Appendix Bibliography (list of all articles cited and what chapter cited in)




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{cited in: Ch 3-8}


DeLong ER, Delong DM, Clark-Pearson DL. (1988). Comparing the areas under two or more

correlated receiver operating characteristic curves: a nonparametric approach. Biometrics

44(3):837-845. {cited in: Ch 6-2}


Devereux RB, Wachtell K, Gerdts E, el al. Prognostic significance of left ventricular mass

change during treatment of hypertension. JAMA 292(19):2350-2356. {cited in: Ch 5-23}

Dexter F, Chestnut DH. (1995). Analysis of statistical tests to compare visual analog scale

measurements among groups. Anesthesiology 82(4):896-902. {cited in: Ch 2-6}


Diehr P, Yanez D, Ash A, et al. (1999). Methods for analyzing health care utlization and costs.

Ann Rev Public Health 20:125-44. {cited in: Ch 5-22}


Diggle PJ, Liang K-Y, Zeger SL. (2000). Analysis of Longitudinal Data. Oxford, Oxford

University Press. {cited in: Ch 5-20}


Doshi J, Glick H, Polsky D. (2005). Evaluating treatment costs in randomized trials. Statistical

Considerations in Economic Evaluations. ISPOR 10th Annual International Meeting,

May 15. PowerPoint slide presentation available at

http://www.uphs.upenn.edu/dgimhsr/acadhlth.06.htm

{cited in: Ch 5-22}


Dunnett C, Goldsmith C. (2006). When and how to do multiple comparisons. In Buncher CR,

Tsay J-Y, eds., Statistics in the Pharmaceutical Industry. 3rd ed. New York, Chapman &

Hall/CRC, pp. 421-452. {cited in: Ch 2-8}


Dupont WD. (2002). Statistical Modeling for Biomedical Researchers: A Simple Introduction to

the Analysis of Complex Data. Cambridge UK, Cambridge University Press. {cited in:

Ch 3-14, 5-5, 5-6, 5-11, 5-12, 5-13, 5-14, 5-15, 5-16, 5-18, 5-19, 5-20, 5-21}


Efron B. (1979). Bootstrap methods: another look at the jackknife. Annals of Statistics 7:1-26.

{cited in: Ch 5-13}


Efron, B. and R. Tibshirani. (1993). An Introduction to the Bootstrap. London: Chapman & Hall.

{cited in: Ch 2-16}


Efron B, Tibshirani RJ. (1998). An Introduction to the Bootstrap. Boca Raton, Florida,

Chapman & Hall/CRC. {cited in: Ch 5-13}


Efron B, Stein C. (1981). The jackknife estimate of variance. Annals of Statistics 9:586-596.

{cited in: Ch 5-13}


Efron B, Tibshirani R. (1986). Bootstrap methods for standard errors, confidence intervals, and

other measures of statistical accuracy. Statistical Science 1:54-77. {cited in: Ch 5-13}


Eisenhart C. (1947). The assumptions underlying the analysis of variance, Biometrics 3;1-21.

{cited in: Ch 5-10}


Ellison DH, Berl T. (2007). The syndrome of inappropriate antidiuresis. N Engl J Med 356;2064-

72. {cited in: Ch 1-8}


Elwood JM. (1988). Causal Relationships in Medicine: a Practical System for Critical

Appraisal. New York, Oxford University Press. {cited in: Ch 3-4, 5-2}


Everitt, BS, Landau S, Leese M. (2001). Cluster Analysis, 4th ed. New York, John Wiley &

Sons. {cited in: Ch 5-24}


FDA. (2007). Statistical guidance on reporting results from studies evaluating diagnostic tests,

Center for Devices and Radiological Health, March 13, 2007.

http://www.fda.gov/cdrh/osb/guidance/1620.pdf. {cited in: Ch 6-2, 6-3}


Finner H. (1993). On a monotonicity problem in step-down multiple test procedures. Journal of

the American Statistical Association 88:920-923. {cited in: Ch 2-8}


Finney DJ. (1947). The estimation from original records of the relationship between dose

and quantal response. Biometrika 1947;34:320-334. {cited in: Ch 2-11, 5-5}


Fischer B, Lassen U, Mortensen J, et al. (2009). Preoperative staging of lung cancer with

combined PET-CT. N Engl J Med 361(1):32-39. {cited in: Ch 2-4}


Fisher RA. (1935). The Design of Experiments. Edinburgh, Oliver & Boyd. {cited in: Ch 2-8}


Fleiss JL. (1973). Statistical Methods For Rates and Proportions. New York, John Wiley &

Sons. pp.21-22. {cited in: Ch 2-5}


Fleiss, JL. (1981). Statistical Methods for Rates and Proportions. 2nd ed. New York: Wiley.

{cited in: Ch 2-16}


Fleiss JL. (1986). The Design and Analysis of Clinical Experiments. New York, John

Wiley & Sons. {cited in: Ch 5-16, 5-18}


Fleiss JL, Levin B, Pai MC. (2003). Statistical Methods for Rates and Proportions, 3rd ed.

Hokoken, NJ, John Wiley & Sons. {cited in: Ch 2-16, 5-9}


Florez JC, Jablonski KA, Bayley N, et al. (2006). TCF7L2 polymorphisms and progression to

diabetes in the diabetes prevention program. NEJM 355(3):241-250. {cited in: Ch 2-8}


Fonseca EB, Celik E, Parra M, et al. (2007). Progesterone and the risk of preterm birth among

women with a short cervix. N Engl J Med 357;5:462-469. {cited in: Ch 3-11}


Fowler VG, Miro JM, Hoen B, et al. (2005) Staphylococcus aureus endocarditis: a consequence

of medical progress. JAMA 293(4):3012-21. {cited in: Ch 3-6, 3-11}


Freedman LS, Tables of the number of patients required in clinical trials using the logrank test.

Statistics in Medicine 1982;1:121-129. {cited in: Ch 4-1}


Freemantle N. (2001). Interpreting the results of secondary end points and subgroup analyses in

clinical trials: should we lock the crazy aunt in the attic? BMJ 322:989-91. {cited in: Ch

2-8}


Freireich EO et al. (1963). The effect of 6-mercaptopmine on the duration of steroid induced

remission in acute leukemia. Blood 21:699-716. {cited in: Ch 5-7, 5-23}

Frison L, Pocock S. (1992). Repeated measures in clinical trials: analysis using mean summary

statistics and its implications for design. Statistics in Medicine 11:1685-1704. {cited in:

Ch 5-16, 5-18}


Gardner MJ, Altman D. (1986). Confidence intervals rather than P values: estimation rather than

hypothesis testing. BMJ 292:746-50. {cited in: Ch 2-13}


Gart JJ. (1976). Letter: Contingency tables. The American Statistician 30:204. {cited in: Ch 3-

11, 5-17}


Gastwirth JL, Rubin H. (1971). Effect of dependence on the level of some one-sample tests.

Journal of the American Statistical Association. 66:816-820. {cited in: Ch 5-10, 5-22}


Glantz SA, Slinker BK. (2001). Primer of Applied Regression and Analysis of Variance. 2nd ed.

New York, McGraw-Hill. {cited in: Ch 2-8}


Glass GV, Peckham PD, Sanders JR. (1972). Consequences of failure to meet the assumptions

underlying the fixed effects analysis of variance and covariance. Reviews in Educational

Research. 42:237-288. {cited in: Ch 5-10, 5-22}


Goldberger AS. (1968). The interpretation and estimation of Cobb-Douglas functions.

Econometrica, 36:464-472. {cited in: Ch 5-11, 5-22}


Gonzalez-Martinez JA, Gupta A, Kotagal P, et al. (2005). Hemispherectomy for catastrophic

epilepsy in infants. Epilepsia 46(9):1518-25. {cited in: Ch 2-4}


Grambsch PM, Therneau TM. (1994). Proportional hazards tests and diagnostics based on

weighted residuals. Biometrika 81:515-526. {cited in: Ch 5-7, 5-23}


Granados JAT. (1997). On the terminology and dimensions of incidence. J Clin Epidemiol

50(8):891-897. {cited in: Ch 3-5}


Gregoire AJP, Kumar R, Everitt BS et al. (1996). Transdermal oestrogen for the treatment of

severe post-natal depression. The Lancet 347:930-934. {cited in: Ch 5-20, 5-21}


Grimes DA, Schulz KF. (2002). Bias and causal associations in observational research. Lancet

359:248-52. {cited in: Ch 3-8}


Greene WL, Concato J, Feinstean AR. (2000). Claims of equivalence in medical research: are

they supported by the evidence. Ann Intern Med 132:715-722. {cited in: Ch 2-15}


Greenland S. (1987) editor. Evolution of Epidemiologic Ideas: Annotated Readings on

Concepts and Methods. Chestnut Hill, Massachusetts. {cited in: Ch 2-12, 3-2 3-11, 5-7,

5-23}


Greenland S. (1989). Modeling and variable selection in epidemiologic analysis. Am J Public

Health 79(3):340-349. {cited in: Ch 2-10, 3-8, 5-7, 5-11, 5-12}


Greenland S. (1991). On the logical justificaiton of conditional tests for two-by-two contingency

tables. The American Statistician 45(3):248-251. {cited in: Ch 2-4}


Greenland S. (1998). Chapter 19. Basic methods for sensitivity analysis and external adjustment. In, Rothman KJ, Greenland S. Modern Epidemiology, 2nd ed. Philadelphia PA,

Lippincott-Raven Publishers, pp. 343-357. {cited in: Ch 3-8, 3-13}


Greenland S. (2008). Chapter 19. Bias analysis. In, Rothman KJ, Greenland S, Lash TL. Modern

Epidemiology, 3rd ed. Philadelphia PA, Lippincott Williams & Wilkins, pp. 345-380.

{cited in: Ch 3-13}


Greenland S, Finkle WD. (1995). A critical look at methods for handling missing covariates in

epidemiologic regression analysis. Am J Epidemiol 142(12):1255-64. {cited in: Ch 5-9}


Greenland S, Morgenstern H. Matching and efficiency in cohort studies. Am J Epidemiol

131:151-159. {cited in: Ch 5-17}


Greenland S, Rothman KJ. (2008). Chapter 14. Introduction to categorical statistics. In, Rothman

KJ, Greenland S, Lash TL. Modern Epidemiology, 3rd ed. Philadelphia PA, Lippincott

Williams & Wilkins, pp. 238-257. {cited in: Ch 3-10}


Greenland S, Thomas DC. (1982). On the need for the rare disease assumption in case-control

studies. Am J Epidemiol 116(3):547-553. with erratum in Am J Epidemiol 1990;131(6):1102. {cited in: Ch 3-14}


Hak E, Hoes AW, Grobbee DE, Lammers JWJ, et al. (2003). Conventional influenza vaccination

is not associated with complications in working-age patients with asthma or chronic

obstructive pulmonary disease. Am J Epidemiol 157:692-700. {cited in: Ch 5-8}


Haldane JBS. (1956). The estimation and significance of logarithm of a ratio of

frequencies. Annals of Human Genetics 20:309-11. {cited in: Ch 3-10, 5-6}


Hamilton LC. (2003). Statistics With Stata. Updated for Version 7. Belmont CA, Wadsworth

Group/Thomson Learning. {cited in: Ch 5-4}


Hamilton LC. (2006). Statistics with Stata. Updated for Version 9. Belmont CA, Thompson

Brooks/Cole. {cited in: Ch 5-11, 5-12, 5-22, 5-24}


Hamilton C, Stamey J. (2007). Using Bland-Altman to assess agreement between two medical devices—don’t forget the confidence intervals! J Clin Monit Comput 21:331-33. {cited

in: Ch 2-17}


Hardin JW, Hilbe JM. (2007). Generalized linear models and extensions, 2nd ed. College Station

TX, Stata Press. {cited in: Ch 5-22}


Harre R. (1981). The positivist-empiricist approach and its alternative. In Reason P and Rowan J

(eds) Human Inquiry: a Sourcebook of New Paradigm Research. New York, John Wiley.

{cited in: Ch 3-4}


Harrell FE Jr. (2001). Regression Modeling Strategies With Applications to Linear Models,

Logistic Regression, and Survival Analysis. New York, Springer. {cited in: Ch 2-

12, 5-9, 5-7, 5-14, 5-23}


Harrell FE, Califf RM, Pryor DB, et al. (1982). Evaluating the yield of medical tests. JAMA

247(18):2543-2546. {cited in: Ch 5-14, 5-7, 5-23}


Harrell FE, Lee KL, Califf RM, et al. (1984). Regression modeling strategies for improved

prognostic prediction. Stat Med 3:143-152. {cited in: Ch 5-14}


Harrell Jr FE, Lee KL, Mark DB. (1996). Tutorial in Biostatistics: Multivariable prognostic

models: issues in developing models, evaluating assumptions and adequacy, and

measuring and reducing errors. Statist Med 15:361-387{cited in: Ch 2-5, 5-14}


Haskal ZJ, Trerotola S, Dolmatch B, et al. (2010). Stent graft versus balloon angioplasty for

failing dialysis-access grafts. N Engl J Med 362(6):494-503. {cited in: Ch 2-15}


Hayward RA, Kent DM, Vijan S, Hofer TP. (2005). Reporting clinical trial results to inform

providers, payers, and consumers. Health Affairs 24(6):1571-1581. {cited in: Ch 5-5}


Heeren T, D’Agostino R. (1987). Robustness of the two independent samples t-test when applied

to ordinal scaled data. Stat Med 6:79-90. {cited in: Ch 2-6}


Hidebrand DK. (1986). Statistical Thinking for Behavioral Scientists. Boston, Duxbury Press.


Hill AB. (1965). The environment and disease: association or causation? Proceedings of the

Royal Society of Medicine. 58:295-300. Reprinted in Greenland S, editor (1987). Evolution of Epidemiologic Ideas: Annotated Readings on Concepts and Methods. Chestnut Hill, Massachusetts, Epidemiology Resources, Inc. pp. 14-20. {cited in: Ch 3-3}


Hillman P, Young NS, Schubert J, et al. (2006). The complement inhibitor eculizumab in

paroxysmal nocturnal hemoglobinuria. N Engl J Med 355(12):1233-43. {cited in: Ch 5-

20}


Hinkle DE, Wiersma W, Jurs SG. (1998). Applied Statistics for the Behavioral Sciences, 4th ed.

Boston, Houghton Mifflin Company. {cited in: Ch 2-5, 2-9, 3-6}


Hoenig JM, Heisey DM. (2001). The abuse of power: the prevasive fallacy of power calculations

for data analysis. The American Statistician 55(1):19-24. {cited in: Ch 2-5, 2-15}


Holm S. (1979). A simple sequentially rejective multiple test procedure. Scan J Stat 6:65-70.

{cited in: Ch 2-8}


Hommel G. (1989). A comparison of two modified Bonferroni procedures. Biometrika 76:624-

625. {cited in: Ch 2-8}


Hopkins T. (1982). How to Master the Art of Selling. 2nd ed, New York, Warner Books. {cited

in: Ch 3-4}


Horton NJ, Switzer SS. (2005). Statistical methods in the Journal. [letter] NEJM 353;18:1977-

79. {cited in: Ch 2-5, 2-8, 3-5}


Hosmer DW, Lemeshow S. (2000) Applied Logistic Regression. 2nd ed. New York, John Wiley

& Sons. {cited in: Ch 2-10, 5-2, 5-7, 5-14, 5-23}


Hovi P, Andersson S, Eriksson JG, et al. (2007). Glucose regulation in young adults with very

low birth weight. N Engl J Med 356(320):2053-63. {cited in: Ch 2-5}


Howe GR, Choi BCK. (1983). Methodological issues in case-control studies: validity and power

of various design/analysis strategies. Int J Epidemiol 12:238-245. {cited in: Ch 5-17}


Huberman M, Langholz B. (1999). Application of the missing-indicator method in matched case-

control studies with incomplete data. Am J Epidemiol 150(12):1340-5. {cited in: Ch 5-9}


Hung HMJ, Wang, S-J. (2004). Multiple testing of noninferiority hypotheses in active controlled

trials. J Biopharm Statist 14(2):327-335. {cited in: Ch 2-15}


Jann B. (2008). Multinomial goodness-of-fit: large sample tests with survey design correction

and exact tests for small samples. The Stata Journal 8(2):147-169. {cited in: Ch 2-18}


J Thorac Cardiovasc Surg (2008).
1   2   3   4

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