Iga
Iga Komorowska, Warszawa PL
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20140141494 | COMPOSITION OF BACTERIAL STRAINS, BIOREMEDIATION MIXTURE AND USE OF THIS COMPOSITION FOR THE REMOVAL OF CONTAMINANTS FROM THE SOIL AND THE METHOD FOR PURIFYING THE SOIL CONTAMINANTS - The object of the present invention is a composition of bacterial strains which may comprise | 05-22-2014 |
Iga Muradyan, Boston, MA US
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20150265165 | System and Method For Non-Contrast Magnetic Resonance Imaging of Pulmonary Blood Flow - A system and method for non-contrast imaging of pulmonary blood flow in a subject are described. In some aspects, the method includes acquiring, using a magnetic resonance imaging (“MRI”) system, image data from at least the subject's lungs during which little to no respiratory motion occurs in the subject, such as during a breath-hold. The method also includes assembling the image data into a plurality of time-series datasets representing temporal variations of magnetic resonance signals in a region of interest that contains all or part of the subject's lungs. The method further includes computing a statistical blood flow metric for each voxel in the region of interest, using respective time-series datasets, and generating at least one image representative of pulmonary blood flow in the subject using the computed statistical blood flow metrics. | 09-24-2015 |
Iga Nazarczuk, Belzec PL
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20130244866 | Catalyst For Direct Decomposition of Nitric Oxide And Method of Manufacturing The Catalyst - The oxide catalyst for the direct NO decomposition to N2 and 02 is deposited on the austenitic acid-proof steel substrate and contains the phase with aFe203 structure and the phase with spinel structure and the lattice parameters close to the lattice parameters of NiFe204. Those phases form the micro-crystallites that additionally contain Cr and Mn and eventually Si. The catalyst according to the invention is manufactured by the at least twice heating of the austenitc acid-proof steel substrate in the atmosphere containing oxygen, up to the temperature from the 600-850° C. range, with the rate of 2-6° C./min, followed by the annealing at that temperature for 2-6 hours. | 09-19-2013 |
Iga Wasiak, Warszawa PL
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20150072946 | PROCESS FOR THE PREPARATION OF POLYSACCHARIDE NANOPARTICLES - A process for the preparation of nanoparticles from polysaccharides and derivatives thereof, by their specific partial oxidation to produce aldehyde groups and attachment of compounds with amino or other group with the R—NH2 bond which react with aldehyde groups, and a nanoparticle produced by such process. | 03-12-2015 |