Tissue equivalent proportional counter (TEPC) can measure the Linear Energy Transfer (LET) spectrum and calculate the equivalent dose for the complicated radiation field in space. In this paper, we developed and characterized a TEPC for radiation monitoring in International Space Station (ISS). The prototype TEPC which can simulate a 2 μm of the site diameter for micro-dosimetry has been tested with a standard alpha source (241Am, 5.5 MeV). Also, the calibration of the TEPC was performed by the 252Cf neutron standard source in Korea Research Institute of Standards and Science (KRISS). The determined calibration factor was kf = 3.59×10-7 mSv/R
The radiation environment aboard the space shuttle and the International Space Station includes high...
Ionising radiation causes a wide variety of effects in biological targets. In experimental microdosi...
Ionising radiation causes a wide variety of effects in biological targets. In experimental microdosi...
The goal of this experiment is verifying the performance of prototype Tissue Equivalent Proportional...
The goal of this experiment is veriflying the performance of new designed Tissue Equivalent Proporti...
Microdosimetry studies the probability distribution of the imparted energy when an ionizing particle...
This slide presentation reviews the Tissue Equivalent Proportional Counter (TEPC), a description of ...
A Tissue Equivalent Proportional Counter (TEPC) named the Active Tissue Equivalent Dosimeter (ATED) ...
The Tissue Equivalent Proportional Counter (TEPC) is a sensitive area monitoring instrument that can...
Tissue equivalent proportional counters (TEPCs) can be used as radiation monitors in different radia...
Measurements of the radiation environment inside the Mir space station were performed with a tissue ...
Measurements of the radiation environment inside the Mir space station were performed with a tissue ...
This paper describes a methodology for assessing the pre-mission exposure of space crew aboard the I...
This paper describes a methodology for assessing the pre-mission exposure of space crew aboard the I...
The radiation environment aboard the space shuttle and the International Space Station includes hig...
The radiation environment aboard the space shuttle and the International Space Station includes high...
Ionising radiation causes a wide variety of effects in biological targets. In experimental microdosi...
Ionising radiation causes a wide variety of effects in biological targets. In experimental microdosi...
The goal of this experiment is verifying the performance of prototype Tissue Equivalent Proportional...
The goal of this experiment is veriflying the performance of new designed Tissue Equivalent Proporti...
Microdosimetry studies the probability distribution of the imparted energy when an ionizing particle...
This slide presentation reviews the Tissue Equivalent Proportional Counter (TEPC), a description of ...
A Tissue Equivalent Proportional Counter (TEPC) named the Active Tissue Equivalent Dosimeter (ATED) ...
The Tissue Equivalent Proportional Counter (TEPC) is a sensitive area monitoring instrument that can...
Tissue equivalent proportional counters (TEPCs) can be used as radiation monitors in different radia...
Measurements of the radiation environment inside the Mir space station were performed with a tissue ...
Measurements of the radiation environment inside the Mir space station were performed with a tissue ...
This paper describes a methodology for assessing the pre-mission exposure of space crew aboard the I...
This paper describes a methodology for assessing the pre-mission exposure of space crew aboard the I...
The radiation environment aboard the space shuttle and the International Space Station includes hig...
The radiation environment aboard the space shuttle and the International Space Station includes high...
Ionising radiation causes a wide variety of effects in biological targets. In experimental microdosi...
Ionising radiation causes a wide variety of effects in biological targets. In experimental microdosi...