Dr. Kang Zhang GE Global Research, USA
Lead Researcher
Email: [email protected]
Qualifications
2011 Ph.D., Johns Hopkins University, Electrical and Computer Engineering
2009 M.Sc., Johns Hopkins University, Electrical and Computer Engineering
2007 B.Sc., Nankai University, Physics
Publications(Selected)
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Wicks, R.T., Huang, Y., Zhang, K. and Kang,
J.U. Extravascular Optical Coherence Tomography Evaluation of Carotid
Atherosclerosis and Pravastatin Therapy. Stroke, 2014.
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Huang, Y., Wicks, R., Zhang, K. and Kang,
J.U. In-vivo and in-situ detection of atherosclerotic plaques using full-range
complex-conjugate-free spectral domain optical coherence tomography in the
murine carotid. Proceedings of SPIE, 2013.
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Kang, J.U., Huang, Y., Zhang, K. and
Gehlbach, P.L. Real-time three-dimensional Fourier-domain optical coherence tomography
video image guided microsurgeries. Journal of Biomedical Optics, 2012.
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Huang, Y., Zhang, K., Yi, W. and Kang, J.U.
In-vivo gingival sulcus imaging using full-range, complex-conjugate-free,
endoscopic spectral domain optical coherence tomography. Proceedings of SPIE,
2012.
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Huang, Y., Zhang, K., Kang, J.U. and Ilev,
I.K. Noncontact common-path Fourier domain optical coherence tomography method
for in vitro intraocular lens power measurement. Journal of Biomedical Optics,
2011.
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Liu, X., Zhang, K., Huang, Y. and Kang,
J.U. Spectroscopic-speckle variance OCT for microvasculature detection and
analysis. Biomedical Optics Express, 2011.
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Zhang, K., Huang, Y. and Kang, J.U.
Full-range Fourier-domain optical coherence tomography imaging probe with a magnetic-driven
resonant fiber cantilever. Optical Engineering, 2011.
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Huang, Y., Zhang, K., Kang, J.U. and Ilev,
I.K. A novel non-contact common-path Fourier domain optical coherence
tomography method for intraocular lens power measurement in-vitro. 2011.
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Zhang, K. and Kang, J.U. Common-path
low-coherence interferometry fiber-optic sensor guided microincision. Journal
of Biomedical Optics, 2011.
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Zhang, K. and Kang, J.U. Graphics
Processing Unit-Based Ultrahigh Speed Real-Time Fourier Domain Optical
Coherence Tomography. IEEE Journal of Selected Topics in Quantum Electronics,
2011.
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Zhang, K. and Kang, J.U. Real-Time
Numerical Dispersion Compensation for Standard/Full-Range Complex
Fourier-Domain Optical Coherence Tomography. Conference Paper, 2011.
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Zhang, K., Huang, Y. and Kang, J.U.
Full-Range, Complex-Conjugate-Free, Endoscopic Spectral-Domain Optical
Coherence Tomography. 2011.
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Zhang, K. and Kang, J.U. Real-Time 4D
Full-Range Complex Fourier-domain OCT with Non-Uniform Fast Fourier Transform
Based on Dual Graphics Processing Units Architecture. 2011.
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Zhang, K. and Kang, J.U. Real-time
intraoperative 4D full-range FD-OCT based on the dual graphics processing units
architecture for microsurgery guidance. Biomedical Optics Express, 2011.
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Zhang, K. and Kang, J.U. Real-time
numerical dispersion compensation using graphics processing unit for
Fourier-domain optical coherence tomography. Electronics Letters, 2011.
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Huang, Y., Zhang, K., Lin, N. and Kang,
J.U. A Motion Compensated Fiber Optic Confocal Microscope based on Common-path
Optical Coherent Tomography Distance Sensor. Optical Engineering, 2011.
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Zhang, K., Gehlbach, P. and Kang, J.U. Common-path
optical coherence tomography distance-sensor based surface tracking and motion
compensation hand-held microsurgical tool. Proceedings of SPIE, 2011.
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Zhang, K., Huang, Y., Pradilla, G. and
Kang, J.U. Real-time intraoperative full-range complex FD-OCT guided cerebral
blood vessel identification and brain tumor resection in neurosurgery.
Proceedings of SPIE, 2011.
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Zhang, K. and Kang, J.U. Real-time
dual-mode standard/complex Fourier-domain OCT system using graphics processing
unit accelerated 4D signal processing and visualization. Proceedings of SPIE,
2011.
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Kang, J.U. and Zhang, K. Real-Time Complex
Optical Coherence Tomography Using Graphics Processing Unit for Surgical
Intervention. Conference Paper, 2010.
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Kang, J.U. and Zhang, K. Common-path
optical coherence tomography for microsurgeries. 2010.
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Zhang, K., Akpek, E.K., Weiblinger, R.P.
and Ilev, I.K. Noninvasive volumetric quality evaluation of post-surgical clear
corneal incision via high-resolution Fourier-domain optical coherence tomography.
Electronics Letters, 2010.
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Zhang, K. and Kang, J.U. Graphics
processing unit accelerated non-uniform fast Fourier transform for
ultrahigh-speed, real-time Fourier-domain OCT. Optics Express, 2010.
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Kang, J.U., Han, J.-H., Liu, X. and
Gehlbach, P. Endoscopic Functional Fourier Domain Common-Path Optical Coherence
Tomography for Microsurgery. IEEE Journal of Selected Topics in Quantum
Electronics, 2010.
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Zhang, K. and Kang, J.U. Real-time 4D
signal processing and visualization using graphics processing unit on a regular
nonlinear-k Fourier-domain OCT system. Optics Express, 2010.
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Zhang, K., Katz, E., Kim, D.-H. and Ilev,
I.K. A Fiber-Optic Nerve Stimulation Probe Integrated with a Precise
Common-Path Optical Coherence Tomography Distance Sensor. 2010.
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Zhang, K., Petrillo, K.G., Gehlbach, P.L.
and Kang, J.U. A Free-Hand Surface Tracking and Motion Compensation
Microsurgical Tool System based on Common-path Optical Coherence Tomography
Distance Sensor. 2010.
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Kang, J.U., Han, J.-H., Liu, X. and Zhang,
K. Common-Path Optical Coherence Tomography for Biomedical Imaging and Sensing.
Journal of the Optical Society of Korea, 2010.
Personal Details
https://www.researchgate.net/profile/Kang-Zhang-4