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109篇 您的检索式:作者名="GLEW"
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1Nephropathy in dietary hyperoxaluria:A potentially preventable acute or chronic kidney disease显示文摘Hyperoxaluria can cause not only nephrolithiasis and nephrocalcinosis,but also renal parenchymal disease histologically characterized by deposition of calcium oxalate crystals throughout the renal parenchyma,profound tubular damage and interstitial inflammation and fibrosis.Hyperoxaluric nephropathy presents clinically as acute or chronic renal failure that may progress to endstage renal disease(ESRD).This sequence of events,well recognized in the past in primary and enteric hyperoxalurias,has also been documented in a few cases of dietary hyperoxaluria.Estimates of oxalate intake in patients with chronic dietary hyperoxaluria who developed chronic kidney disease or ESRD were comparable to the reported average oxalate content of the diets of certain populations worldwide,thus raising the question whether dietary hyperoxaluria is a primary cause of ESRD in these regions.Studies addressing this question have the potential of improving population health and should be undertaken,alongside ongoing studies which are yielding fresh insights into the mechanisms of intestinal absorption and renal excretion of oxalate,and into the mechanisms of development of oxalate-induced renal parenchymal disease.Novel preventive and therapeutic strategies for treating all types of hyperoxaluria are expected to develop from these studies.Robert H Glew Yijuan Sun Bruce L Horowitz Konstantin N Konstantinov Marc Barry Joanna R Fair Larry Massie Antonios H Tzamaloukas 2014World Journal of Nephrology2014,3,4:3
2Fluid balance concepts in medicine:Principles and practice显示文摘The regulation of body fluid balance is a key concern in health and disease and comprises three concepts. The first concept pertains to the relationship between total body water(TBW) and total effective solute and is expressed in terms of the tonicity of the body fluids. Disturbances in tonicity are the main factor responsible for changes in cell volume, which can critically affect brain cell function and survival. Solutes distributed almost exclusively in the extracellular compartment(mainly sodium salts) and in the intracellular compartment(mainly potassium salts) contribute to tonicity, while solutes distributed in TBW have no effect on tonicity. The second body fluid balance concept relates to the regulation and measurement of abnormalities of sodium salt balance and extracellular volume. Estimation of extracellular volume is more complex and error prone than measurement of TBW. A key function of extracellular volume, which is defined as the effective arterial blood volume(EABV), is to ensure adequate perfusion of cells and organs. Other factors, including cardiac output, total and regional capacity of both arteries and veins, Starling forces in the capillaries, and gravity also affect the EABV. Collectively, these factors interact closely with extracellular volume and some of them undergo substantial changes in certain acute and chronic severe illnesses. Their changes result not only in extracellular volume expansion, but in the need for a larger extracellular volume compared with that of healthy individuals. Assessing extracellular volume in severe illness is challenging because the estimates of this volume by commonly used methods are prone to large errors in many illnesses. In addition, the optimal extracellular volume may vary from illness to illness, is only partially based on volume measurements by traditional methods, and has not been determined for each illness. Further research is needed to determine optimal extracellular volume levels in several illnesses. For these reasons, extracellular volume in severe illness merits a separate third concept of body fluid balance.Maria-Eleni Roumelioti Robert H Glew Zeid J Khitan Helbert Rondon-Berrios Christos P Argyropoulos Deepak Malhotra Dominic S Raj Emmanuel I Agaba Mark Rohrscheib Glen H Murata Joseph I Shapiro Antonios H Tzamaloukas 2018World Journal of Nephrology2018,7,1:3
3Impedance plethysmography and thromboembolic disease显示文摘GLEW D COOPER T MITCHELMORE AE 1992Br J Radiol1992,65,:1
4Osteoehondral lesions of the talus: a revised classification 显示文摘Hepple S Winson IG Glew D 1999Foot Ankle Int1999,20,12:1
5Corpus luteum regression induced by prostagland in F2-alpha显示文摘McCracken JA Glew ME Scaramuzzi RJ 1970J Clin Endocrinol Metab1970,30,4:1
6Comparison of the use of a foot pump with the use of low-molecular-weight heparin for the prevention of deep-vein thrombosis after total hip replacement: a prospective, randomized trial显示文摘WARWICK D HARRISON J GLEW D 1998J Bone Joint Surg Am1998,80,8:1
7Mild phenotype in a patient with mosaic del(8p)/inv dup del(8p)显示文摘Hand M Gray C Glew G 2010Am J Med Genet A2010,152,:1
8Significance of Antioxidants for Seafood Safety and Human Health显示文摘Kulawik Piotr Ozogul Fatih Glew Robert 2012Journal of Agricultural and Food Chemistry2012,,3:1
9Serum cytosolic β-Glucosidase activity in a rat model necrotizing enterocolitis 显示文摘Dimmitt RA Glew R Colby C 2003Pediatr Res2003,54,:1
10Enzyme loading of erythrocytes显示文摘 Glew RH Schnure FW 1973Proc Natl Acad Sci1973,9,:1
11Characterization of a Major Hemagglutinin Protein from Mycoplasma gallisepticum显示文摘Markham P F Glew M D 1992Infect Immun1992,60,6:1
12Amino acid, mineral and fatty acid contend of pumpkin seeds add Cyperus es- culentus nuts in the republic of Niger 显示文摘Glew RH Glew RS chaung LT 2006Plant Foods for Human Nutrition2006,61,:1
13Molecular Cloning of a Member of the Gene Family That Encodes pMGA, a Hemagglutinin of Mycoplasma gallisepticum显示文摘Markham P F Glew M D 1993Infect Immun1993,61,3:1
14Nutrient Content of Four Edible Wild Plants from West Africa显示文摘Robert S. Glew Dorothy J. Vanderjagt L.-T. Chuang Y.-S. Huang M. Millson Robert H. Glew 2005Plant Foods for Human Nutrition2005,,4:1
15Evaluation of the thermodynamic functions for aqueous sodium chloride from equilibrium and calorimetric measurements below 154 ℃显示文摘Colin E Clarke W Glew D N 0,,02:1
16Walker,Expression of the pMGA Genes of Mycoplasma gallisepticum Is Controlled by Variation in the GAA Trinucleotide Repeat Lengths within the 5' Noncoding Regions显示文摘Glew M D Baseggio N Markham P F 1998Infect Immunol1998,66,:1
17Expression studies on four members of the pMGA multigene family in Mycoplasma gallisepticum S6显示文摘Michelle D Glew Philip F Markham 1995Micro1995,141,:1
18Osteochondral lesions of the talus:a revised classification显示文摘Hepple S Winson I G Glew D 1999Foot Ankle Int1999,20,12:1
19Expression of the pMGA genes of Mycoplasma gallisepticum is controlled by variation in the GAA trinucleotide repeats lengths within the 5' noncoding regions显示文摘Glew M D Baseggio N 1998Infect Immun1998,66,12:1
20Heat of Fusion System for Solar Energy Storage Subsystems for the Heating and Cooling of Building显示文摘Lane G A Glew D N Clark E C 1975Chalottesville Virginia USA1975,,:1
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