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Items: 1 to 20 of 113

1.

A Monte Carlo based formalism to identify potential locations at high risk of tumor recurrence with a numerical model for glioblastoma multiforme.

Trepanier PY, Fortin I, Lambert C, Lacroix F.

Med Phys. 2012 Nov;39(11):6682-91. doi: 10.1118/1.4757972.

PMID:
23127062
2.

Monte-Carlo model development for evaluation of current clinical target volume definition for heterogeneous and hypoxic glioblastoma.

Moghaddasi L, Bezak E, Harriss-Phillips W.

Phys Med Biol. 2016 May 7;61(9):3407-26. doi: 10.1088/0031-9155/61/9/3407. Epub 2016 Apr 5.

PMID:
27046324
3.

Biocomputing: numerical simulation of glioblastoma growth and comparison with conventional irradiation margins.

Bondiau PY, Konukoglu E, Clatz O, Delingette H, Frenay M, Paquis P.

Phys Med. 2011 Apr;27(2):103-8. doi: 10.1016/j.ejmp.2010.05.002. Epub 2010 Nov 10.

PMID:
21071253
4.
5.

Diffusion tensor imaging for target volume definition in glioblastoma multiforme.

Berberat J, McNamara J, Remonda L, Bodis S, Rogers S.

Strahlenther Onkol. 2014 Oct;190(10):939-43. doi: 10.1007/s00066-014-0676-3. Epub 2014 May 14.

PMID:
24823897
6.

Towards the Personalized Treatment of Glioblastoma: Integrating Patient-Specific Clinical Data in a Continuous Mechanical Model.

Colombo MC, Giverso C, Faggiano E, Boffano C, Acerbi F, Ciarletta P.

PLoS One. 2015 Jul 17;10(7):e0132887. doi: 10.1371/journal.pone.0132887. eCollection 2015 Jul 17. Erratum in: PLoS One. 2015;10(11):e0143032.

7.

Patterns of failure and comparison of different target volume delineations in patients with glioblastoma treated with conformal radiotherapy plus concomitant and adjuvant temozolomide.

Minniti G, Amelio D, Amichetti M, Salvati M, Muni R, Bozzao A, Lanzetta G, Scarpino S, Arcella A, Enrici RM.

Radiother Oncol. 2010 Dec;97(3):377-81. doi: 10.1016/j.radonc.2010.08.020. Epub 2010 Sep 18.

PMID:
20855119
8.
9.

Estimating subthreshold tumor on MRI using a 3D-DTI growth model for GBM: An adjunct to radiation therapy planning.

Hathout L, Patel V.

Oncol Rep. 2016 Aug;36(2):696-704. doi: 10.3892/or.2016.4878. Epub 2016 Jun 15.

PMID:
27374420
10.

Radiotherapy planning for glioblastoma based on a tumor growth model: improving target volume delineation.

Unkelbach J, Menze BH, Konukoglu E, Dittmann F, Le M, Ayache N, Shih HA.

Phys Med Biol. 2014 Feb 7;59(3):747-70. doi: 10.1088/0031-9155/59/3/747. Epub 2014 Jan 20.

PMID:
24440875
11.

Evaluation of current clinical target volume definitions for glioblastoma using cell-based dosimetry stochastic methods.

Moghaddasi L, Bezak E, Harriss-Phillips W.

Br J Radiol. 2015 Sep;88(1053):20150155. doi: 10.1259/bjr.20150155. Epub 2015 Jul 3.

12.

A numerical simulation of organ motion and daily setup uncertainties: implications for radiation therapy.

Killoran JH, Kooy HM, Gladstone DJ, Welte FJ, Beard CJ.

Int J Radiat Oncol Biol Phys. 1997 Jan 1;37(1):213-21.

PMID:
9054898
13.

Predicting the efficacy of radiotherapy in individual glioblastoma patients in vivo: a mathematical modeling approach.

Rockne R, Rockhill JK, Mrugala M, Spence AM, Kalet I, Hendrickson K, Lai A, Cloughesy T, Alvord EC Jr, Swanson KR.

Phys Med Biol. 2010 Jun 21;55(12):3271-85. doi: 10.1088/0031-9155/55/12/001. Epub 2010 May 18.

14.

Patterns of failure following high-dose 3-D conformal radiotherapy for high-grade astrocytomas: a quantitative dosimetric study.

Lee SW, Fraass BA, Marsh LH, Herbort K, Gebarski SS, Martel MK, Radany EH, Lichter AS, Sandler HM.

Int J Radiat Oncol Biol Phys. 1999 Jan 1;43(1):79-88.

PMID:
9989517
15.

Radiotherapy planning for glioblastoma based on a tumor growth model: implications for spatial dose redistribution.

Unkelbach J, Menze BH, Konukoglu E, Dittmann F, Ayache N, Shih HA.

Phys Med Biol. 2014 Feb 7;59(3):771-89. doi: 10.1088/0031-9155/59/3/771. Epub 2014 Jan 20.

PMID:
24440905
16.

A TCP-NTCP estimation module using DVHs and known radiobiological models and parameter sets.

Warkentin B, Stavrev P, Stavreva N, Field C, Fallone BG.

J Appl Clin Med Phys. 2004 Winter;5(1):50-63. Epub 2004 Jan 1.

PMID:
15753933
17.

An approach to using conventional brachytherapy software for clinical treatment planning of complex, Monte Carlo-based brachytherapy dose distributions.

Rivard MJ, Melhus CS, Granero D, Perez-Calatayud J, Ballester F.

Med Phys. 2009 Jun;36(6):1968-75.

PMID:
19610285
18.

Adaptive IMRT using a multiobjective evolutionary algorithm integrated with a diffusion-invasion model of glioblastoma.

Holdsworth CH, Corwin D, Stewart RD, Rockne R, Trister AD, Swanson KR, Phillips M.

Phys Med Biol. 2012 Dec 21;57(24):8271-83. doi: 10.1088/0031-9155/57/24/8271. Epub 2012 Nov 29.

19.

Probability dynamics of a repopulating tumor in case of fractionated external radiotherapy.

Stavreva N, Stavrev P, Fallone BG.

Phys Med. 2009 Dec;25(4):181-91. doi: 10.1016/j.ejmp.2009.01.002. Epub 2009 Apr 3.

PMID:
19345599
20.

Patient-specific mathematical neuro-oncology: using a simple proliferation and invasion tumor model to inform clinical practice.

Jackson PR, Juliano J, Hawkins-Daarud A, Rockne RC, Swanson KR.

Bull Math Biol. 2015 May;77(5):846-56. doi: 10.1007/s11538-015-0067-7. Epub 2015 Mar 21. Review.

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