Web-based scoring of the dicentric assay, a collaborative biodosimetric scoring strategy for population triage in large scale radiation accidents

Standard

Web-based scoring of the dicentric assay, a collaborative biodosimetric scoring strategy for population triage in large scale radiation accidents. / Romm, H; Ainsbury, E; Bajinskis, A; Barnard, S; Barquinero, J F; Barrios, L; Beinke, C; Puig-Casanovas, R; Deperas-Kaminska, M; Gregoire, E; Oestreicher, U; Lindholm, C; Moquet, J; Rothkamm, K; Sommer, S; Thierens, H; Vral, A; Vandersickel, V; Wojcik, A.

In: RADIAT ENVIRON BIOPH, Vol. 53, No. 2, 05.2014, p. 241-54.

Research output: SCORING: Contribution to journalSCORING: Journal articleResearchpeer-review

Harvard

Romm, H, Ainsbury, E, Bajinskis, A, Barnard, S, Barquinero, JF, Barrios, L, Beinke, C, Puig-Casanovas, R, Deperas-Kaminska, M, Gregoire, E, Oestreicher, U, Lindholm, C, Moquet, J, Rothkamm, K, Sommer, S, Thierens, H, Vral, A, Vandersickel, V & Wojcik, A 2014, 'Web-based scoring of the dicentric assay, a collaborative biodosimetric scoring strategy for population triage in large scale radiation accidents', RADIAT ENVIRON BIOPH, vol. 53, no. 2, pp. 241-54. https://doi.org/10.1007/s00411-014-0519-8

APA

Romm, H., Ainsbury, E., Bajinskis, A., Barnard, S., Barquinero, J. F., Barrios, L., Beinke, C., Puig-Casanovas, R., Deperas-Kaminska, M., Gregoire, E., Oestreicher, U., Lindholm, C., Moquet, J., Rothkamm, K., Sommer, S., Thierens, H., Vral, A., Vandersickel, V., & Wojcik, A. (2014). Web-based scoring of the dicentric assay, a collaborative biodosimetric scoring strategy for population triage in large scale radiation accidents. RADIAT ENVIRON BIOPH, 53(2), 241-54. https://doi.org/10.1007/s00411-014-0519-8

Vancouver

Bibtex

@article{c7460ae683424b7fa78e9f077fbc55ff,
title = "Web-based scoring of the dicentric assay, a collaborative biodosimetric scoring strategy for population triage in large scale radiation accidents",
abstract = "In the case of a large scale radiation accident high throughput methods of biological dosimetry for population triage are needed to identify individuals requiring clinical treatment. The dicentric assay performed in web-based scoring mode may be a very suitable technique. Within the MULTIBIODOSE EU FP7 project a network is being established of 8 laboratories with expertise in dose estimations based on the dicentric assay. Here, the manual dicentric assay was tested in a web-based scoring mode. More than 23,000 high resolution images of metaphase spreads (only first mitosis) were captured by four laboratories and established as image galleries on the internet (cloud). The galleries included images of a complete dose effect curve (0-5.0 Gy) and three types of irradiation scenarios simulating acute whole body, partial body and protracted exposure. The blood samples had been irradiated in vitro with gamma rays at the University of Ghent, Belgium. Two laboratories provided image galleries from Fluorescence plus Giemsa stained slides (3 h colcemid) and the image galleries from the other two laboratories contained images from Giemsa stained preparations (24 h colcemid). Each of the 8 participating laboratories analysed 3 dose points of the dose effect curve (scoring 100 cells for each point) and 3 unknown dose points (50 cells) for each of the 3 simulated irradiation scenarios. At first all analyses were performed in a QuickScan Mode without scoring individual chromosomes, followed by conventional scoring (only complete cells, 46 centromeres). The calibration curves obtained using these two scoring methods were very similar, with no significant difference in the linear-quadratic curve coefficients. Analysis of variance showed a significant effect of dose on the yield of dicentrics, but no significant effect of the laboratories, different methods of slide preparation or different incubation times used for colcemid. The results obtained to date within the MULTIBIODOSE project by a network of 8 collaborating laboratories throughout Europe are very promising. The dicentric assay in the web based scoring mode as a high throughput scoring strategy is a useful application for biodosimetry in the case of a large scale radiation accident.",
keywords = "Chromosome Aberrations/radiation effects, Chromosomes, Human/genetics, Cooperative Behavior, Humans, Internet, Radiation Dosage, Radioactive Hazard Release, Radiometry/methods, Time Factors, Triage",
author = "H Romm and E Ainsbury and A Bajinskis and S Barnard and Barquinero, {J F} and L Barrios and C Beinke and R Puig-Casanovas and M Deperas-Kaminska and E Gregoire and U Oestreicher and C Lindholm and J Moquet and K Rothkamm and S Sommer and H Thierens and A Vral and V Vandersickel and A Wojcik",
year = "2014",
month = may,
doi = "10.1007/s00411-014-0519-8",
language = "English",
volume = "53",
pages = "241--54",
journal = "RADIAT ENVIRON BIOPH",
issn = "0301-634X",
publisher = "Springer New York",
number = "2",

}

RIS

TY - JOUR

T1 - Web-based scoring of the dicentric assay, a collaborative biodosimetric scoring strategy for population triage in large scale radiation accidents

AU - Romm, H

AU - Ainsbury, E

AU - Bajinskis, A

AU - Barnard, S

AU - Barquinero, J F

AU - Barrios, L

AU - Beinke, C

AU - Puig-Casanovas, R

AU - Deperas-Kaminska, M

AU - Gregoire, E

AU - Oestreicher, U

AU - Lindholm, C

AU - Moquet, J

AU - Rothkamm, K

AU - Sommer, S

AU - Thierens, H

AU - Vral, A

AU - Vandersickel, V

AU - Wojcik, A

PY - 2014/5

Y1 - 2014/5

N2 - In the case of a large scale radiation accident high throughput methods of biological dosimetry for population triage are needed to identify individuals requiring clinical treatment. The dicentric assay performed in web-based scoring mode may be a very suitable technique. Within the MULTIBIODOSE EU FP7 project a network is being established of 8 laboratories with expertise in dose estimations based on the dicentric assay. Here, the manual dicentric assay was tested in a web-based scoring mode. More than 23,000 high resolution images of metaphase spreads (only first mitosis) were captured by four laboratories and established as image galleries on the internet (cloud). The galleries included images of a complete dose effect curve (0-5.0 Gy) and three types of irradiation scenarios simulating acute whole body, partial body and protracted exposure. The blood samples had been irradiated in vitro with gamma rays at the University of Ghent, Belgium. Two laboratories provided image galleries from Fluorescence plus Giemsa stained slides (3 h colcemid) and the image galleries from the other two laboratories contained images from Giemsa stained preparations (24 h colcemid). Each of the 8 participating laboratories analysed 3 dose points of the dose effect curve (scoring 100 cells for each point) and 3 unknown dose points (50 cells) for each of the 3 simulated irradiation scenarios. At first all analyses were performed in a QuickScan Mode without scoring individual chromosomes, followed by conventional scoring (only complete cells, 46 centromeres). The calibration curves obtained using these two scoring methods were very similar, with no significant difference in the linear-quadratic curve coefficients. Analysis of variance showed a significant effect of dose on the yield of dicentrics, but no significant effect of the laboratories, different methods of slide preparation or different incubation times used for colcemid. The results obtained to date within the MULTIBIODOSE project by a network of 8 collaborating laboratories throughout Europe are very promising. The dicentric assay in the web based scoring mode as a high throughput scoring strategy is a useful application for biodosimetry in the case of a large scale radiation accident.

AB - In the case of a large scale radiation accident high throughput methods of biological dosimetry for population triage are needed to identify individuals requiring clinical treatment. The dicentric assay performed in web-based scoring mode may be a very suitable technique. Within the MULTIBIODOSE EU FP7 project a network is being established of 8 laboratories with expertise in dose estimations based on the dicentric assay. Here, the manual dicentric assay was tested in a web-based scoring mode. More than 23,000 high resolution images of metaphase spreads (only first mitosis) were captured by four laboratories and established as image galleries on the internet (cloud). The galleries included images of a complete dose effect curve (0-5.0 Gy) and three types of irradiation scenarios simulating acute whole body, partial body and protracted exposure. The blood samples had been irradiated in vitro with gamma rays at the University of Ghent, Belgium. Two laboratories provided image galleries from Fluorescence plus Giemsa stained slides (3 h colcemid) and the image galleries from the other two laboratories contained images from Giemsa stained preparations (24 h colcemid). Each of the 8 participating laboratories analysed 3 dose points of the dose effect curve (scoring 100 cells for each point) and 3 unknown dose points (50 cells) for each of the 3 simulated irradiation scenarios. At first all analyses were performed in a QuickScan Mode without scoring individual chromosomes, followed by conventional scoring (only complete cells, 46 centromeres). The calibration curves obtained using these two scoring methods were very similar, with no significant difference in the linear-quadratic curve coefficients. Analysis of variance showed a significant effect of dose on the yield of dicentrics, but no significant effect of the laboratories, different methods of slide preparation or different incubation times used for colcemid. The results obtained to date within the MULTIBIODOSE project by a network of 8 collaborating laboratories throughout Europe are very promising. The dicentric assay in the web based scoring mode as a high throughput scoring strategy is a useful application for biodosimetry in the case of a large scale radiation accident.

KW - Chromosome Aberrations/radiation effects

KW - Chromosomes, Human/genetics

KW - Cooperative Behavior

KW - Humans

KW - Internet

KW - Radiation Dosage

KW - Radioactive Hazard Release

KW - Radiometry/methods

KW - Time Factors

KW - Triage

U2 - 10.1007/s00411-014-0519-8

DO - 10.1007/s00411-014-0519-8

M3 - SCORING: Journal article

C2 - 24557539

VL - 53

SP - 241

EP - 254

JO - RADIAT ENVIRON BIOPH

JF - RADIAT ENVIRON BIOPH

SN - 0301-634X

IS - 2

ER -