Cellular S-value of beta emitter radionuclide’s determined using Geant4 Monte Carlo toolbox, comparison to MIRD S-values

Publish Year: 1395
نوع سند: مقاله ژورنالی
زبان: English
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JR_IRJNM-24-1_005

تاریخ نمایه سازی: 21 بهمن 1398

Abstract:

Introduction: Spatial dose distribution around the radionuclides sources is required for optimized treatment planning in radioimmunotherapy. At present, the main source of data for cellular dosimetry is the s-values provided by MIRD. However, the MIRD s-values have been calculated based on analytical formula in which no electrons straggling is taken to account. In this study, we used Geant4-DNA Monte Carlo toolbox to calculate s-values and the results were compared to the corresponding MIRD data. Methods:Similar to MIRD cell model, two concentric spheres representing the cell and its nucleus were used as the geometry of simulation. The cells were assumed to be made of water. Cellular s-values were calculated for three beta emitter radionuclides 131I, 90Y and 177Lu that are widely used in radioimmunotherapy. Few lines of code in C++ were added into Geant4-DNA codes to automatically calculate the s-values and transfer data into excel files. Results:The differences between two series of data were analyzed using Pearson’s correlation and Bland-Altman curves. We observed high correlation (R2> 0.99) between two series of data for self-absorption; however, the agreement was very weak and Wilcoxon signed rank test showed significant difference (p-value<0.001). In cross-absorption, Bland-Altman analysis showed a considerable bias between MIRD s-values and corresponding Geant4-DNA data. The percent differences between the data were -79% to +67%. Conclusion: Results of the comparison show a reflection of systematic error rather than statistical fluctuation. The inconsistency is most probably associated with the neglecting of straggling and δ-ray transport in MIRD analytical method.

Authors

Mohammad Ali Tajik-Mansoury

Department of Medical Physics, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran

Hossein Rajabi

Department of Medical Physics, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran

Hossein Mozdarani

Department of Medical Genetics, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran

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  • Chatal JF, Hoefnagel CA. Radionuclide therapy. Lancet. 1999 Sep 11;354(9182):931-5. ...
  • Dearling JL, Pedley RB. Technological advances in radioimmunotherapy. Clin Oncol ...
  • Buchsbaum DJ. Experimental radioimmunotherapy. Semin Radiat Oncol. 2000 Apr;10(2):156-67. ...
  • Bousis C, Emfietzoglou D, Nikjoo H. Monte Carlo single-cell dosimetry ...
  • Bardiès M, Myers MJ. Computational methods in radionuclide dosimetry. Phys ...
  • Goddu SM, Rao DV, Howell RW. Multicellular dosimetry for micrometastases: ...
  • Humm JL. Dosimetric aspects of radiolabeled antibodies for tumor therapy. ...
  • Bardiès M, Chatal JF. Absorbed doses for internal radiotherapy from ...
  • Humm JL. A microdosimetric model of astatine-211 labeled antibodies for ...
  • Emfietzoglou D, Bousis C, Hindorf C, Fotopoulos A, Pathak A, ...
  • Budinger TF, Murty GS. MIRD cellular S values: Self-absorbed dose ...
  • Sgouros G. Dosimetry of internal emitters. J Nucl Med. 2005 ...
  • Loevinger R, Budinger TF, Watson EE. MIRD primer for absorbed ...
  • Cole A. Absorption of 20-eV to 50,000-eV electron beams in ...
  • Eckerman KF, Westfall RJ, Ryman JC, Cristy M. Nuclear decay ...
  • Bousis C, Emfietzoglou D, Hadjidoukas P, Nikjoo H. A Monte ...
  • Bernal MA, Liendo JA. An investigation on the capabilities of ...
  • Champion C, Zanotti-Fregonara P, Hindié E. CELLDOSE: a Monte Carlo ...
  • Emfietzoglou D, Kostarelos K, Hadjidoukas P, Bousis C, Fotopoulos A, ...
  • Syme AM, Kirkby C, Riauka TA, Fallone BG, McQuarrie SA. ...
  • Cai Z, Pignol JP, Chan C, Reilly RM. Cellular dosimetry ...
  • Nikjoo H, Uehara S, Emfietzoglou D, Cucinotta FA. Track-structure codes ...
  • Incerti S, Baldacchino G, Bernal M, Capra R, Champion C, ...
  • Eckerman KF, Endo A. MIRD: Radionuclide Data and Decay Schemes. ...
  • Agostinelli S, Allison J, Amako Ka, Apostolakis J, Araujo H, ...
  • Incerti S, Ivanchenko A, Karamitros M, Mantero A, Moretto P, ...
  • Francis Z, Incerti S, Karamitros M, Tran HN, Villagrasa C. ...
  • Incerti S, Psaltaki M, Gillet P, Barberet P, Bardiès M, ...
  • André T, Morini F, Karamitros M, Delorme R, Le Loirec ...
  • Champion C, Incerti S, Perrot Y, Delorme R, Bordage MC, ...
  • Bousis C, Emfietzoglou D, Hadjidoukas P, Nikjoo H. A Monte ...
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