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Featured researches published by Kusminarto.


2nd Sari Mulia International Conference on Health and Sciences 2017 (SMICHS 2017) – One Health to Address the Problem of Tropical Infectious Diseases in Indonesia | 2017

The Optimization Of Collimator Design And In-Vivo Testing Of Boron Neutron Capture Therapy On Radial Piercing Beamport Kartini Nuclear Reactor By Monte Carlo N-Particle Extended Simulation Method

Ikna Urwatul Wusko; Kusminarto Kusminarto; Yohannes Sardjono; Effan Najwaini

Objective: This study aims to obtain an alternative method to reduce the tumor. Optimization of collimator and in vivo Boron Neutron Capture Therapy (BNCT) materials on translucent beam reactor Kartini Reactor eligible IAEA. Method: BNCT is a kind of alternative nuclear therapy that utilizes the reaction of B (n, α) Li which produces a total kinetic energy of 2.79 MeV. Linear Energy Transfer (LET) from α and Li particle recoil will be stored locally at a distance of 5-9 μm. Optimization of collimator design is by varying the walls of collimators, moderators, filters and gamma shields. Such optimizations produce epitermal neutron flux values, current components, thermal neutron components, rapid neutron dose components and gamma dose components according to IAEA requirements by utilizing Monte Carlo N-Particle Extended (MCNPX) simulations. Results: This study produced the best collimator design of 1.75 cm thick Ni-nat as a collimator wall, Al2S3 as thick as 29 cm as moderator, Al2O3 0.5 cm thick as filter, Pb and Bi as thick as 4 cm as a shield of collimator and Bi gamma end as thick as 1.5 cm as a gamma shield. Conclusion: This study concludes that the optimization of collimator designs meets the needs of the IAEA and can be simulated for in vivo test radiation.


Indonesian Journal of Physics and Nuclear Applications | 2018

The Optimization of Collimator Material and In Vivo Testing Dosimetry of Boron Neutron Capture Therapy (BNCT) on Radial Piercing Beam Port Kartini Nuclear Reactor by Monte Carlo N-Particle Extended (MCNPX) Simulation Method

Yohannes Sardjono; Kusminarto Kusminarto; Ikna Urwatul Wusko


Indonesian Journal of Physics and Nuclear Applications | 2017

Double Layer Collimator for BNCT Neutron Source Based on 30 MeV Cyclotron

Bilalodin Bilalodin; Kusminarto Kusminarto; Arief Hermanto; Yohannes Sardjono; Sunardi Sunardi


Indonesian Journal of Physics and Nuclear Applications | 2016

Boron Neutron Capture Therapy (BNCT) using Compact Neutron generator

Anggraeni Dwi Susilowati; Kusminarto Kusminarto; Yohannes Sardjono


Indonesian Journal of Physics and Nuclear Applications | 2016

Optimization of a Beam Shaping Assembly Design for Boron Neutron Capture Cancer Therapy Facility Based on 30 MeV Cyclotron

I Made Ardana; Kusminarto Kusminarto; Yohannes Sardjono


Indonesian Journal of Physics and Nuclear Applications | 2016

Preparation of Dosimetry of Boron Neutron Capture Therapy (BNCT) for In vivo Test Planning system using Monte Carlo N-Particle Extended (MCNP-X) Software

Muhammad Ilma Muslih Arrozaqi; Kusminarto Kusminarto; Yohannes Sardjono


Indonesian Journal of Physics and Nuclear Applications | 2016

Clinical trial design of Boron Neutron Capture Therapy on breast cancer using D-D coaxial compact neutron generator as neutron source and Monte Carlo N-Particle simulation method

Rosenti Pasaribu; Kusminarto Kusminarto; Yohannes Sardjono


EPH - International Journal of Applied Science (ISSN: 2208-2182) | 2016

Blood Pressure Monitoring System Using NMR Method

Bambang Murdaka Eka Jati; Kusminarto Kusminarto; Agung Bambang Su; Guntur Maruto


Archive | 2015

Optimization Of Collimator Design For Bnct Based Cyclotron 30 MevAnd Its Dosimetry Simulation In Head And Neck Soft Tissue Sarcoma Using Monte Carlo N Particle X Program

I Made Ardana; Kusminarto Kusminarto; Yohannes Sardjono


Berkala Ilmiah MIPA | 2014

Penyempitan Lebar Garis Spektral Keluaran Laser Zatwarna Pulsa Dengan Pasangan-Pasangan Prisma

Guntur Maruto; Kusminarto Kusminarto; Arief Hermanto; Pekik Nurwantoro

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