5 research outputs found

    Routes and Sources of Exposure to Electromagnetic Radiation in Croatia

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    Princip predostrožnosti jedan je od osnovnih principa na kojima počiva politika zaštite okoliša i ljudskog zdravlja Europske Unije. Pojačanu brigu za ljudsko zdravlje izazvao je i progresivni razvoj tehnologija za bežični prijenos telekomunikacijskog signala bez obzira na njihovu očiglednu sociološku i ekonomsku korist društvu. Svjedoci smo i naglog razvoja novih digitalnih tehnologija koje se koriste elektromagnetskim rendgenskim zračenjem u medicinskoj dijagnostici. Iako prirodno elektromagnetsko zračenje iz svemira ne doseže u potpunosti, osim u nekoliko intervala frekvencija, do Zemljine površine, neionizirajuće prirodno zračenje pokriva Zemlju značajno kompliciranije nego što to čini ionizirajuće elektromagnetsko zračenje. U radu su razmatrane vrlo niske i niske doze elektromagnetskoga rendgenskog zračenja koje primaju bolesnici za vrijeme medicinske dijagnostike. Trenutačno nema dovoljno znanstvenih podataka za prihvatljivu evaluaciju rizika od izlaganja ljudi visokofrekventnom elektromagnetskom neionizirajućem zračenju niskih i vrlo niskih doza. Zajedno s naglim razvojem i uporabom elektromagnetskoga rendgenskog zračenja razvijaju se i proizvode izvori neionizirajućeg zračenja utječući na okoliš i biotu na način koji nikako nije zanemariv. Zbog toga se predlaže holistički, specifi čniji dubinsko ekološki pristup zaštiti stanovništva Republike Hrvatske od izlaganja ionizirajućem i neionizirajućem umjetnom zračenju.The precautionary principle is explicitly laid down in the EU Treaty and is one of the starting points of the EU environmental policy. The concern over human health has been raised by extended use of mobile and wireless telecommunication technologies, regardless of their obvious economic and societal benefits for the modern society. We are also experiencing a growth in new electromagnetic X-ray technologies for medical diagnostics. Natural electromagnetic radiation from space does not reach the Earth’s surface, except at a very few wavelengths, but non-ionising background radiation covers the globe in a much more complex space matrix than background electromagnetic ionising radiation. This article looks into patient exposure to low-dose, high-frequency, non-ionising electromagnetic X-ray radiation from digital diagnostics machines. At present, there are not enough data to assess public health risk. As man-made ionising and non-ionising radiation sources are expanding enormously, we need to take a holistic as well as a more specifi c, deep ecology approach to protect Croatian population

    Exposure of Croatian Population to Radiopharmaceuticals

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    Cilj je ovoga preglednog rada prikazati aktualno stanje opterećenosti stanovništva Republike Hrvatske ozračivanjem zbog izlaganja otvorenim izvorima ionizirajućeg zračenja u medicinske svrhe. U nedostatku relevantnih statističkih pokazatelja nije moguće validirano prikazati efektivnu dozu po stanovniku RH zbog medicinskog izlaganja radionuklidima čiji je unos u ljudsko tijelo defi niran jednokratnim injektiranjem često i vrlo velikih aktivnosti, izvršena je jednostavna procjena kako bi se upozorilo na potrebu ozbiljnijeg istraživanja i utvrđivanja referentnih nivoa izloženosti za defi nirane vrste dijagnostičkih pretraga. Uz vrlo slobodnu pretpostavku da se u RH godišnje obavi do 35.000 dijagnostičkih pregleda uporabom radionuklida procijenjena efektivna doza po stanovniku RH zbog izlaganja dijagnostičkim kratkoživućim radionuklidima velike početne aktivnosti iznosi od 6,8 do 7,9 μSv po stanovniku.The aim of this paper is to call attention to the exposure of Croatian population to open sources of ionising radiation used in medical diagnostics, radiopharmaceuticals in particular, whose initial activity is very high. Without proper exposure monitoring, it is not possible to establish the effective dose per capita, but we have estimated it to be between 6.8 μSv and 7.0 μSv for this type of internal exposure, based on a very loose assumption that about 35,000 diagnostic procedures with radiopharmaceuticals are performed in Croatia every year. This calls for further research that would eventually lead to limiting the doses received through exposure to radiopharmaceuticals

    Exposure of Croatian Population to Radiopharmaceuticals

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    Cilj je ovoga preglednog rada prikazati aktualno stanje opterećenosti stanovništva Republike Hrvatske ozračivanjem zbog izlaganja otvorenim izvorima ionizirajućeg zračenja u medicinske svrhe. U nedostatku relevantnih statističkih pokazatelja nije moguće validirano prikazati efektivnu dozu po stanovniku RH zbog medicinskog izlaganja radionuklidima čiji je unos u ljudsko tijelo defi niran jednokratnim injektiranjem često i vrlo velikih aktivnosti, izvršena je jednostavna procjena kako bi se upozorilo na potrebu ozbiljnijeg istraživanja i utvrđivanja referentnih nivoa izloženosti za defi nirane vrste dijagnostičkih pretraga. Uz vrlo slobodnu pretpostavku da se u RH godišnje obavi do 35.000 dijagnostičkih pregleda uporabom radionuklida procijenjena efektivna doza po stanovniku RH zbog izlaganja dijagnostičkim kratkoživućim radionuklidima velike početne aktivnosti iznosi od 6,8 do 7,9 μSv po stanovniku.The aim of this paper is to call attention to the exposure of Croatian population to open sources of ionising radiation used in medical diagnostics, radiopharmaceuticals in particular, whose initial activity is very high. Without proper exposure monitoring, it is not possible to establish the effective dose per capita, but we have estimated it to be between 6.8 μSv and 7.0 μSv for this type of internal exposure, based on a very loose assumption that about 35,000 diagnostic procedures with radiopharmaceuticals are performed in Croatia every year. This calls for further research that would eventually lead to limiting the doses received through exposure to radiopharmaceuticals

    Wi-Fi i ljudsko zdravlje

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    An enormous increase in the application of wireless communication in recent decades has intensified research into consequent increase in human exposure to electromagnetic (EM) radiofrequency (RF) radiation fields and potential health effects, especially in school children and teenagers, and this paper gives a snap overview of current findings and recommendations of international expert bodies, with the emphasis on exposure from Wi-Fi technology indoor devices. Our analysis includes over 100 in vitro, animal, epidemiological, and exposure assessment studies (of which 37 in vivo and 30 covering Wi-Fi technologies). Only a small portion of published research papers refers to the “real” health impact of Wi-Fi technologies on children, because they are simply not available. Results from animal studies are rarely fully transferable to humans. As highly controlled laboratory exposure experiments do not reflect real physical interaction between RF radiation fields with biological tissue, dosimetry methods, protocols, and instrumentation need constant improvement. Several studies repeatedly confirmed thermal effect of RF field interaction with human tissue, but non-thermal effects remain dubious and unconfirmed.Značajan porast uporabe bežične RF komunikacije u posljednjim desetljećima te s tim povezane izloženosti ljudi umjetno stvorenom neionizirajućem zračenju (RF polja), koje prije nije postojalo na Zemlji, tema su velikog broja istraživanja mogućih utjecaja tih zračenja na okoliš i zdravlje ljudi, osobito djece i mladih, kako bi se utvrdile činjenice o međudjelovanju RF polja s genskim materijalom živih bića. U ovom radu dan je pregled aktualnih istraživanja i preporuka međunarodnih stručnih tijela. Poseban naglasak dan je na mogući utjecaj radiofrekvencijskoga zračenja na mlade odnosno na školsku djecu koja su mu tijekom školovanja svakodnevno dodatno izložena tijekom e-škole korištenjem najmodernijih Wi-Fi tehnologijskih rješenja za komunikaciju u obrazovanju

    Deep Learning of Quasar Lightcurves in the LSST Era

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    Deep learning techniques are required for the analysis of synoptic (multi-band and multi-epoch) light curves in massive data of quasars, as expected from the Vera C. Rubin Observatory Legacy Survey of Space and Time (LSST). In this follow-up study, we introduce an upgraded version of a conditional neural process (CNP) embedded in a multi-step approach for the analysis of large data of quasars in the LSST Active Galactic Nuclei Scientific Collaboration data challenge database. We present a case study of a stratified set of u-band light curves for 283 quasars with very low variability ∼0.03. In this sample, the CNP average mean square error is found to be ∼5% (∼0.5 mag). Interestingly, besides similar levels of variability, there are indications that individual light curves show flare-like features. According to the preliminary structure–function analysis, these occurrences may be associated with microlensing events with larger time scales of 5–10 years
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