Computed tomography urography in macroscopic hematuria: a retrospective study with implications for standard care

Johan Jendeberg1, Alma Björkman2, Pär Dahlman3

  • 1Department of Radiology, Faculty of Medicine and Health, Örebro University, Örebro, Sweden.

Insights

Standardized care pathways for macrohematuria in patients over 50 are often delayed. Computed tomography urography (CTU) reveals low rates of upper tract tumors, suggesting alternative diagnostic approaches may improve care.

Area of Science:

  • Urology
  • Radiology
  • Public Health

Background:

  • Standardized care pathways (SCP) for macrohematuria (≥50 years) in Sweden mandate four-phase computed tomography urography (CTU) before cystoscopy.
  • SCP lead times for CTU and treatment are met in less than 25% of patients.
  • This study evaluates CTU findings, radiation dose, and SCP implications for macrohematuria.

Purpose of the Study:

  • To retrospectively analyze the incidence of CTU-diagnosed upper urinary tract (UUT), kidney, and bladder tumors and calculi in patients with macrohematuria.
  • To assess the radiation dose associated with CTU.
  • To evaluate the implications of these findings for the standardized care pathway.

Main Methods:

  • Retrospective review of 4491 consecutive CTU reports for macrohematuria indication.
  • Tumor findings verified via biopsy/cytology and follow-up.
  • Effective patient radiation doses were calculated.

Main Results:

  • In patients aged ≥50 years (n=3915), the incidence of UUT/kidney/bladder tumors was 0.9%/1.0%/6.9%, respectively.
  • The incidence of calyceal, pelvic, ureteral, and bladder calculi was 13%, 2.0%, 2.7%, and 2.2%, respectively.
  • Median effective radiation dose varied based on the number of CTU phases used.

Conclusions:

  • The low incidence of UUT and kidney tumors suggests a need to optimize SCP lead times for bladder tumors.
  • Alternative diagnostic pathways, including cystoscopy and clinical risk evaluation before CTU, should be considered.
  • Optimizing radiation dose by reducing CTU phases without compromising diagnostic accuracy is recommended.

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