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1.
Cas Lek Cesk ; 159(6): 217-225, 2020.
Article in English | MEDLINE | ID: mdl-33297697

ABSTRACT

Seroprevalence studies represent a very important tool to find out what fraction of population has already met with the new type of coronavirus (e.g. SARS-CoV-2). Without these data, it is almost impossible for the state authorities to manage the epidemic and adopt rational measures. This article brings the results of a medium-sized seroprevalence study which was carried out in the spring of 2020 in South Bohemia. In the Strakonice and Písek regions, the ELISA method was used to test the prevalence of IgA and IgG antibodies in 2011 subjects, volunteers from general public and selected professions working in areas with a higher exposure to the infection. The study showed that already in May 2020, 2.9% of inhabitants of the Strakonice region and 1.9% of inhabitants of the Písek region had antibodies against the coronavirus. These numbers imply that for each PCR positive person, there were at least fifty others who had probably already undergone the infection. The article points out three types of problems that might occur in such a study. First, the study must be planned correctly, and possible outcomes must be pre-assessed. Second, an appropriate test must be selected with known parameters. This enables us to correctly estimate the share of false positive and false negative results. Third, the data must be evaluated in a reasonable way and correct inference must be performed. We offer a set of recommendations how to manage these issues and how to solve problems that inevitably arise in such a large-scale testing.


Subject(s)
COVID-19 , Czech Republic , Seroepidemiologic Studies , COVID-19/diagnosis , COVID-19/epidemiology , Czech Republic/epidemiology , Enzyme-Linked Immunosorbent Assay , Humans , Pandemics , SARS-CoV-2
2.
Radiat Prot Dosimetry ; 180(1-4): 386-390, 2018 Aug 01.
Article in English | MEDLINE | ID: mdl-29474643

ABSTRACT

197Au, 209Bi, 59Co, natFe and 169Tm samples were irradiated several times with quasi-monoenergetic neutrons from the p+7Li reaction in the energy range of 18-34 MeV. The activities of the samples were measured with the HPGe detector and the reaction rates were calculated. The cross sections were extracted using the SAND-II code with the reference cross sections from the IRDFF database.


Subject(s)
Lithium/chemistry , Neutrons , Particle Accelerators/instrumentation , Radiometry/instrumentation , Radiometry/methods , Computer Simulation , Databases, Factual , Equipment Design , Radiation Dosage
3.
Radiat Prot Dosimetry ; 180(1-4): 377-381, 2018 Aug 01.
Article in English | MEDLINE | ID: mdl-29216389

ABSTRACT

Neutron field from the p+Be interaction was investigated at the NPI CAS for a proton beam energy of 35 MeV and thick beryllium target. Broad neutron spectra at close source-to-sample distances were determined using the multi-foil activation technique. Two large sets of dosimetry foils containing the Ni, Co, Au, In, Ti, Al, Y, Lu, Nb and Fe were irradiated at a distance of 74 mm at direct neutron beam axis and at a distance of 34 mm from beam axis. Supporting Monte-Carlo MCNPX calculations of the irradiation system were performed as well. From measured reaction rates, the neutron energy spectra at both positions were reconstructed employing the modified version of the SAND-II unfolding code and activation cross-section data from the EAF-2010 library. At the position of irradiated samples, the total fast neutron flux reaches the value up to 1010 cm-2 s-1, and the neutron field is utilizable for radiation hardness study and integral benchmark experiments within the International Fusion Material Irradiation Facility (IFMIF) program.


Subject(s)
Beryllium/analysis , Neutrons , Phosphorus Radioisotopes/analysis , Radiometry/instrumentation , Radiometry/methods , Computer Simulation , Monte Carlo Method , Radiation Dosage
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