Photoinduzierte hamolyse - eine einfache und effiziente aufschlussmethode zur aas - bleibestimmung in vollblut
Lead determinations in biological samples by atomic absorption techniques generally require adequate sample pretreatments in order to cleave the metal binding to the organic matrix. Short irradiation of in vivo contaminated whole blood by means of a high-pressure UV-lamp is presented as an efficient...
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todo:paper_00456535_v12_n11-12_p1671_Elizondo2023-10-03T14:51:57Z Photoinduzierte hamolyse - eine einfache und effiziente aufschlussmethode zur aas - bleibestimmung in vollblut Elizondo, M.A. Kesten, E.M. Kempny, J.M. lead atomic absorption spectrometry blood analysis blood and hemopoietic system hemolysis methodology nonhuman rat ultraviolet radiation Lead determinations in biological samples by atomic absorption techniques generally require adequate sample pretreatments in order to cleave the metal binding to the organic matrix. Short irradiation of in vivo contaminated whole blood by means of a high-pressure UV-lamp is presented as an efficient method for lead-liberating hemolysis. The recovery rates currently obtained herewith are equivalent to those found using oxidative digestion in wet medium and superior to those following Triton TX-100 procedures, as shown using blood from in vivo contaminated rats. © 1983. Fil:Kesten, E.M. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Kempny, J.M. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_00456535_v12_n11-12_p1671_Elizondo |
institution |
Universidad de Buenos Aires |
institution_str |
I-28 |
repository_str |
R-134 |
collection |
Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA) |
topic |
lead atomic absorption spectrometry blood analysis blood and hemopoietic system hemolysis methodology nonhuman rat ultraviolet radiation |
spellingShingle |
lead atomic absorption spectrometry blood analysis blood and hemopoietic system hemolysis methodology nonhuman rat ultraviolet radiation Elizondo, M.A. Kesten, E.M. Kempny, J.M. Photoinduzierte hamolyse - eine einfache und effiziente aufschlussmethode zur aas - bleibestimmung in vollblut |
topic_facet |
lead atomic absorption spectrometry blood analysis blood and hemopoietic system hemolysis methodology nonhuman rat ultraviolet radiation |
description |
Lead determinations in biological samples by atomic absorption techniques generally require adequate sample pretreatments in order to cleave the metal binding to the organic matrix. Short irradiation of in vivo contaminated whole blood by means of a high-pressure UV-lamp is presented as an efficient method for lead-liberating hemolysis. The recovery rates currently obtained herewith are equivalent to those found using oxidative digestion in wet medium and superior to those following Triton TX-100 procedures, as shown using blood from in vivo contaminated rats. © 1983. |
format |
JOUR |
author |
Elizondo, M.A. Kesten, E.M. Kempny, J.M. |
author_facet |
Elizondo, M.A. Kesten, E.M. Kempny, J.M. |
author_sort |
Elizondo, M.A. |
title |
Photoinduzierte hamolyse - eine einfache und effiziente aufschlussmethode zur aas - bleibestimmung in vollblut |
title_short |
Photoinduzierte hamolyse - eine einfache und effiziente aufschlussmethode zur aas - bleibestimmung in vollblut |
title_full |
Photoinduzierte hamolyse - eine einfache und effiziente aufschlussmethode zur aas - bleibestimmung in vollblut |
title_fullStr |
Photoinduzierte hamolyse - eine einfache und effiziente aufschlussmethode zur aas - bleibestimmung in vollblut |
title_full_unstemmed |
Photoinduzierte hamolyse - eine einfache und effiziente aufschlussmethode zur aas - bleibestimmung in vollblut |
title_sort |
photoinduzierte hamolyse - eine einfache und effiziente aufschlussmethode zur aas - bleibestimmung in vollblut |
url |
http://hdl.handle.net/20.500.12110/paper_00456535_v12_n11-12_p1671_Elizondo |
work_keys_str_mv |
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1807323644223815680 |