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References

  1. [1]Tehrani, H.Y., Petros, J.G., Kumar, R.R. et al, Markers of severe appendicitis. Am Surg. 1999;65:453–455.
  2. [2]Hardin, D.M. Jr. Acute appendicitis: review and update. Am Fam Physician. 1999;60:2027–2034.
  3. [3]Pieper, R., Kager, L. The incidence of acute appendicitis and appendectomy. An epidemiological study of 971 cases. Acta Chir Scand. 1982;148:45–49.
  4. [4]Ryden, C.I., Grunditz, T., Janzon, L. Acute appendicitis in patients above and below 60 years of age. Incidence rate and clinical course. Acta Chir Scand. 1983;149:165–170.
  5. [5]Gronroos, J.M., Forsstrom, J.J., Irjala, K. et al, Phospholipase A2, C-reactive protein, and white blood cell count in the diagnosis of acute appendicitis. Clin Chem. 1994;40:1757–1760.
  6. [6]Andersson, R.E., Hugander, A.P., Ghazi, S.H. et al, Diagnostic value of disease history, clinical presentation, and inflammatory parameters of appendicitis. World J Surg. 1999;23:133–140.
  7. [7]Gurleyik, G., Gurleyik, E., Cetinkaya, F. et al, Serum interleukin-6 measurement in the diagnosis of acute appendicitis. ANZ J Surg. 2002;72:665–667.
  8. [8]Bachmann, L.M., Bischof, D.B., Bischofberger, S.A. et al, Systematic quantitative overviews of the literature to determine the value of diagnostic tests for predicting acute appendicitis: study protocol. BMC Surg. 2002;2:2.
  9. [9]Yetkin, G., Basak, M., Isgor, A. et al, Can negative appendectomy rate be decreased by using spiral computed tomography without contrast material?. Acta Chir Belg. 2002;102:334–337.
  10. [10]Hershko, D.D., Sroka, G., Bahouth, H. et al, The role of selective computed tomography in the diagnosis and management of suspected acute appendicitis. Am Surg. 2002;68:1003–1007.
  11. [11]Bolandparvaz, S., Vasei, M., Owji, A.A. et al, Urinary 5-hydroxy indole acetic acid as a test for early diagnosis of acute appendicitis. Clin Biochem. 2004;37:985–989.
  12. [12]Ilkhanizadeh, B., Owji, A.A., Tavangar, S.M. et al, Spot urine 5-hydroxy indole acetic acid and acute appendicitis. Hepatogastroenterology. 2001;48:609–613.
  13. [13]Terzioglu, B., Aypak, C., Yananli, H.R. et al, 5-hydroxytryptamine release in the anterior hypothalamic and the hippocampal areas of cholestatic rats. Life Sci. 2006;78:1078–1083.
  14. [14]Kema, I.P., de Vries, E.G., Muskiet, F.A. Clinical chemistry of serotonin and metabolites. J Chromatogr B Biomed Sci Appl. 2000;747:33–48.
  15. [15]Beck, J.R., Shultz, E.K. The use of relative operating characteristic (ROC) curves in test performance evaluation. Arch Pathol Lab Med. 1986;110:13–20.
  16. [16]Apak, S., Kazez, A., Ozel, S.K. et al, Spot urine 5-hydroxyindoleacetic acid levels in the early diagnosis of acute appendicitis. J Pediatr Surg. 2005;40:1436–1439.
  17. [17]Oruc, M.T., Kulah, B., Ozozan, O. et al, The value of 5-hydroxy indole acetic acid measurement in spot urine in diagnosis of acute appendicitis. East Afr Med J. 2004;81:40–41.
  18. [18]Mihmanli, M., Uysalol, M., Coskun, H. et al, The value of 5-hydroxyindolacetic acid levels in spot urine in the diagnosis of acute appendicitis. Ulus Travma Acil Cerrahi Derg. 2004;10:173–176.
  19. [19]Mentes, O., Eryilmaz, M., Harlak, A. et al, The importance of urine 5-hydroxyindoleacetic acid levels in the early diagnosis of acute appendicitis. Am J Emerg Med. 2009;27:409–412.
  20. [20]Hernandez, R., Jain, A., Rosiere, L. et al, A prospective clinical trial evaluating urinary 5-hydroxyindoleacetic acid levels in the diagnosis of acute appendicitis. Am J Emerg Med. 2008;26:282–286.

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