Systems and methods for high-throughput radiation biodosimetry. Garty, G., Brenner, D. J., Randers-Pehrson, G., Yao, Y. L., Simaan, N., Salerno, A., Bhatla, A., Zhang, J., Lyulko, O. V., & Dutta, A. October 2010.
Paper abstract bibtex Systems and methods for high-throughput radiation biodosimetry are disclosed herein. In some embodiments, a high-throughput methods of analyzing a population for radiation exposure can include, in various possible sequences: marking a first capillary designed to retain a first sample from the population with a first identifier; transporting a plurality of samples to a biodosimetry system; inputting the samples into the biodosimetry system; centrifuging the plurality of samples including the first sample wherein each sample can be retained in a capillary and the first sample can be retained in the first capillary; transferring the plurality of capillaries including the first capillary from the centrifuge to a cutting device using a robotic device; cutting the first capillary; reading the first identifier; transferring at least one portion of the first sample from the first capillary to a well in an array, wherein the array can include one or more filters in a multi-well plate; correlating the first identifier to a location of the array that includes the at least one portion of the first sample; one or more cycles of biological processing, which can include addition of a reagent and/or incubation of a selected temperature such as, for example, 37° C., 4° C., room temperature, and the like; sealing the array; positioning the array adjacent to an imaging element; focusing the imaging element; capturing an image of the first sample in the array; and analyzing the image to determine whether the first sample indicates a level of radiation exposure exceeding a predetermined threshold.
@patent{garty_systems_2010,
title = {Systems and methods for high-throughput radiation biodosimetry},
url = {https://patents.google.com/patent/US7822249B2/en},
abstract = {Systems and methods for high-throughput radiation biodosimetry are disclosed herein. In some embodiments, a high-throughput methods of analyzing a population for radiation exposure can include, in various possible sequences: marking a first capillary designed to retain a first sample from the population with a first identifier; transporting a plurality of samples to a biodosimetry system; inputting the samples into the biodosimetry system; centrifuging the plurality of samples including the first sample wherein each sample can be retained in a capillary and the first sample can be retained in the first capillary; transferring the plurality of capillaries including the first capillary from the centrifuge to a cutting device using a robotic device; cutting the first capillary; reading the first identifier; transferring at least one portion of the first sample from the first capillary to a well in an array, wherein the array can include one or more filters in a multi-well plate; correlating the first identifier to a location of the array that includes the at least one portion of the first sample; one or more cycles of biological processing, which can include addition of a reagent and/or incubation of a selected temperature such as, for example, 37° C., 4° C., room temperature, and the like; sealing the array; positioning the array adjacent to an imaging element; focusing the imaging element; capturing an image of the first sample in the array; and analyzing the image to determine whether the first sample indicates a level of radiation exposure exceeding a predetermined threshold.},
nationality = {US},
language = {en},
assignee = {Columbia University of New York},
number = {US7822249B2},
urldate = {2018-10-29TZ},
author = {Garty, Guy and Brenner, David J. and Randers-Pehrson, Gerhard and Yao, Y. Lawrence and Simaan, Nabil and Salerno, Alessio and Bhatla, Anubha and Zhang, Jian and Lyulko, Oleksandra V. and Dutta, Aparajita},
month = oct,
year = {2010},
keywords = {capillary, embodiments, image, plurality, sample}
}
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