AndersonRJSchrierRW. Acute tubular necrosis. In: SchrierRWGottschalkCW eds., Diseases of the kidney. Boston: Little, Brown, 1988: 1413–1446.
2.
WhartonWWSandeenJLGradwohlSE, et al. Assessment of glomerular filtration rate (GFR) in intensive care patients (ICP) with renal dysfunction (RD) using 99mTc diethylene-triaminepenta-acetic acid (DTPA) (abstract). Am Soc Nephrol1990; 1: 297.
3.
KleinknechtDJungersPChanardJ, et al. Uremic and non-uremic complications in acute renal failure: evaluation of early and frequent dialysis on prognosis. Kidney Int1972; 1: 190–196.
4.
LeveyAS. Measurement of renal function in chronic renal disease. Kidney Int1990; 38:167–184.
5.
WessonLG. Renal hemodynamics in physiologic states. In: WessonLG ed., Physiology of the human kidney. New York: Grune & Stratton, 1969: 96–108.
6.
RoweJWAndresRTobinJD, et al. Age-adjusted standards for creatinine clearance. Ann Intern Med1976; 84:567–569.
7.
LeveyASPerroneRDMadiasNE. Serum creatinine and renal function. Annu Rev Med1988; 39:465–490.
8.
JacksonS.Creatinine in urine as an index of urinary excretion rate. Health Phys1966;12:843–850.
9.
MacKayEM. Kidney weight, body size and renal function. Arch Intern Med1932; 50:590–594.
10.
SmithHW. The reliability of inulin as a measure of glomerular filtration. In: SmithHW ed., The kidney: structure and function in health and disease. New York: Oxford University Press, 1955: 231–238.
11.
DuarteCGElvebackLRLiedtheRR. Creatinine. In: DuarteCG ed., Renal function tests: clinical laboratory procedures and diagnosis. Boston: Little, Brown, 1980: 1–28.
12.
BorsookHDubnoffJW. Hydrolysis of phosphocreatine and origin of urinary creatinine. J Biol Chem1947; 168:493–510.
13.
KubasikNPLisuzzoCWSameDG, et al. Multilayed film analysis: evaluation of ammonia and creatinine slides. Clin Biochem1984; 17:15–18.
14.
BonsnesRWTausskyHH. On colorimetric determination of creatinine by Jaffe reaction. J Biol Chem1945; 158:581–591.
15.
FindleyTJr. Excretion of endogenous “creatinine” by human kidney. Am J Physiol1938; 123:260–265.
16.
HusdanHRapoportA. Estimation of creatinine by the Jaffe reaction: a comparison of three methods. Clin Chem1968; 14: 222–238.
17.
MolitchMERodmanEHirschCADubinskyE. Spurious serum creatinine elevations in ketoacidosis. Ann Intern Med1980; 93:280–281.
18.
KrollMHKochTRDrusanoGLWarrenJW. Lack of interference with creatinine assays by four cephalosporin-like antibiotics. Am J Clin Pathol1984; 82:214–216.
Creatinine analysis. Ektachem test methodology. Health Sciences Markets Division, Publication MP2-34. Rochester, NY: Eastman Kodak Company, 1983.
21.
OsbergIMHammondKB. A solution to the problem of bilirubin interference with the kinetic Jaffe method for serum creatinine. Clin Chem1978; 24:1196–1197.
22.
GerardSKhayam-BashiH. Negative interference with the Ektachem (Kodak) enzymic assay for creatinine by high serum glucose (letter). Clin Chem1984; 30;1884.
SmithCHLandtMSteelmanMLadensonJH. The Kodak Ektachem 400 Analyzer evaluated for automated enzyme determination of plasma creatinine. Clin Chem1983; 29: 1422–1425.
25.
HeymsfieldSBMcManusCSmithJ, et al. Anthropometric measurement of muscle mass: revised equations for calculating bone-free arm muscle area. Am J Clin Nutr1982; 36: 680–690.
26.
CockcroftDWGaultMH. Prediction of creatinine clearance from serum creatinine. Nephron1976; 16:31–41.
27.
RefsumHEStrommeSB. Relationship between urine flow, glomerular filtration, and urine solute concentration during prolonged heavy exercise. Scand J Clin Lab Invest1975; 35: 775–780.
28.
SpriggsEl. On the excretion of creatinine and uric acid in some diseases involving the muscles. QJ Med1907; 1:63–87.
29.
ShafferP. The excretion of kreatinin and kreatin in health and disease. Am J Physiol1908; 23:1–22.
30.
SchillerWRLongCLBlakemoreWS. Creatinine and nitrogen excretion in seriously ill and injured patients. Surg Gynecol Obstet1979; 149:561–566.
31.
HeymsfieldSBArteagaCMcManusC, et al. Measurement of muscle mass in humans: validity of the 24-hour urinary creatinine method. Am J Clin Nutr1983; 37:478–494.
32.
HorberFFScheideggerJFreyFJ. Overestimation of renal function in glucocorticosteroid treated patients. Eur J Clin Pharmacol1985; 28:537–541.
33.
PapadakisMAArieffAI. Unpredictability of clinical evaluation of renal function in cirrhosis. Prospective study. Am J Med1987; 82:945–952.
34.
FriedmanRBAndersonREEntineSMHirshbergSB.Effect of diseases on clinical laboratory tests. Clin Chem1980;26:1D–476D.
35.
FitchCDSintonDW.A study of creatine metabolism in diseases cause muscle wasting. J Clin Invest1964;43:444–452.
36.
CrimMCCallowayDHMargenS.Creatine metabolism in man: creatine pool size and turnover in relation to creatinine intake. J Nutr1976;1106:371–381.
37.
CamaraAAArnkDReimozANewburghLH.The twentyfour hourly endogenous creatinine clearance as a clinical measure of the functional state of the kidneys. J Lab Clin Med1951;37:743–763.
38.
BleilerRESchedlHP.Creatinine excretion: variability and relationships to diet and body size. J Lab Clin Med1962;59:945–955.
39.
JonesJDBurnettPC.Implications of creatinine and gut flora in the uremic syndrome: induction of “creatinase” in colon contents of the rat by dietary creatinine. Clin Chem1972;18:280–84.
40.
GoldmanR.Creatinine excretion in renal failure. Proc Soc Exp Biol Med1954;85:446–448.
41.
ShannonJA.Renal excretion of creatinine in man. J Clin Invest1935;14:403–410.
42.
BauerJHBrooksCSBurchRN.Clinical appraisal of creatinine clearance as a measure of glomerular filtration rate. Am J Kidney Dis1982;2:337–346.
43.
MDRD Study Group (LeveyASBergRLGassmanJJ, et al). Creatinine filtration, secretion and excretion during progressive renal disease. Kidney Int1989; 36(suppl):S-73–S-80.
44.
BoschJPSaccaggiALauerA, et al. Renal functional reserve in humans: effect of protein intake on glomerular filtration rate. Am J Med1983;75:943–950.
45.
ShemeshOGolbetzHKrissJPMyersBD.Limitations of creatinine as a filtration marker in glomerulopathic patients. Kidney Int1985;28:830–838.
46.
NanjiAAAndersonFH.Marked variation in creatinine clearance estimation in patients receiving parenteral nutrition (letter). Nephron1984;36:282–283.
47.
DubbJWStoteRMFamiliarRG, et al. Effect of cimetidine on renal function in normal man. Clin Pharmacol Ther1978;24:76–83.
48.
BerglundGKillanderJPompeiusR.Effect of trimethoprim-sulfamethoxazole on the renal excretion of creatinine in man. J Urol1975; 114: 802–808.
49.
OdlindBHallgrenRSohtellMLindstromB.Is 125I-iothalamate an ideal marker for glomerular filtration?Kidney Int1985;27:9–16.
50.
De W'ardenerHE.The kidney: an outline of normal and abnormal structure and function, 4th ed.Edinburgh: Churchill Livingstone, 1973: 33–41.
51.
MillerBFLeafAMambyARMillerZ.Validity of the endogenous creatine clearance as a measure of glomerular filtration rate in the diseased human kidney. J Clin Invest195231: 309–313.
52.
MyersBDChuiFHilbermanMMichaelsAS.Transtubular leakage of glomerular filtrate in human acute renal failure. Am J Physiol1979;237:F319–F325.
53.
53 SkovPE.Glomerular filtration rate in patients with severe and very severe renal insufficiency. Determined by simultaneous inulin, creatinine and 125 iothalamate clearance. Acta Med Scand1970; 187: 419–428.
54.
BerlyneGM.Endogenous creatinine clearance and the glomerular filtration rate. Am Heart J1965;70:143–145.
55.
AndersonCFJaecksDMBallonHS, et al. Renal handling of creatinine in neoplastic and non-neoplastic patients. Clin Sci197038: 555–562.
56.
KimKEOnestiGRamirezO, et al. Creatinine clearance in renal disease. A reappraisal. Br Med J1969; 4: 11–14.
57.
HoodBAttmanP-OAhlmenJJagenburgR.Renal hemodynamics and limitations of creatinine clearance in determining filtration rate in glomerular disease. Scand J Urol Nephrol1971;5:154–161.
58.
LubowitzHSlatopolskyEShankelS, et al. Glomerular filtration rate: determination in patients with chronic renal disease. JAMA1967;199:252–256.
59.
LavenderSHiltonPJJonesNF.The measurement of glomerular filtration-rate in renal disease. Lancet1969;2:1216–1218.
60.
PerroneRDSteinmanTIBeckGJ, et al. Utility of radioisotopic filtration markers in chronic renal insufficiency: simultaneous comparison of 125 I-iothalamate, l69Yb-DTPA, 99mTc-DTPA, and inulin. Am J Kidney Dis1990;16:224–235.
61.
JelliffeKW.Creatinine clearance: bedside estimate (letter). Ann Intern Med1973;79:604–605.
62.
SalazarDECorcoranGB.Predicting creatinine clearance and renal drug clearance in obese patients from estimated fat-free body mass. Am J Med1988;84:1053–1060.
63.
BjornssonTDCocchettoDMMcGowanEX, et al. Komogram for estimating creatinine clearance. Clin Pharmacokinet1983;8:365–369.
64.
GatesGF.Creatinine clearance estimation from serum creatinine values: an analysis of three mathematical models of glomerular function. Am J Kidney Dis1985;5:199–205.
65.
RolinHAHallPMWeiR.Inaccuracy of estimated creatinine clearance for prediction of iothalamate glomerular filtration rate. Am J Kidney Dis1984;4:48–54.
66.
BankNMutzBFAynedjianHS.The role of “leakage” of tubular fluid in anuria due to mercury poisoning. J Clin Invest1967;46:695–704.
67.
TannerGASloanKLSophasanS.Effects of renal artery occlusion on kidney function in the rat. Kidney Int1973;4:377–389.
68.
BianchiCBonadioMDonadioC, et al. Measurement of glomerular filtration in man using DTPA-99mTC. Nephron1979;24:174–178.
69.
BarbourGLCrumbCKBoydCM, et al. Comparison of inulin, iothalamate, and 99mTc-DTPA for measurement of glomerular filtration rate. J Nucl Med1976;17:317–320.
70.
RehlingMMollerMLThamdrupB, et al. Simultaneous measurement of renal clearance and plasma clearance of 99mTclabelled diethylenetriaminepenta-acetate, 51 Cr-labelIed ethylenediamine tetra-acetate and inulin in man. Clin Sci1984;66:613–619.
71.
DubovskyEVRussellCD.Quantitation of renal function with glomerular and tubular agents. Semin Nucl Med1982;12:308–329.
72.
BalachandranSToguriAGPetrusickTWAbbottLC.Comparative evaluation of quantitative glomerular filtration rate measured by isotopic and nonisotopic methods. Clin Nucl Med1981;6:150–153.
73.
FisherMVeallN.Glomerular filtration rate estimation based on a single blood sample. Br Med J1975;2:542.
74.
ConstableARHusseinMMAlbrechtMP.Renal clearance determination from single plasma sample. In: HollenbergNLangeS eds., Radionuclides in nephrology. Stuttgart: Thieme Stratton, 1980: 62–66.
75.
GatesGF.Glomerular filtration rate: estimation from fractional renal accumulation of 99mTc-DTPA (Stannous). Am J Radiol1982;138:565–570.
76.
NielsenSPMollerMLTrap-JensenJ.99mTc-DTPA scintillation-camera renography: a new method for estimation of single-kidney function. J Nucl Med1977;18:112–117.
77.
SIgmanEMElwoodCMKnoxF.The measurement of glomerular filtration rate in man with sodium iothalamate l31I (Conray). J Nucl Med1965;7:60–68.
78.
ElwoodCMSigmanEM.The measurement of glomerular filtration rate and effective renal plasma flow in man by iothalamate [125I] and iodopyracet I 131. Circulation1967;36:441–448.
79.
OttNTWilsonDM.A simple technique for estimating glomerular filtration rate with subcutaneous injection of [125I] iothalamate. Mayo Clin Proc1975;50:664–668.
80.
StrikerGESchainuckLICutlerREBendittEP.Structuralfunctional correlations in renal diseases: part I: a method for assaying and classifying histopathologic changes in renal disease. Hum Pathol1970;1:615–630.