Matches in SemOpenAlex for { <https://semopenalex.org/work/W2102483048> ?p ?o ?g. }
- W2102483048 endingPage "667" @default.
- W2102483048 startingPage "657" @default.
- W2102483048 abstract "HomeCirculation ResearchVol. 57, No. 5The microcirculation of the renal medulla. Free AccessAbstractPDF/EPUBAboutView PDFSections ToolsAdd to favoritesDownload citationsTrack citationsPermissions ShareShare onFacebookTwitterLinked InMendeleyReddit Jump toFree AccessAbstractPDF/EPUBThe microcirculation of the renal medulla. B Zimmerhackl, C R Robertson and R L Jamison B ZimmerhacklB Zimmerhackl Search for more papers by this author , C R RobertsonC R Robertson Search for more papers by this author and R L JamisonR L Jamison Search for more papers by this author Originally published1 Nov 1985https://doi.org/10.1161/01.RES.57.5.657Circulation Research. 1985;57:657–667 Previous Back to top Next FiguresReferencesRelatedDetailsCited By Li L, Hack B, Seeliger E and Prasad P (2021) MRI Mapping of the Blood Oxygenation Sensitive Parameter T2* in the Kidney: Basic Concept Preclinical MRI of the Kidney, 10.1007/978-1-0716-0978-1_10, (171-185), . Ehling J, Bábíčková J, Gremse F, Klinkhammer B, Baetke S, Knuechel R, Kiessling F, Floege J, Lammers T and Boor P (2015) Quantitative Micro-Computed Tomography Imaging of Vascular Dysfunction in Progressive Kidney Diseases, Journal of the American Society of Nephrology, 10.1681/ASN.2015020204, 27:2, (520-532), Online publication date: 1-Feb-2016. Evans L and Cowley A (2015) Renal Medullary Circulation, Colloquium Series on Integrated Systems Physiology: From Molecule to Function, 10.4199/C00136ED1V01Y201507ISP064, 7:3, (1-104), Online publication date: 21-Aug-2015. Calzavacca P, May C and Bellomo R (2014) Glomerular haemodynamics, the renal sympathetic nervous system and sepsis-induced acute kidney injury, Nephrology Dialysis Transplantation, 10.1093/ndt/gfu052, 29:12, (2178-2184), Online publication date: 1-Dec-2014. Moss R and Layton A (2014) Dominant factors that govern pressure natriuresis in diuresis and antidiuresis: a mathematical model, American Journal of Physiology-Renal Physiology, 10.1152/ajprenal.00500.2013, 306:9, (F952-F969), Online publication date: 1-May-2014. Munger K, Kost C, Brenner B and Maddox D (2012) The Renal Circulations and Glomerular Ultrafiltration Brenner and Rector's The Kidney, 10.1016/B978-1-4160-6193-9.10003-X, (94-137), . Green M and Hutchins G (2011) Positron Emission Tomography (PET) Assessment of Renal Perfusion, Seminars in Nephrology, 10.1016/j.semnephrol.2011.05.008, 31:3, (291-299), Online publication date: 1-May-2011. Stafford-Smith M, Shaw A and Aronson S (2010) Renal Function Monitoring Miller's Anesthesia, 10.1016/B978-0-443-06959-8.00045-5, (1443-1475), . Millar C and Thiemermann C (2002) Carboxy-Ptio, a Scavenger of Nitric Oxide, Selectively Inhibits the Increase in Medullary Perfusion and Improves Renal Function in Endotoxemia, Shock, 10.1097/00024382-200207000-00012, 18:1, (64-68), Online publication date: 1-Jul-2002. Lübbers D and Baumgärtl H (1997) Heterogeneities and profiles of oxygen pressure in brain and kidney as examples of the pO2 distribution in the living tissue, Kidney International, 10.1038/ki.1997.49, 51:2, (372-380), Online publication date: 1-Feb-1997. Kuramochi G, Kersting U, Silbernagl S and Dantzler W (1996) Changes in the countercurrent system in the renal papilla: diuresis increases pH and HCO 3 − gradients between collecting duct and vasa recta, Pflügers Archiv - European Journal of Physiology, 10.1007/s004240050235, 432:6, (1062-1068), Online publication date: 1-Oct-1996. Yukimura T, Notoya M, Mizojiri K, Mizuhira V, Matsuura T, Ebara T, Miura K, Kim S, Iwao H and Song K (1996) High resolution localization of endothelin receptors in rat renal medulla, Kidney International, 10.1038/ki.1996.296, 50:1, (135-147), Online publication date: 1-Jun-1996. Jamison R and Gehrig J (1992) Urinary Concentration and Dilution: Physiology Comprehensive Physiology, 10.1002/cphy.cp080227, (1219-1279), Online publication date: 1-Dec-1992. Knox F and Granger J (1992) Control of Sodium Excretion: An Integrative Approach Comprehensive Physiology, 10.1002/cphy.cp080121, (927-967), Online publication date: 1-Dec-1992. Zhuo J, Alcorn D, Allen A and Mendelsohn F (1992) High resolution localization of angiotensin II receptors in rat renal medulla, Kidney International, 10.1038/ki.1992.429, 42:6, (1372-1380), Online publication date: 1-Dec-1992. Zimmerhackl L (1991) Hormonal Control of Medullary Blood Flow Nephrology, 10.1007/978-3-662-35158-1_66, (690-695), . Hellberg P, Källskog Ö and Wolgast M (1991) Red cell trapping and postischemic renal blood flow. Differences between the cortex, outer and inner medulla, Kidney International, 10.1038/ki.1991.254, 40:4, (625-631), Online publication date: 1-Oct-1991. Zimmerhackl L, Leuk B and Hoschützky H (1991) The cytoskeletal protein villin as a parameter for early detection of tubular damage in the human kidney, Journal of Chromatography A, 10.1016/0021-9673(91)85200-Y, 587:1, (81-84), Online publication date: 1-Nov-1991. Chou S, Porush J and Faubert P (1990) Renal medullary circulation: Hormonal control, Kidney International, 10.1038/ki.1990.1, 37:1, (1-13), Online publication date: 1-Jan-1990. Jelkmann W and Weiss C (1988) Prostanoids and the Renal Response to Hypoxia Oxygen Sensing in Tissues, 10.1007/978-3-642-83444-8_8, (103-112), . Zimmerhackl B, Robertson C and Jamison R (1987) The medullary microcirculation, Kidney International, 10.1038/ki.1987.46, 31:2, (641-647), Online publication date: 1-Feb-1987. Mondorf A and Scherberich J (1986) Juxtaglomerulärer Apparat Die normale Niere Bildatlas, 10.1007/978-3-663-05270-8_7, (72-90), . Mondorf A and Scherberich J (1986) Intrarenale Gefäßversorgung Die normale Niere Bildatlas, 10.1007/978-3-663-05270-8_6, (67-71), . Koushanpour E and Kriz W (1986) Mechanism of Concentration and Dilution of Urine Renal Physiology, 10.1007/978-1-4757-1912-3_12, (270-309), . Mora-Gutiérrez J, Fernández-Seara M, Echeverria-Chasco R and Garcia-Fernandez N (2021) Perspectives on the Role of Magnetic Resonance Imaging (MRI) for Noninvasive Evaluation of Diabetic Kidney Disease, Journal of Clinical Medicine, 10.3390/jcm10112461, 10:11, (2461) November 1, 1985Vol 57, Issue 5 Advertisement Article InformationMetrics Copyright © 1985 by American Heart Associationhttps://doi.org/10.1161/01.RES.57.5.657 Originally publishedNovember 1, 1985 PDF download Advertisement" @default.
- W2102483048 created "2016-06-24" @default.
- W2102483048 creator A5048637022 @default.
- W2102483048 creator A5076839496 @default.
- W2102483048 creator A5085184676 @default.
- W2102483048 date "1985-11-01" @default.
- W2102483048 modified "2023-10-15" @default.
- W2102483048 title "The microcirculation of the renal medulla." @default.
- W2102483048 cites W1488297583 @default.
- W2102483048 cites W1963901529 @default.
- W2102483048 cites W1970063959 @default.
- W2102483048 cites W1975253311 @default.
- W2102483048 cites W1975736404 @default.
- W2102483048 cites W1978447348 @default.
- W2102483048 cites W1984570694 @default.
- W2102483048 cites W1994542826 @default.
- W2102483048 cites W1996233389 @default.
- W2102483048 cites W1996506545 @default.
- W2102483048 cites W1997374036 @default.
- W2102483048 cites W1999027802 @default.
- W2102483048 cites W2006992689 @default.
- W2102483048 cites W2012606709 @default.
- W2102483048 cites W2016298077 @default.
- W2102483048 cites W2016546881 @default.
- W2102483048 cites W2021770298 @default.
- W2102483048 cites W2044458918 @default.
- W2102483048 cites W2046292076 @default.
- W2102483048 cites W2056399357 @default.
- W2102483048 cites W2062762332 @default.
- W2102483048 cites W2064537324 @default.
- W2102483048 cites W2066341598 @default.
- W2102483048 cites W2066952572 @default.
- W2102483048 cites W2068517264 @default.
- W2102483048 cites W2070445492 @default.
- W2102483048 cites W2072198819 @default.
- W2102483048 cites W2072541492 @default.
- W2102483048 cites W2078592775 @default.
- W2102483048 cites W2085784194 @default.
- W2102483048 cites W2088298803 @default.
- W2102483048 cites W2088677293 @default.
- W2102483048 cites W2089865275 @default.
- W2102483048 cites W2090008845 @default.
- W2102483048 cites W2093221839 @default.
- W2102483048 cites W2094496837 @default.
- W2102483048 cites W2111375235 @default.
- W2102483048 cites W2129294026 @default.
- W2102483048 cites W2134808512 @default.
- W2102483048 cites W2156424011 @default.
- W2102483048 cites W2176231506 @default.
- W2102483048 cites W2228049509 @default.
- W2102483048 cites W2252373801 @default.
- W2102483048 cites W2320230126 @default.
- W2102483048 cites W2388666050 @default.
- W2102483048 cites W2395271871 @default.
- W2102483048 cites W2398024495 @default.
- W2102483048 cites W2402972230 @default.
- W2102483048 cites W2408325074 @default.
- W2102483048 cites W2415677874 @default.
- W2102483048 cites W2416635055 @default.
- W2102483048 cites W2418802897 @default.
- W2102483048 cites W2419121790 @default.
- W2102483048 cites W2419587543 @default.
- W2102483048 cites W2475171147 @default.
- W2102483048 cites W24990870 @default.
- W2102483048 cites W2605051109 @default.
- W2102483048 cites W2885092558 @default.
- W2102483048 cites W3005258201 @default.
- W2102483048 cites W4211219359 @default.
- W2102483048 cites W4213346821 @default.
- W2102483048 doi "https://doi.org/10.1161/01.res.57.5.657" @default.
- W2102483048 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/3902277" @default.
- W2102483048 hasPublicationYear "1985" @default.
- W2102483048 type Work @default.
- W2102483048 sameAs 2102483048 @default.
- W2102483048 citedByCount "29" @default.
- W2102483048 countsByYear W21024830482012 @default.
- W2102483048 countsByYear W21024830482014 @default.
- W2102483048 countsByYear W21024830482015 @default.
- W2102483048 countsByYear W21024830482016 @default.
- W2102483048 countsByYear W21024830482021 @default.
- W2102483048 countsByYear W21024830482022 @default.
- W2102483048 crossrefType "journal-article" @default.
- W2102483048 hasAuthorship W2102483048A5048637022 @default.
- W2102483048 hasAuthorship W2102483048A5076839496 @default.
- W2102483048 hasAuthorship W2102483048A5085184676 @default.
- W2102483048 hasBestOaLocation W21024830481 @default.
- W2102483048 hasConcept C126322002 @default.
- W2102483048 hasConcept C12722491 @default.
- W2102483048 hasConcept C159641895 @default.
- W2102483048 hasConcept C164705383 @default.
- W2102483048 hasConcept C2780091579 @default.
- W2102483048 hasConcept C2780512574 @default.
- W2102483048 hasConcept C54847362 @default.
- W2102483048 hasConcept C71924100 @default.
- W2102483048 hasConceptScore W2102483048C126322002 @default.
- W2102483048 hasConceptScore W2102483048C12722491 @default.
- W2102483048 hasConceptScore W2102483048C159641895 @default.
- W2102483048 hasConceptScore W2102483048C164705383 @default.