DOSE OPTIMIZATION ON LIVER CANCER PROTON THERAPY AND BORON NEUTRON CAPTURE THERAPY USING PARTICLE AND HEAVY IONS TRANSPORT CODE SYSTEM

Liver cancer was the third leading cause of death from cancer in 2020 with 830,180 deaths worldwide. Radiotherapy is a common treatment method for liver cancer. Technological advances presented proton therapy and boron neutron capture therapy (BNCT) as alternatives with a lower dose on healthy organ...

Full description

Bibliographic Details
Main Authors: Hafiz Fahrurrozi, Andang Widi Harto, Isman Mulyadi Triatmoko, Gede Sutrisna Wijaya, Yohannes Sardjono
Format: Article
Language:English
Published: Badan Tenaga Nuklir Nasional (BATAN) 2021-02-01
Series:Tri Dasa Mega
Online Access:http://jurnal.batan.go.id/index.php/tridam/article/view/6183
id doaj-f047b3cf29e446a8921e54d753714620
record_format Article
spelling doaj-f047b3cf29e446a8921e54d7537146202021-03-03T03:09:38ZengBadan Tenaga Nuklir Nasional (BATAN)Tri Dasa Mega1411-240X2527-99632021-02-01231334010.17146/tdm.2021.23.1.61835112DOSE OPTIMIZATION ON LIVER CANCER PROTON THERAPY AND BORON NEUTRON CAPTURE THERAPY USING PARTICLE AND HEAVY IONS TRANSPORT CODE SYSTEMHafiz Fahrurrozi0Andang Widi Harto1Isman Mulyadi Triatmoko2Gede Sutrisna Wijaya3Yohannes Sardjono4Universitas Gadjah madaUniversitas Gadjah MadaNational Nuclear Energy AgencyNational Nuclear Energy AgencyNational Nuclear Energy AgencyLiver cancer was the third leading cause of death from cancer in 2020 with 830,180 deaths worldwide. Radiotherapy is a common treatment method for liver cancer. Technological advances presented proton therapy and boron neutron capture therapy (BNCT) as alternatives with a lower dose on healthy organs. The objective of this research is to get a good dose distribution with higher tumor dose and lower healthy organ dose in proton therapy. A comparison with BNCT is done to get a better understanding of how both methods deliver the dose to treat the cancer while minimizing healthy organ doses. The research simulated proton therapy for cancer liver with Particle and Heavy Ions Transport Code System (PHITS), and a literature review for BNCT. The effectiveness of both methods were compared by tumor dose and liver dose. The optimal tumor dose for proton therapy is 86.01 Gy (W) with 0.67 Gy (W) liver dose. Proton therapy can replace conventional radiotherapy for tumors with complex shapes in dose delivery by utilizing its dose profile, while BNCT can give better tumor control on patients previously treated with conventional radiotherapy.http://jurnal.batan.go.id/index.php/tridam/article/view/6183
collection DOAJ
language English
format Article
sources DOAJ
author Hafiz Fahrurrozi
Andang Widi Harto
Isman Mulyadi Triatmoko
Gede Sutrisna Wijaya
Yohannes Sardjono
spellingShingle Hafiz Fahrurrozi
Andang Widi Harto
Isman Mulyadi Triatmoko
Gede Sutrisna Wijaya
Yohannes Sardjono
DOSE OPTIMIZATION ON LIVER CANCER PROTON THERAPY AND BORON NEUTRON CAPTURE THERAPY USING PARTICLE AND HEAVY IONS TRANSPORT CODE SYSTEM
Tri Dasa Mega
author_facet Hafiz Fahrurrozi
Andang Widi Harto
Isman Mulyadi Triatmoko
Gede Sutrisna Wijaya
Yohannes Sardjono
author_sort Hafiz Fahrurrozi
title DOSE OPTIMIZATION ON LIVER CANCER PROTON THERAPY AND BORON NEUTRON CAPTURE THERAPY USING PARTICLE AND HEAVY IONS TRANSPORT CODE SYSTEM
title_short DOSE OPTIMIZATION ON LIVER CANCER PROTON THERAPY AND BORON NEUTRON CAPTURE THERAPY USING PARTICLE AND HEAVY IONS TRANSPORT CODE SYSTEM
title_full DOSE OPTIMIZATION ON LIVER CANCER PROTON THERAPY AND BORON NEUTRON CAPTURE THERAPY USING PARTICLE AND HEAVY IONS TRANSPORT CODE SYSTEM
title_fullStr DOSE OPTIMIZATION ON LIVER CANCER PROTON THERAPY AND BORON NEUTRON CAPTURE THERAPY USING PARTICLE AND HEAVY IONS TRANSPORT CODE SYSTEM
title_full_unstemmed DOSE OPTIMIZATION ON LIVER CANCER PROTON THERAPY AND BORON NEUTRON CAPTURE THERAPY USING PARTICLE AND HEAVY IONS TRANSPORT CODE SYSTEM
title_sort dose optimization on liver cancer proton therapy and boron neutron capture therapy using particle and heavy ions transport code system
publisher Badan Tenaga Nuklir Nasional (BATAN)
series Tri Dasa Mega
issn 1411-240X
2527-9963
publishDate 2021-02-01
description Liver cancer was the third leading cause of death from cancer in 2020 with 830,180 deaths worldwide. Radiotherapy is a common treatment method for liver cancer. Technological advances presented proton therapy and boron neutron capture therapy (BNCT) as alternatives with a lower dose on healthy organs. The objective of this research is to get a good dose distribution with higher tumor dose and lower healthy organ dose in proton therapy. A comparison with BNCT is done to get a better understanding of how both methods deliver the dose to treat the cancer while minimizing healthy organ doses. The research simulated proton therapy for cancer liver with Particle and Heavy Ions Transport Code System (PHITS), and a literature review for BNCT. The effectiveness of both methods were compared by tumor dose and liver dose. The optimal tumor dose for proton therapy is 86.01 Gy (W) with 0.67 Gy (W) liver dose. Proton therapy can replace conventional radiotherapy for tumors with complex shapes in dose delivery by utilizing its dose profile, while BNCT can give better tumor control on patients previously treated with conventional radiotherapy.
url http://jurnal.batan.go.id/index.php/tridam/article/view/6183
work_keys_str_mv AT hafizfahrurrozi doseoptimizationonlivercancerprotontherapyandboronneutroncapturetherapyusingparticleandheavyionstransportcodesystem
AT andangwidiharto doseoptimizationonlivercancerprotontherapyandboronneutroncapturetherapyusingparticleandheavyionstransportcodesystem
AT ismanmulyaditriatmoko doseoptimizationonlivercancerprotontherapyandboronneutroncapturetherapyusingparticleandheavyionstransportcodesystem
AT gedesutrisnawijaya doseoptimizationonlivercancerprotontherapyandboronneutroncapturetherapyusingparticleandheavyionstransportcodesystem
AT yohannessardjono doseoptimizationonlivercancerprotontherapyandboronneutroncapturetherapyusingparticleandheavyionstransportcodesystem
_version_ 1724233605491720192