Skip to main content
Erschienen in: Radiological Physics and Technology 3/2017

21.03.2017

Evaluation of administered dose using portal images in craniospinal irradiation of pediatric patients

verfasst von: Carina Marques Coelho, Raquel Calçada, Sofia Rodrigues, Juan Antonio Barragán, Ana Cravo Sá, Ana Paula Macedo, Maria de Fátima Monsanto

Erschienen in: Radiological Physics and Technology | Ausgabe 3/2017

Einloggen, um Zugang zu erhalten

Abstract

This study aimed to assess the administered dose based on portal imaging in craniospinal pediatric irradiation by evaluating cases in which portal images did or did not account for the total administered dose. We also intended to calculate the mean increase in total administered dose. Data were collected from General University Hospital Gregorio Marañón; we evaluated the total dose administered, total dose planned, number of portal images per treatment and corresponding monitor units of two different groups: one in which the dose from portal images is deducted from the total administered dose (D), and another in which it was not (N). We used descriptive statistics to analyze the collected data, including the mean and respective standard deviation. We used the Shapiro–Wilk and Spearman rank correlation coefficient tests and estimated the linear regression coefficients. Patients in group D received a mean dose of 29.00 ± 10.28 cGy based on the verification portal images, a quantity that was deducted from the planned dose to match the total administered dose. Patients in group N received a mean dose of 41.50 ± 30.53 cGy, which was not deducted from the planned dose, evidencing a mean increase of 41.50 ± 30.55 cGy over the total administered dose. The acquisition of the set-up verification portal images, without their inclusion in the total administered dose, reflects an average increase in total dose for craniospinal irradiation of pediatric patients. Subtraction of the monitor units used to acquire the verification images is recommended.
Literatur
1.
Zurück zum Zitat Kun LE, Beltran C. Radiation therapy for children: evolving technologies in the era of ALARA. Pediatr Radiol. 2009;39(Suppl 1):S65–70.CrossRefPubMed Kun LE, Beltran C. Radiation therapy for children: evolving technologies in the era of ALARA. Pediatr Radiol. 2009;39(Suppl 1):S65–70.CrossRefPubMed
2.
Zurück zum Zitat Stokkevåg CH, Engeseth GM, Ytre-Hauge KS, Röhrich D, Odland OH, Muren LP, et al. Estimated risk of radiation-induced cancer following paediatric cranio-spinal irradiation with electron, photon and proton therapy. Acta Oncol. 2014;53:1048–57.CrossRefPubMed Stokkevåg CH, Engeseth GM, Ytre-Hauge KS, Röhrich D, Odland OH, Muren LP, et al. Estimated risk of radiation-induced cancer following paediatric cranio-spinal irradiation with electron, photon and proton therapy. Acta Oncol. 2014;53:1048–57.CrossRefPubMed
3.
Zurück zum Zitat Zaghloul MS, Eldebawy E, Attalah E, Ahmed S, Nazmy M, Anin HA. Supine craniospinal irradiation in children: patient position modification, dose uniformity and early adverse effects. Gulf J Oncolog. 2012;11:7–15. Zaghloul MS, Eldebawy E, Attalah E, Ahmed S, Nazmy M, Anin HA. Supine craniospinal irradiation in children: patient position modification, dose uniformity and early adverse effects. Gulf J Oncolog. 2012;11:7–15.
4.
Zurück zum Zitat Munshi A, Jalali R. A simple technique of supine craniospinal irradiation. Med Dosim. 2008;33(1):1–5.CrossRefPubMed Munshi A, Jalali R. A simple technique of supine craniospinal irradiation. Med Dosim. 2008;33(1):1–5.CrossRefPubMed
5.
Zurück zum Zitat McMahon RL, Larrier NA, Wu QJ. An image-guided technique for planning and verification of supine craniospinal irradiation. J Appl Clin Med Phys. 2011;12(2):184–90.CrossRef McMahon RL, Larrier NA, Wu QJ. An image-guided technique for planning and verification of supine craniospinal irradiation. J Appl Clin Med Phys. 2011;12(2):184–90.CrossRef
6.
Zurück zum Zitat National Council on Radiation Protection and Measurements (1993). NCRP REPORT No. 116: Limitation of exposure to ionizing radiation. National Council on Radiation Protection and Measurements (1993). NCRP REPORT No. 116: Limitation of exposure to ionizing radiation.
7.
Zurück zum Zitat Braunstein S, Nakamura JL. Radiotherapy-induced malignancies: review of clinical features, pathobiology, and evolving approaches for mitigating risk. Front Oncol. 2013;3(73):1–15. Braunstein S, Nakamura JL. Radiotherapy-induced malignancies: review of clinical features, pathobiology, and evolving approaches for mitigating risk. Front Oncol. 2013;3(73):1–15.
8.
Zurück zum Zitat Kudchadker RJ, Chang EL, Bryan F, Maor MH, Famiglietti R. An evaluation of radiation exposure from portal films taken during definitive course of pediatric radiotherapy. Int J Radiat Oncol Biol Phys. 2004;59(4):1229–35.CrossRefPubMed Kudchadker RJ, Chang EL, Bryan F, Maor MH, Famiglietti R. An evaluation of radiation exposure from portal films taken during definitive course of pediatric radiotherapy. Int J Radiat Oncol Biol Phys. 2004;59(4):1229–35.CrossRefPubMed
9.
Zurück zum Zitat Olch AJ, Geurts M, Thomadsen B, Famiglietti R, Chang EL. Portal imaging practice patterns of children’s oncology group institutions: dosimetric assessment and recommendations for minimizing unnecessary exposure. Int J Radiat Oncol Biol Phys. 2007;67(2):594–600.CrossRefPubMed Olch AJ, Geurts M, Thomadsen B, Famiglietti R, Chang EL. Portal imaging practice patterns of children’s oncology group institutions: dosimetric assessment and recommendations for minimizing unnecessary exposure. Int J Radiat Oncol Biol Phys. 2007;67(2):594–600.CrossRefPubMed
10.
Zurück zum Zitat Thorp N. Basic principles of paediatric radiotherapy. Clin Oncol. 2013;25(1):3–10.CrossRef Thorp N. Basic principles of paediatric radiotherapy. Clin Oncol. 2013;25(1):3–10.CrossRef
11.
Zurück zum Zitat Tubiana M. Can we reduce the incidence of second primary malignancies occurring after radiotherapy? A critical review. Radiother Oncol. 2009;91(1):4–15.CrossRefPubMed Tubiana M. Can we reduce the incidence of second primary malignancies occurring after radiotherapy? A critical review. Radiother Oncol. 2009;91(1):4–15.CrossRefPubMed
12.
Zurück zum Zitat Christopherson KM, Rotondo RL, Bradley JA, Pincus DW, Wynn TT, Fort JA, et al. Late toxicity following craniospinal radiation for early-stage medulloblastoma. Acta Oncol. 2014;53:471–80.CrossRefPubMed Christopherson KM, Rotondo RL, Bradley JA, Pincus DW, Wynn TT, Fort JA, et al. Late toxicity following craniospinal radiation for early-stage medulloblastoma. Acta Oncol. 2014;53:471–80.CrossRefPubMed
13.
Zurück zum Zitat Palmer SL, Armstrong C, Onar-Thomas A, Wu S, Wallace D, Bonner MJ. Processing speed, attention, and working memory after treatment for medulloblastoma: an international, prospective, and longitudinal study. J Clin Oncol. 2013;31(28):3494–500.CrossRefPubMedPubMedCentral Palmer SL, Armstrong C, Onar-Thomas A, Wu S, Wallace D, Bonner MJ. Processing speed, attention, and working memory after treatment for medulloblastoma: an international, prospective, and longitudinal study. J Clin Oncol. 2013;31(28):3494–500.CrossRefPubMedPubMedCentral
15.
Zurück zum Zitat Ding GX, Munro P. Radiation exposure to patients from image guidance procedures and techniques to reduce the imaging dose. Radiother Oncol. 2013;108:91–8.CrossRefPubMed Ding GX, Munro P. Radiation exposure to patients from image guidance procedures and techniques to reduce the imaging dose. Radiother Oncol. 2013;108:91–8.CrossRefPubMed
16.
Zurück zum Zitat Herk MV. Different styles of image-guided radiotherapy. Semin Radiat Oncol. 2007;17(4):258–67.CrossRefPubMed Herk MV. Different styles of image-guided radiotherapy. Semin Radiat Oncol. 2007;17(4):258–67.CrossRefPubMed
18.
Zurück zum Zitat Zijtveld MV, Dirkx M, Breuers M, Boer HD, Heijmen B. Portal dose image prediction for in vivo treatment verification completely based on EPID measurements. Med Phys. 2009;36(3):946–52.CrossRefPubMed Zijtveld MV, Dirkx M, Breuers M, Boer HD, Heijmen B. Portal dose image prediction for in vivo treatment verification completely based on EPID measurements. Med Phys. 2009;36(3):946–52.CrossRefPubMed
19.
Zurück zum Zitat Murphy MJ, Balter J, Balter S, BenComo JA Jr, Das IJ, Jiang SB, et al. The management of imaging dose during image-guided radiotherapy: report of the AAPM Task Group 75. Med Phys. 2007;34(10):4041–63.CrossRefPubMed Murphy MJ, Balter J, Balter S, BenComo JA Jr, Das IJ, Jiang SB, et al. The management of imaging dose during image-guided radiotherapy: report of the AAPM Task Group 75. Med Phys. 2007;34(10):4041–63.CrossRefPubMed
20.
Zurück zum Zitat Elmpt WV, McDermott L, Nijsten S, Wendling M, Lambin P, Mijnheer B. A literature review of electronic portal imaging for radiotherapy dosimetry. Radiother Oncol. 2008;88(3):289–309.CrossRefPubMed Elmpt WV, McDermott L, Nijsten S, Wendling M, Lambin P, Mijnheer B. A literature review of electronic portal imaging for radiotherapy dosimetry. Radiother Oncol. 2008;88(3):289–309.CrossRefPubMed
21.
Zurück zum Zitat Hatherly KE, Educ GD, Smylie JC, Rodger A, Dally MJ, Davis SR, et al. A double exposed portal image comparison between electronic portal imaging hard copies and port films in radiation therapy treatment setup confirmation to determine its clinical application in a radiotherapy center. Int J Radiat Oncol Biol Phys. 2001;49(1):191–8.CrossRefPubMed Hatherly KE, Educ GD, Smylie JC, Rodger A, Dally MJ, Davis SR, et al. A double exposed portal image comparison between electronic portal imaging hard copies and port films in radiation therapy treatment setup confirmation to determine its clinical application in a radiotherapy center. Int J Radiat Oncol Biol Phys. 2001;49(1):191–8.CrossRefPubMed
22.
Zurück zum Zitat Herman MG, Kruse JJ, Hagness CR. Guide to clinical use of electronic portal imaging. J Appl Clin Med Phys. 2000;1(2):38–57.CrossRefPubMed Herman MG, Kruse JJ, Hagness CR. Guide to clinical use of electronic portal imaging. J Appl Clin Med Phys. 2000;1(2):38–57.CrossRefPubMed
24.
Zurück zum Zitat Cherry P, Duxbury A, editors. Practical radiotherapy: physics and equipment. 2nd ed. Wiley-Blackwell: United Kingdom; 2009. Cherry P, Duxbury A, editors. Practical radiotherapy: physics and equipment. 2nd ed. Wiley-Blackwell: United Kingdom; 2009.
25.
Zurück zum Zitat Dawson LA, Sharpe MB. Image-guided radiotherapy: rationale, benefits, and limitations. Lancet Oncol. 2006;7:848–58.CrossRefPubMed Dawson LA, Sharpe MB. Image-guided radiotherapy: rationale, benefits, and limitations. Lancet Oncol. 2006;7:848–58.CrossRefPubMed
26.
Zurück zum Zitat Jones LW. Port film dosage in radiation therapy. Radiol Technol. 1991;62(5):362–8.PubMed Jones LW. Port film dosage in radiation therapy. Radiol Technol. 1991;62(5):362–8.PubMed
27.
Zurück zum Zitat Podgorsak EB, editor. Radiation oncology physics: a handbook for teachers and students. Vienna: IAEA; 2005. Podgorsak EB, editor. Radiation oncology physics: a handbook for teachers and students. Vienna: IAEA; 2005.
28.
Zurück zum Zitat Mayles P, Nahum A, Rosenwald JC (eds) Handbook of radiotherapy physics: theory and practice. New York: Taylor and Francis Group, LLC; 2007. Mayles P, Nahum A, Rosenwald JC (eds) Handbook of radiotherapy physics: theory and practice. New York: Taylor and Francis Group, LLC; 2007.
Metadaten
Titel
Evaluation of administered dose using portal images in craniospinal irradiation of pediatric patients
verfasst von
Carina Marques Coelho
Raquel Calçada
Sofia Rodrigues
Juan Antonio Barragán
Ana Cravo Sá
Ana Paula Macedo
Maria de Fátima Monsanto
Publikationsdatum
21.03.2017
Verlag
Springer Singapore
Erschienen in
Radiological Physics and Technology / Ausgabe 3/2017
Print ISSN: 1865-0333
Elektronische ISSN: 1865-0341
DOI
https://doi.org/10.1007/s12194-017-0395-4

Weitere Artikel der Ausgabe 3/2017

Radiological Physics and Technology 3/2017 Zur Ausgabe

Screening-Mammografie offenbart erhöhtes Herz-Kreislauf-Risiko

26.04.2024 Mammografie Nachrichten

Routinemäßige Mammografien helfen, Brustkrebs frühzeitig zu erkennen. Anhand der Röntgenuntersuchung lassen sich aber auch kardiovaskuläre Risikopatientinnen identifizieren. Als zuverlässiger Anhaltspunkt gilt die Verkalkung der Brustarterien.

S3-Leitlinie zu Pankreaskrebs aktualisiert

23.04.2024 Pankreaskarzinom Nachrichten

Die Empfehlungen zur Therapie des Pankreaskarzinoms wurden um zwei Off-Label-Anwendungen erweitert. Und auch im Bereich der Früherkennung gibt es Aktualisierungen.

Fünf Dinge, die im Kindernotfall besser zu unterlassen sind

18.04.2024 Pädiatrische Notfallmedizin Nachrichten

Im Choosing-Wisely-Programm, das für die deutsche Initiative „Klug entscheiden“ Pate gestanden hat, sind erstmals Empfehlungen zum Umgang mit Notfällen von Kindern erschienen. Fünf Dinge gilt es demnach zu vermeiden.

„Nur wer sich gut aufgehoben fühlt, kann auch für Patientensicherheit sorgen“

13.04.2024 Klinik aktuell Kongressbericht

Die Teilnehmer eines Forums beim DGIM-Kongress waren sich einig: Fehler in der Medizin sind häufig in ungeeigneten Prozessen und mangelnder Kommunikation begründet. Gespräche mit Patienten und im Team können helfen.

Update Radiologie

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