues of implementing Image-guided Radiation Therapy (IGRT) into prostate cancer treatment, Image-guided Radiation Therapy of Prostate Cancer provides clinicians with a solid understanding of this technology and, through in-depth illustrations and step-by-step guidelines, offers practical guidance on successfully employing IGRT to improve patient outcomes.Image-guided Radiation Therapy of Prostate Cancer:offers practical step-by-step guidance on how to employ IGRT in the treatment of prostate cancerprovides disease stage-specific recommendations regarding dosage, fractionation, target volume delineation, and tissue tolerancesdiscusses the latest novel approaches to radiotherapy of prostate cancer, including intensity modulated radiation therapy (IMRT), hypofractionated radiation therapy, and proton beam radiation therapyillustrates the use of conebeam CT and megavoltage imaging in the radiation therapy of prostate cancer.ProstateCancerRadiotherapyImage-guided radiation therapyElectronic books.ProstateCancerRadiotherapy.Image-guided radiation therapy.616.99463616.994630642Valicenti Richard K1047487Dicker Adam P1047488Jaffray David A1047489MiAaPQMiAaPQMiAaPQBOOK9910453886203321Image-guided radiation therapy of prostate cancer2475073UNINA04109nam 22007455 450 991029864390332120260415134719.03-319-06031-710.1007/978-3-319-06031-6(CKB)3710000000114379(EBL)1731096(OCoLC)883570917(SSID)ssj0001237416(PQKBManifestationID)11682472(PQKBTitleCode)TC0001237416(PQKBWorkID)11267762(PQKB)10490141(MiAaPQ)EBC1731096(DE-He213)978-3-319-06031-6(PPN)178785334(EXLCZ)99371000000011437920140512d2014 u| 0engur|n|---|||||txtccrAdhesive Interactions of Mussel Foot Proteins /by Jing Yu1st ed. 2014.Cham :Springer International Publishing :Imprint: Springer,2014.1 online resource (79 p.)Springer Theses, Recognizing Outstanding Ph.D. Research,2190-5053Description based upon print version of record.3-319-06030-9 Includes bibliographical references at the end of each chapters and index.Mussel adhesion -- Surface Interactions in Biological Systems -- Effects of interfacial redox in mussel adhesive protein films on mica -- Antioxidant is a Key Factor in Mussel Protein Adhesion -- Hydrophobic enhancement of Dopa-mediated adhesion in a mussel foot protein -- Learning from the pieces: the adhesion of mussel-inspired peptides.Water and moisture undermine strong adhesion to polar surfaces. Marine mussels, however, achieve durable underwater adhesion using a suite of proteins that are peculiar in having high levels of 3, 4-dihydroxyphenylalanine (Dopa). Mussel adhesion has inspired numerous studies on developing the next generation of wet adhesives. This thesis presents recent progress in understanding the basic surface and intermolecular interactions employed by mussels to achieve strong and durable wet adhesion. The surface forces apparatus (SFA) and various other techniques were applied to measure the interactions between mussel foot protein-3 fast (Mfp-3 fast) and the model substrate, mica, as well as the interactions between various mussel adhesive proteins. The results in this thesis show that Dopa plays an essential role in mussel adhesion, and that mussels delicately control the interfacial redox environment to achieve strong and durable Dopa mediated adhesion. The interplay between Dopa and hydrophobic interactions is also evident in mussel adhesion.Springer Theses, Recognizing Outstanding Ph.D. Research,2190-5053Biochemical engineeringMaterials—SurfacesThin filmsBiomedical engineeringBiomaterialsBiochemical Engineeringhttps://scigraph.springernature.com/ontologies/product-market-codes/C12029Surfaces and Interfaces, Thin Filmshttps://scigraph.springernature.com/ontologies/product-market-codes/Z19000Biomedical Engineering and Bioengineeringhttps://scigraph.springernature.com/ontologies/product-market-codes/T2700XBiomaterialshttps://scigraph.springernature.com/ontologies/product-market-codes/Z13000Biochemical engineering.Materials—Surfaces.Thin films.Biomedical engineering.Biomaterials.Biochemical Engineering.Surfaces and Interfaces, Thin Films.Biomedical Engineering and Bioengineering.Biomaterials.594.4Yu Jingauthttp://id.loc.gov/vocabulary/relators/aut1061949MiAaPQMiAaPQMiAaPQBOOK9910298643903321Adhesive Interactions of Mussel Foot Proteins2521563UNINA