Skip to main content
Erschienen in: Journal of Digital Imaging 1/2012

01.02.2012

An Algorithm for Intelligent Sorting of CT-Related Dose Parameters

verfasst von: Tessa S. Cook, Stefan L. Zimmerman, Scott R. Steingall, William W. Boonn, Woojin Kim

Erschienen in: Journal of Imaging Informatics in Medicine | Ausgabe 1/2012

Einloggen, um Zugang zu erhalten

Abstract

Imaging centers nationwide are seeking innovative means to record and monitor computed tomography (CT)-related radiation dose in light of multiple instances of patient overexposure to medical radiation. As a solution, we have developed RADIANCE, an automated pipeline for extraction, archival, and reporting of CT-related dose parameters. Estimation of whole-body effective dose from CT dose length product (DLP)—an indirect estimate of radiation dose—requires anatomy-specific conversion factors that cannot be applied to total DLP, but instead necessitate individual anatomy-based DLPs. A challenge exists because the total DLP reported on a dose sheet often includes multiple separate examinations (e.g., chest CT followed by abdominopelvic CT). Furthermore, the individual reported series DLPs may not be clearly or consistently labeled. For example, “arterial” could refer to the arterial phase of the triple liver CT or the arterial phase of a CT angiogram. To address this problem, we have designed an intelligent algorithm to parse dose sheets for multi-series CT examinations and correctly separate the total DLP into its anatomic components. The algorithm uses information from the departmental PACS to determine how many distinct CT examinations were concurrently performed. Then, it matches the number of distinct accession numbers to the series that were acquired and anatomically matches individual series DLPs to their appropriate CT examinations. This algorithm allows for more accurate dose analytics, but there remain instances where automatic sorting is not feasible. To ultimately improve radiology patient care, we must standardize series names and exam names to unequivocally sort exams by anatomy and correctly estimate whole-body effective dose.
Literatur
1.
Zurück zum Zitat Maitino AJ, Levin DC, Parker L, Rao VM, Sunshine JH: Nationwide trends in rates of utilization of noninvasive diagnostic imaging among the medicare population between 1993 and 1999. Radiology 227:113–117, 2003PubMedCrossRef Maitino AJ, Levin DC, Parker L, Rao VM, Sunshine JH: Nationwide trends in rates of utilization of noninvasive diagnostic imaging among the medicare population between 1993 and 1999. Radiology 227:113–117, 2003PubMedCrossRef
2.
Zurück zum Zitat Levin DC, Rao VM, Parker L, Frangos AJ, Sunshine JH: Recent trends in utilization rates of abdominal imaging: the relative roles of radiologists and nonradiologist physicians. JACR 5:744–747, 2008PubMed Levin DC, Rao VM, Parker L, Frangos AJ, Sunshine JH: Recent trends in utilization rates of abdominal imaging: the relative roles of radiologists and nonradiologist physicians. JACR 5:744–747, 2008PubMed
3.
Zurück zum Zitat Sinclair WK, Adelstein SJ, Carter MW, Harley JH, Moeller DW: Ionizing radiation exposure of the population of the United States. Tech. Rep. 93, National Council of Radiation Protection, 1987 Sinclair WK, Adelstein SJ, Carter MW, Harley JH, Moeller DW: Ionizing radiation exposure of the population of the United States. Tech. Rep. 93, National Council of Radiation Protection, 1987
4.
Zurück zum Zitat Kase KR et al: Ionizing radiation exposure of the population of the United States. Tech. Rep. 160, National Council of Radiation Protection, 2009 Kase KR et al: Ionizing radiation exposure of the population of the United States. Tech. Rep. 160, National Council of Radiation Protection, 2009
5.
Zurück zum Zitat Brenner DJ, Hall EJ: Computed tomography: an increasing source of radiation exposure. NEJM 357(22):2277–2284, 2007PubMedCrossRef Brenner DJ, Hall EJ: Computed tomography: an increasing source of radiation exposure. NEJM 357(22):2277–2284, 2007PubMedCrossRef
6.
Zurück zum Zitat Brody A, Frush D, Huda W, Brent R: Radiation risk to children from computed tomography. Pediatrics 120(3):677, 2007PubMedCrossRef Brody A, Frush D, Huda W, Brent R: Radiation risk to children from computed tomography. Pediatrics 120(3):677, 2007PubMedCrossRef
7.
Zurück zum Zitat de Gonzalez AB, Mahesh M, Kim K, Bhargavan M, Lewis R, Mettler F, Land C: Projected cancer risks from computed tomographic scans performed in the United States in 2007. Arch Intern Med 169(22):2071–2077, 2009CrossRef de Gonzalez AB, Mahesh M, Kim K, Bhargavan M, Lewis R, Mettler F, Land C: Projected cancer risks from computed tomographic scans performed in the United States in 2007. Arch Intern Med 169(22):2071–2077, 2009CrossRef
8.
Zurück zum Zitat Martin D, Semelka R: Health effects of ionising radiation from diagnostic CT. Lancet 367(9524):1712–1714, 2006PubMedCrossRef Martin D, Semelka R: Health effects of ionising radiation from diagnostic CT. Lancet 367(9524):1712–1714, 2006PubMedCrossRef
9.
Zurück zum Zitat Amis JES, Butler PF, Applegate KE, Birnbaum SB, Brateman LF, Hevezi JM, Mettler FA, Morin RL, Pentecost MJ, Smith GG, Strauss KJ, Zeman RK: American College of Radiology white paper on radiation dose in medicine. JACR 4:272–284, 2007PubMed Amis JES, Butler PF, Applegate KE, Birnbaum SB, Brateman LF, Hevezi JM, Mettler FA, Morin RL, Pentecost MJ, Smith GG, Strauss KJ, Zeman RK: American College of Radiology white paper on radiation dose in medicine. JACR 4:272–284, 2007PubMed
10.
Zurück zum Zitat DICOM Standards Committee: DICOM standard supplement 127: CT radiation dose reporting, 2007 DICOM Standards Committee: DICOM standard supplement 127: CT radiation dose reporting, 2007
11.
Zurück zum Zitat DICOM Standards Committee: DICOM standard part 16: Content mapping resource, 2008 DICOM Standards Committee: DICOM standard part 16: Content mapping resource, 2008
13.
Zurück zum Zitat Goske M, Applegate K, Boylan J, Butler P, Callahan M, Coley B, Farley S, Frush D, Hernanz-Schulman M, Jaramillo D, et al: The Image Gently campaign: increasing CT radiation dose awareness through a national education and awareness program. Pediatr Radiol 38(3):265–269, 2008PubMedCrossRef Goske M, Applegate K, Boylan J, Butler P, Callahan M, Coley B, Farley S, Frush D, Hernanz-Schulman M, Jaramillo D, et al: The Image Gently campaign: increasing CT radiation dose awareness through a national education and awareness program. Pediatr Radiol 38(3):265–269, 2008PubMedCrossRef
16.
Zurück zum Zitat Neumann RD, Bluemke DA: Tracking radiation exposure from diagnostic imaging devices at the NIH. JACR 7(2):87–89, 2010PubMed Neumann RD, Bluemke DA: Tracking radiation exposure from diagnostic imaging devices at the NIH. JACR 7(2):87–89, 2010PubMed
18.
Zurück zum Zitat Christner JA, Kofler JM, McCollough CH: Estimating effective dose for CT using dose-length product compared with using organ doses: consequences of adopting International Commission on Radiological Protection Publication 103 or dual-energy scanning. Am J Roentgenol 194(4):881–889, 2010. doi:10.2214/AJR.09.3462 CrossRef Christner JA, Kofler JM, McCollough CH: Estimating effective dose for CT using dose-length product compared with using organ doses: consequences of adopting International Commission on Radiological Protection Publication 103 or dual-energy scanning. Am J Roentgenol 194(4):881–889, 2010. doi:10.​2214/​AJR.​09.​3462 CrossRef
Metadaten
Titel
An Algorithm for Intelligent Sorting of CT-Related Dose Parameters
verfasst von
Tessa S. Cook
Stefan L. Zimmerman
Scott R. Steingall
William W. Boonn
Woojin Kim
Publikationsdatum
01.02.2012
Verlag
Springer-Verlag
Erschienen in
Journal of Imaging Informatics in Medicine / Ausgabe 1/2012
Print ISSN: 2948-2925
Elektronische ISSN: 2948-2933
DOI
https://doi.org/10.1007/s10278-011-9410-1

Weitere Artikel der Ausgabe 1/2012

Journal of Digital Imaging 1/2012 Zur Ausgabe

Update Radiologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.