Biography

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)

  1. Wicks, R.T., Huang, Y., Zhang, K. and Kang, J.U. Extravascular Optical Coherence Tomography Evaluation of Carotid Atherosclerosis and Pravastatin Therapy. Stroke, 2014.

  2. 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.
  3. 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.
  4. 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.
  5. 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.
  6. Liu, X., Zhang, K., Huang, Y. and Kang, J.U. Spectroscopic-speckle variance OCT for microvasculature detection and analysis. Biomedical Optics Express, 2011.
  7. 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.
  8. 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.
  9. Zhang, K. and Kang, J.U. Common-path low-coherence interferometry fiber-optic sensor guided microincision. Journal of Biomedical Optics, 2011.
  10. 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.
  11. Zhang, K. and Kang, J.U. Real-Time Numerical Dispersion Compensation for Standard/Full-Range Complex Fourier-Domain Optical Coherence Tomography. Conference Paper, 2011.
  12. Zhang, K., Huang, Y. and Kang, J.U. Full-Range, Complex-Conjugate-Free, Endoscopic Spectral-Domain Optical Coherence Tomography. 2011.
  13. 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.
  14. 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.
  15. Zhang, K. and Kang, J.U. Real-time numerical dispersion compensation using graphics processing unit for Fourier-domain optical coherence tomography. Electronics Letters, 2011.
  16. 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.
  17. 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.
  18. 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.
  19. 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.
  20. Kang, J.U. and Zhang, K. Real-Time Complex Optical Coherence Tomography Using Graphics Processing Unit for Surgical Intervention. Conference Paper, 2010.
  21. Kang, J.U. and Zhang, K. Common-path optical coherence tomography for microsurgeries. 2010.
  22. 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.
  23. 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.
  24. 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.
  25. 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.
  26. 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.
  27. 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.
  28. 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

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