Related Experiment Video
Updated: Aug 6, 2026

An Automated Microscopic Scoring Method for the γ-H2AX Foci Assay in Human Peripheral Blood Lymphocytes
Published on: December 25, 2021
Experimental estimation of extremity doses from handheld XRF devices during radiation exposure incidents
M Kowatari1, N Kataoka2, M Kobayashi2
1Institute of Radiological Sciences, National Institutes for Quantum Science and Technology, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan.
Abstract:
This study experimentally evaluates extremity doses from unintentional exposure emitted by handheld X-ray fluorescence (XRF) analyzers. Although handheld XRF devices are widely used for material analysis, quantitative assessments of unintentional exposure remain limited. Mockup experiments were conducted using a Thermo Scientific NITON XLt 797 analyzer and a polymethyl methacrylate hand phantom equipped with radiophotoluminescent glass dosemeters (GD-302M). Spectrometric measurements were performed with a CdTe detector, and photon fluence spectra were unfolded using the MAXED code with Particle and Heavy Ion Transport code System-generated response functions. The mean X-ray energy was 28.4 ± 0.03 keV, with characteristic molybdenum peaks at ~17.5 keV (Kα) and 19.6 keV (Kβ). For a typical 30-s analysis, the estimated personal dose equivalent Hp(0.07) at the point of contact was ~95 μSv. The Hp(0.07) on the dorsal side was roughly one-fifth of the palmar dose. Ambient dose equivalent rates measured directly from the XRF device may reach high enough to set radiation-controlled areas, underscoring the need for strict handling protocols. These findings demonstrate the importance of radiological protection education and awareness when using handheld XRF devices.
Related Concept Videos
Biological Effects of Radiation
X-ray Imaging
Atomic Emission Spectroscopy: Overview

