An automated imaging system for radiation biodosimetry

Author:

Garty Guy1,Bigelow Alan W.1,Repin Mikhail2,Turner Helen C.2,Bian Dakai3,Balajee Adayabalam S.2,Lyulko Oleksandra V.1,Taveras Maria2,Yao Y. Lawrence3,Brenner David J.2

Affiliation:

1. Department of Radiation Oncology; Radiological Research Accelerator Facility, Columbia University; Irvington New York 10533

2. Department of Radiation Oncology; Center for Radiological Research, Columbia University; New York New York 10032

3. Department of Mechanical Engineering; Columbia University; New York New York 10027

Funder

National Institute of Biomedical Imaging and Bioengineering

Publisher

Wiley

Subject

Medical Laboratory Technology,Instrumentation,Histology,Anatomy

Reference38 articles.

1. Computational methods for analysis of foci: validation for Radiation-induced γ-H2AX foci in human cells;Böcker;Radiat Res,2006

2. An automated system for whole microscopic image acquisition and analysis;Bueno;Microsc Res Tech,2014

3. Design and preliminary validation of a rapid automated biosodimetry tool for high throughput radiological triage;Chen;Proc ASME,2009

4. Development of a robotically-based automated biodosimetry tool for high-throughput radiological triage;Chen;Int J Biomechatronics Biomed Robot,2010

5. mBAND: a high resolution multicolor banding technique for the detection of complex intrachromosomal aberrations;Chudoba;Cytogenet Genome Res,2004

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