Related Experiment Video
Updated: Jan 15, 2026

Validation of Therapeutic Agent Conjugation to Polyvinyl Alcohol-Coated Medical Devices
Published on: November 29, 2024
Investigation on the efficacy of a tissue equivalent material bolus for BNCT
Akinori Sasaki1, Naonori Hu1,2, Ryo Kakino1
1Osaka Medical and Pharmaceutical University, Kansai BNCT Medical Center, Osaka, Japan.
Background:
In radiation therapy, the use of bolus is an effective technique for improving the surface dose. This irradiation technique is also used in BNCT. However, since BNCT uses neutron irradiation, it is important to evaluate both the neutron moderation characteristic and the radioactivation of the bolus.
Purpose:
This study aimed to evaluate the tissue equivalence and activation of commercially available boluses for use in BNCT.
Methods:
Two types of commercially available boluses were evaluated. The boluses were placed on a water phantom and irradiated using the NeuCure BNCT system. Firstly, the tissue equivalency of the boluses was evaluated by comparing the experimentally measured thermal neutron flux and gamma-ray distribution within the phantom, and the results were compared with simulation results. Secondly, the neutron activation of the boluses was assessed using an ionization chamber survey meter and an HP-Ge semiconductor detector to identify the produced radionuclides.
Results:
The thermal neutron flux and gamma ray distribution in the water phantom agreed well between the measured and simulated results. The study revealed that both boluses became radioactive after neutron irradiation, primarily due to the production of radionuclides such as 24Na and 38Cl.
Conclusions:
While boluses are effective in improving surface dose in BNCT, their use also introduces the risk of patient exposure to radiation from radioactivated bolus materials. Therefore, careful selection of bolus materials with minimal radioactivation is crucial to ensure patient safety.
More Related Videos
04:53A Clinical Trial Assessing the Safety, Efficacy, and Delivery of Olive-Oil-Based Three-Chamber Bags for Parenteral Nutrition
Published on: September 20, 2019
07:10Direct Intrabronchial Administration to Improve the Selective Agent Deposition Within the Mouse Lung
Published on: May 20, 2019
Related Concept Videos
One-Compartment Open Model for IV Bolus Administration: General Considerations
The drug's presence in the body is defined by an equation representing the difference between the rates of drug entry and exit. Key parameters—elimination rate constant,...
Two-Compartment Open Model: IV Bolus Administration
The disparity between drug input and the sum of drug transfer rates between...
One-Compartment Open Model for IV Bolus Administration: Estimation of Clearance
In the one-compartment open model for intravenous (IV) bolus administration, clearance is estimated by dividing the elimination rate by the plasma drug concentration. This equation leverages the elimination rate constant and the apparent...
One-Compartment Open Model for IV Bolus Administration: Estimation of Elimination Rate Constant, Half-Life and Volume of Distribution
Drug Delivery: Enteral Route
Enteral Nutrition I: Orogastric and Nasogastric Feeding
Orogastric (OG) and nasogastric (NG) feeding are two standard methods used for enteral nutrition. Enteral nutrition is often preferred over...