Optical forward-scattering for detection of Listeria monocytogenes and other Listeria species PP Banada, S Guo, B Bayraktar, E Bae, B Rajwa, JP Robinson, ... Biosensors and Bioelectronics 22 (8), 1664-1671, 2007 | 156 | 2007 |
Label-free detection of multiple bacterial pathogens using light-scattering sensor PP Banada, K Huff, E Bae, B Rajwa, A Aroonnual, B Bayraktar, A Adil, ... Biosensors and Bioelectronics 24 (6), 1685-1692, 2009 | 145 | 2009 |
Technique for simultaneous particle size and velocity measurement ED Hirleman Jr US Patent 4,251,733, 1981 | 114 | 1981 |
Discrete-dipole approximation for scattering by features on surfaces by means of a two-dimensional fast Fourier transform technique R Schmehl, BM Nebeker, ED Hirleman JOSA A 14 (11), 3026-3036, 1997 | 113 | 1997 |
Response characteristics of laser diffraction particle size analyzers- Optical sample volume extent and lens effects ED Hirleman, V Oechsle, NA Chigier Optical Engineering 23, 610-619, 1984 | 103 | 1984 |
Educating engineers as global citizens: A call for action J Grandin, E Hirleman Report of the National Summit Meeting on the Globalization of Engineering …, 2009 | 97* | 2009 |
Educating engineers as global citizens: A call for action/A report of the national summit meeting on the globalization of engineering education JM Grandin, ED Hirleman Online Journal for Global Engineering Education 4 (1), 1, 2009 | 97 | 2009 |
Feature extraction from light-scatter patterns of Listeria colonies for identification and classification B Bayraktar, PP Banada, ED Hirleman, AK Bhunia, JP Robinson, B Rajwa Journal of Biomedical Optics 11 (3), 034006-034006-8, 2006 | 90 | 2006 |
Modeling of multiple scattering effects in Fraunhofer diffraction particle size analysis E Dan Hirleman Particle & Particle Systems Characterization 5 (2), 57-65, 1988 | 84 | 1988 |
Biophysical modeling of forward scattering from bacterial colonies using scalar diffraction theory E Bae, PP Banada, K Huff, AK Bhunia, JP Robinson, ED Hirleman Applied optics 46 (17), 3639-3648, 2007 | 76 | 2007 |
Laser diffraction spectroscopy: influence of particle shape and a shape adaptation technique H Mühlenweg, ED Hirleman Particle & Particle Systems Characterization 15 (4), 163-169, 1998 | 73 | 1998 |
Optimal scaling of the inverse Fraunhofer diffraction particle sizing problem: the linear system produced by quadrature E Dan Hirleman Particle & Particle Systems Characterization 4 (1‐4), 128-133, 1987 | 68 | 1987 |
Automated classification of bacterial particles in flow by multiangle scatter measurement and support vector machine classifier B Rajwa, M Venkatapathi, K Ragheb, PP Banada, ED Hirleman, T Lary, ... Cytometry Part A 73 (4), 369-379, 2008 | 67 | 2008 |
Automated classification and recognition of bacterial particles in flow by multi-angle scatter measurement and a support-vector machine classifier B Rajwa, M Venkatapathi, K Ragheb, PP Banada, ED Hirleman, T Lary, ... Biomedical Optics (BiOS) 2007, 64410O-64410O-7, 2007 | 67* | 2007 |
Light‐scattering sensor for real‐time identification of Vibrio parahaemolyticus, Vibrio vulnificus and Vibrio cholerae colonies on solid agar plate K Huff, A Aroonnual, AEF Littlejohn, B Rajwa, E Bae, PP Banada, ... Microbial Biotechnology 5 (5), 607-620, 2012 | 56 | 2012 |
History of Development of the Phase‐Doppler Particle‐Sizing Velocimeter E Dan Hirleman Particle & particle systems characterization 13 (2), 59-67, 1996 | 50 | 1996 |
Modeling light propagation through bacterial colonies and its correlation with forward scattering patterns E Bae, N Bai, A Aroonnual, JP Robinson, AK Bhunia, ED Hirleman Journal of Biomedical Optics 15 (4), 045001-045001-11, 2010 | 49 | 2010 |
Six-degree-of-freedom displacement measurement system using a diffraction grating JA Kim, KC Kim, EW Bae, S Kim, YK Kwak Review of Scientific Instruments 71 (8), 3214-3219, 2000 | 48 | 2000 |
Design methods for six-degree-of-freedom displacement measurement systems using cooperative targets JA Kim, EW Bae, SH Kim, YK Kwak Precision engineering 26 (1), 99-104, 2002 | 45 | 2002 |
Particle sizing by optical, nonimaging techniques ED Hirleman Liquid Particle Size Measurement Techniques, 35-60, 1984 | 42 | 1984 |