Peer-reviewed Journal Articles (By First Author)

[A]

  1. Ai, J.; Wang, L. V.; "Synchronous self-elimination of autocorrelation interference in Fourier-domain optical coherence tomography," Optics Letters 30(21) 2939-2941 (2005) [PDF]

  2. Ai, J.; Wang, L. V.; "Spectral-domain optical coherence tomography: removal of autocorrelation using an optical switch," Applied Physics Letters 88(11) 111115-(1-3) (2006) [PDF]

  3. [Akers, W. J.; Kim, C.]; Berezin, M.; Guo, K.; Fuhrhop, R.; Lanza, G. M.; Fischer, G. M.; Daltrozzo, E.; Zumbusch, A.; Cai, X.; Wang, L. V.; Achilefu, S.; "Non-invasive photoacoustic and fluorescence sentinel lymph node identification using dye-loaded perfluorocarbon nanoparticles," ACS Nano 5(1) 173-182 (2011) [PDF]

  4. Akers, W. J.; Edwards, W. B.; Kim, C.; Xu, B.; Erpelding, T. N.; Wang, L. V.; Achilefu, S.; "Multimodal sentinel lymph node mapping with single-photon emission computed tomography (SPECT)/computed tomography (CT) and photoacoustic tomography," Translational Research 159(3) 175-181 (2012) [PDF]

  5. Aldrich, M. B.; Marshall, M. V.; Sevick-Muraca, E. M.; Lanza, G.; Kotyk, J.; Culver, J.; Wang, L. V.; Uddin, J.; Crews, B. C.; Marnett, L. J.; Liao, J. C.; Contag, C.; Crawford, J. M.; Wang, K.; Reisdorph, B.; Appelman, H.; Turgeon, D. K.; Meyer, C.; Wang, T.; "Seeing it through: translational validation of new medical imaging modalities," Biomedical Optics Express 3(4) 764-776 (2012) [PDF]

  6. Anastasio, M. A.; Zhang, J.; Pan, X. C.; Zou, Y.; Ku, G.; Wang, L. V.; "Half-time image reconstruction in thermoacoustic tomography," IEEE Transactions on Medical Imaging 24(2) 199-210 (2005) [PDF]

  7. [Avti, P. K. ; Hu, S. ; Favazza, C. ]; Mikos, A. G. ; Jansen, J. A.; Shroyer, K. R.; Wang, L. V.; Sitharaman, B.; "Detection, mapping, and quantification of single walled carbon nanotubes in histological specimens with photoacoustic microscopy," PLoS ONE 7(4) e35064 (2012) [PDF]

[B]

  1. Bai, M.-Y.; Moran, C. H.; Zhang, L.; Liu, C.; Zhang, Y.; Wang, L. V.; Xia, Y.; "Facile and general method for the encapsulation of different types of imaging contrast agents within micrometer-sized polymer beads," Advanced Functional Materials 22 764–770 (2012) [PDF]

  2. Bauer, A. Q.; Northdurft, R. E.; Erpelding, T. N.; Wang, L. V.; Culver, J. P.; "Quantitative photoacoustic imaging: correcting for heterogeneous light fluence distributions using diffuse optical tomography," Journal of Biomedical Optics 16(9) 096016 (2011) [PDF]

  3. Bitton, R.; Zemp, R. J.; Yen, J.; Wang, L. V.; Shung, K. K.; "A 3-D high-frequency array based 16 channel photoacoustic microscopy system for in-vivo micro-vascular imaging," IEEE Transactions on Medical Imaging 28(8) 1190-1197 (2009) [PDF]

  4. Black, K. C. L.; Wang, Y.; Luehmann, H.; Cai, X.; Xing, W.; Pang, B.; Zhao, Y.; Cutler, C.; Wang, L. V.; Liu, Y.; Xia, Y.; "Radioactive 198Au-doped nanostructures with different shapes for in vivo analyses of their biodistribution, tumor uptake, and intratumoral distribution," ACS Nano 8(5) 4385–4394 (2014) [PDF]

[C]

  1. [Cai, X.; Li, W.]; Kim, C. H.; Yuan, Y.; Wang, L. V.; Y. Xia, Y.; "In vivo quantitative evaluation of the transport kinetics of gold nanocages in a lymphatic system by noninvasive photoacoustic tomography," ACS Nano 5(12) 9658-9667 (2011) [PDF]

  2. Cai, X.; Kim, C.; Pramanik, M.; Wang, L. V.; "Photoacoustic tomography of foreign bodies in soft biological tissue," Journal of Biomedical Optics 16(4) 046017 (2011) [PDF]

  3. [Cai, X.; Paratala, B. S.; Hu, S.]; Sitharaman, B.; Wang, L. V.; "Multiscale photoacoustic microscopy of single-walled carbon nanotube-incorporated tissue engineering scaffolds," Tissue Engineering: Part C 18(4) 310–317 (2012) [PDF]

  4. [Cai, X.; Li, L.]; Krumholz, A.; Guo, Z.; Erpelding, T. N.; Zhang, C.; Zhang, Y.; Xia, Y.; Wang, L. V.; "Multi-scale molecular photoacoustic tomography of gene expression," PLoS ONE 7(8) e43999 (2012) [PDF]

  5. [Cai, X.; Zhang, Y.]; Li, L.; Choi, S. W.; MacEwan, M. R.; Jao, J.; Kim, C.; Xia, Y.; Wang, L. V.; "Investigation of neovascularization in three-dimensional porous scaffolds in vivo by a combination of multiscale photoacoustic microscopy and optical coherence tomography," Tissue Engineering: Part C 19(3) 196–204 (2013) [PDF]

  6. Cai, X.; Zhang, Y.; Xia, Y.; Wang, L. V.; "Photoacoustic microscopy in tissue engineering," Materials Today 16(3) 67-77 (2013) [PDF]

  7. Cameron, B. D.; Rakovic, M. J.; Mehrubeoglu, M.; Kattawar, G. W.; Rastegar, S.; Wang, L. V.; Cote, G. L.; "Measurement and calculation of the two-dimensional backscattering Mueller matrix of a turbid medium," Optics Letters 23(7) 485-487 (1998) [PDF]

  8. Cameron, B. D.; Rakovic, M. J.; Mehrubeoglu, M.; Kattawar, G. W.; Rastegar, S.; Wang, L. V.; Cote, G. L.; "Measurement and calculation of the two-dimensional backscattering Mueller matrix of a turbid medium (vol 23, pg 485, 1998)," Optics Letters 23(20) 1630-1630 (1998)

  9. Cash, K. J.; Li, C.; Xia, J.; Wang, L. V.; Clark, H. A.; "Optical drug monitoring: photoacoustic imaging of nanosensors to monitor therapeutic lithium in vivo," ACS Nano 9(2) 1692–1698 (2015) [PDF]

  10. Chai, Y.; Guo, T.; Jin, C. M.; Haufler, R. E.; Chibante, L. P. F.; Fure, J.; Wang, L. V.; Alford, J. M.; Smalley, R. E.; "Fullerenes with metals inside," Journal of Physical Chemistry 95(20) 7564-7568 (1991) [PDF]

  11. Chang, C. C.; Cho, Y.; Wang, L. V.; Zou, J.; "Micromachined silicon acoustic delay lines for ultrasound applications," J. Micromech. Microeng. 23 025066 (2013) [PDF]

  12. Chatni, M. R.; Yao, J.; Danielli, A.; Favazza, C. P.; Maslov, K. I.; Wang, L. V.; "Functional photoacoustic microscopy of pH," Journal of Biomedical Optics 16(10) 100503 (2011) [PDF]

  13. [Chatni, M. R.; Xia, J.]; Sohn, R.; Maslov, K.; Guo, Z.; Zhang, Y.; Wang, K.; Xia, Y.; Anastasio, M.; Arbeit, J.; L. V. Wang, L. V.; "Tumor glucose metabolism imaged in vivo in small animals with whole-body photoacoustic computed tomography," Journal of Biomedical Optics 17(7) 076012 (2012) [PDF]

  14. Chen, J.; Yang, M.; Zhang, Q.; Cho, E. C.; Cobley, C. M.; Kim, C.; Glaus, C.; Wang, L. V.; Welch, M. J.; Xia, Y.; "Engineering the photothermal properties of gold nanocages for cancer diagnosis and treatment," Advanced Functional Materials 20(21) 3684–3694 (2010) [PDF]

  15. [Cho, E. C.; Kim, C. ]; Zhou, F. ; Cobley, C. M.; Song, K. H.; Chen, J. Y.; Li, Z. Y.; Wang, L. V.; Xia, Y. N.; "Measuring the optical absorption cross-sections of au-Ag nanocages and au nanorods by photoacoustic imaging," Journal of Physical Chemistry C 113(21) 9023-9028 (2009) [PDF]

  16. [Cho, E. C.; Zhang, Y.; Cai, X.]; Moran, C. M.; Wang, L. V.; Xia, Y.; "Quantitative analysis of the fate of au nanocages after uptake by u87-MG tumor cells under both in vitro and in vivo conditions," Angewandte Chemie International Edition 52(4) 1152–1155 (2013) [PDF]

  17. Cho, Y.; Chang, C. C.; Yu, J.; Jeon, M.; Kim, C.; Wang, L. V.; Zhou, J.; "Handheld photoacoustic tomography probe built using optical-fiber parallel acoustic delay lines," Journal of Biomedical Optics 19(8) 086007 (2014) [PDF]

  18. Cho, Y.; Chang, C. C.; Wang, L. V.; Zhou, J.; "Micromachined silicon parallel acoustic delay lines as time-delayed ultrasound detector array for real-time photoacoustic tomography," Journal of Optics 18(2) 024003 (2016) [Request PDF]

  19. Cobley, C. M.; Chen, J.; Cho, E. C.; Wang, L. V.; Xia, Y.; "Gold nanostructures: a class of multifunctional materials for biomedical applications," Chemical Society Reviews 40 44-56 (2011) [PDF]

  20. Cong, W. X.; Wang, L. V.; Wang, Ge; "Formulation of photon diffusion from spherical bioluminescent sources in an infinite homogeneous medium," Biomedical Engineering Online 3(12) (2004) [PDF]

  21. Cong, W. X.; Wang, G.; Kumar, D.; Liu, Y.; Jiang, M.; Wang, L. V.; Hoffman, E. A.; McLennan, G.; McCray, P. B.; Zabner, J.; Cong, A.; "Practical reconstruction method for bioluminescence tomography," Optics Express 13(18) 6756-6771 (2005) [PDF]

  22. Cong, W. X.; Durairaj, K.; Wang, L. V.; Wang, G.; "A born-type approximation method for bioluminescence tomography," Medical Physics 33(3) 679-686 (2006) [PDF]

  23. Crochet, J. J.; Gnyawali, S. C.; Chen, Y. C.; Lemley, E. C.; Wang, L. V.; Chen, W. R.; "Temperature distribution in selective laser-tissue interaction," Journal of Biomedical Optics 11(3) 034031 (2006) [PDF]

[D]

  1. Dai, T. H.; Pikkula, B. M.; Wang, L. V.; Anvari, B.; "Comparison of human skin opto-thermal response to near-infrared and visible laser irradiations: a theoretical investigation," Physics in Medicine and Biology 49(21) 4861-4877 (2004) [PDF]

  2. Danielli, A.; Favazza, C. P.; Maslov, K.; Wang, L. V.; "Picosecond absorption relaxation measured with nanosecond laser photoacoustics," Applied Physics Letters 97 163701(1-3) (2010) [PDF]

  3. Danielli, A.; Favazza, C. P.; Maslov, K.; L. V. Wang, L. V.; "Single-wavelength functional photoacoustic microscopy in biological tissue," Optics Letters 36(5) 769-771 (2011) [PDF]

  4. Danielli, A.; Maslov, K.; Garcia-Uribe, A.; Winkler, A. M.; Li, C.; Wang, L.; Chen, Y.; Dorn II, G. W.; Wang, L. V.; "Label-free photoacoustic nanoscopy," Journal of Biomedical Optics 19(8) 086006 (2014) [PDF]

  5. Danielli, A.; Maslov, K.; Favazza, C. P.; Xia, J.; Wang, L. V.; "Nonlinear photoacoustic spectroscopy of hemoglobin," Applied Physics Letters 106(20) 203701 (2015) [PDF]

[E]

  1. Erpelding, T. N.; Kim, C. H.; Pramanik, M.; Jankovic, L.; Maslov, K.; Guo, Zijian; Margenthaler, Julie A.; Pashley, M. D.; Wang, L. V.; "Sentinel lymph nodes in the rat: noninvasive photoacoustic and uS imaging with a clinical uS system," Radiology 265(1) 102-110 (2010) [PDF]

[F]

  1. Fang, H.; Maslov, K.; Wang, L. V.; "Photoacoustic Doppler flow measurement in optically scattering media," Applied Physics Letters 91(26) 264103-(1-3) (2007) [PDF]

  2. Fang, H.; Maslov, K.; Wang, L. V.; "Photoacoustic Doppler effect from flowing small light-absorbing particles," Physical Review Letters 99(18) 184501-(1-4) (2007) [PDF]

  3. Fang, H.; Maslov, K.; Wang, L. V.; "photoacoustic Doppler flow measurement in optically scattering media (vol 91, art no 264103, 2007): eRRATUM," Applied Physics Letters 92(6) (2008) [PDF]

  4. Fang, H.; Wang, L. V.; "M-mode photoacoustic particle flow imaging," Optics Letters 34(5) 671-673 (2009) [PDF]

  5. Favazza, C. P.; Jassim, O.; Cornelius, L. A.; L. V. Wang, L. V.; "In vivo photoacoustic microscopy of human cutaneous microvasculature and a nevus," Journal of Biomedical Optics 16(1) 016015 (2011) [PDF]

  6. Favazza, C. P.; Cornelius, L. A.; Wang, L. V.; "In vivo functional photoacoustic microscopy of cutaneous microvasculature in human skin," Journal of Biomedical Optics 16(2) 026004 (2011) [PDF]

  7. Feng, D. Z.; Xu, Y.; Ku, G.; Wang, L. V.; "Microwave-induced thermoacoustic tomography: reconstruction by synthetic aperture," Medical Physics 28(12) 2427-2431 (2001) [PDF]

  8. [Filonov, G. S.; Krumholz, A.]; Xia, J.; Yao, J.; Wang, L. V.; Verkhusha, V. V.; "Deep-tissue photoacoustic tomography of genetically encoded iRFP¬ probe," Angewandte Chemie International Edition 51(6) 1448-1451 (2012) [PDF]

[G]

  1. G. Liang; R. S. Liu; Wang, L. V.; "Cu k-edge study of (Tl0.5Pb0.5)Sr2Ca1-xYxCu2O7-d," International Journal of Modern Physics B 12 3296-3298 (1998)

  2. G. Liang; M. Li; J. T. Markert; Wang, L. V.; "Cluster model description of polarized Cu K-edge spectra of nd2-xCexCuO4-d," International Journal of Modern Physics B 12 3299 - 3305 (1998)

  3. G. Liang; Y. Yi; R. F. Jardim; Wang, L. V.; "Cu k-edge studies of the charge carriers in th-doped cuprate system r2-xThxCuO4-d (R=Nd, sm, and gd)," International Journal of Modern Physics B 13 3750-3754 (1999) [PDF]

  4. G. Liang; R. S. Liu; Wang, L. V.; "XANES study of the valence of pb in (Tl0.5Pb0.5)Sr2(Ca1-xYx)Cu2O7-d," International Journal of Modern Physics B 13 3693-3696 (1999) [PDF]

  5. Gamelin, J.; Aguirre, A.; Maurudis, A.; Huang, F.; Castillo, D.; Wang, L. V.; Zhu, Q.; "Curved array photoacoustic tomographic system for small animal imaging," Journal of Biomedical Optics 13(2) 024007 (2008) [PDF]

  6. Gamelin, J.; Maurudis, A.; Aguirre, A.; Huang, F.; Guo, P.; Wang, L. V.; Zhu, Q.; "A real-time photoacoustic tomography system for small animals," Optics Express 17(13) 10489-10498 (2009) [PDF]

  7. Gao, L.; Wang, L.; Li, C.; Ke, H.; Zhang, C.; Wang, L. V.; "Single-cell photoacoustic thermometry," Journal of Biomedical Optics 18(2) 026003 (2013) [PDF]

  8. [Gao, L.; Zhang, C.; Li, C.]; Wang, L. V.; "Intracellular temperature mapping with fluorescence-assisted photoacoustic-thermometry," Applied Physics Letters 102 193705 (2013) [PDF]

  9. Gao, L.; Wang, L. ; Li, C.; Garcia-Uribe, A.; Wang, L. V.; "Photothermal bleaching in time-lapse photoacoustic microscopy,” journal of biophotonics, 6 (6-7), 543-548," Journal of Biophotonics 6 543-548 (2013) [PDF]

  10. Gao, L.; Garcia-Uribe, A.; Liu, Y.; Li, C.; Wang, L. V.; "Photobleaching imprinting microscopy: seeing clearer and deeper," Journal of Cell Science 127 288–294 (2014) [PDF]

  11. Gao, L.; Zhu, L.; Li, C.; Wang, L. V.; "Nonlinear light-sheet fluorescence microscopy by photobleaching imprinting," Journal of Royal Society Interface 11 20130851 (2014) [PDF]

  12. [Gao, L.; Liang, J.]; Li, C.; Wang, L. V.; "Single-shot compressed ultrafast photography at one hundred billion frames per second," Nature 516(7529) 74–77 (2014) [PDF]

  13. Gao, L.; Wang, L. V.; "Review of snapshot multidimensional optical imaging: measuring photon tags in parallel," Physics Reports 616 1–37 (2016) [Request PDF]

  14. Garcia-Uribe, A.; Kehtarnavaz, N.; Marquez, G.; Prieto, V.; Duvic, M.; Wang, L. V.; "Skin cancer detection by spectroscopic oblique-incidence reflectometry: classification and physiological origins," Applied Optics 43(13) 2643-2650 (2004) [PDF]

  15. Garcia-Uribe, A.; Balareddy, K. C.; Zou, J.; Wang, L. V.; "Micromachined fiber optical sensor for in vivo measurement of optical properties of human skin," IEEE Sensors 8(10) 1698-1703 (2008) [PDF]

  16. Garcia-Uribe, A.; Balareddy, K. C.; Zou, J.; Wojcik, A. K.; Wang, K. K.; Wang, L. V.; "Micromachined “side-viewing” optical sensor probe for detection of esophageal cancers," Sensors and Actuators A-Physical 150 144-150 (2009) [PDF]

  17. Garcia-Uribe, A.; Smith, E. B.; Zou, J.; Duvic, M.; Prieto, V.; L. V. Wang, L. V.; "In-vivo characterization of optical properties of pigmented skin lesions including melanoma using oblique incidence diffuse reflectance spectrometry," Journal of Biomedical Optics 16(2) 020501 (2011) [PDF]

  18. Garcia-Uribe, A.; Chang, C. C.; Yapici, M. K.; Zou, J.; Banerjee, B.; Kuczynski, J.; Ong, E.; Marner, E. S.; Wang, L. V.; "High-Transmission-Efficiency and side-Viewing micro oIDRS probe for fast and minimally invasive tumor margin detection," IEEE Sensors Journal 11(4) 891-896 (2011) [PDF]

  19. Garcia-Uribe, A.; Zou, J.; Duvic, M.; Cho-Vega, J. H.; Prieto, V.; Wang, L. V.; "In vivo diagnosis of melanoma and non-melanoma skin cancer using oblique incidence diffuse reflectance spectrometry," Cancer Research 72(11) 2738-2745 (2012) [PDF]

  20. Garcia-Uribe, A.; Erpelding, T. N.; Krumholz, A.; Ke, H.; Maslov, K.; Appleton, C.; Margenthaler, J. A.; Wang, L. V.; "Dual-modality photoacoustic and ultrasound imaging system for noninvasive sentinel lymph node detection in patients with breast cancer," Scientific Reports 5 15748 (2015) [PDF]

  21. [Guo, Z.; Li, L.]; Wang, L. V.; "On the speckle-free nature of photoacoustic tomography," Medical Physics 36(9) 4084-4088 (2009) [PDF]

  22. Guo, Z.; Li, C. H.; Song, L.; Wang, L. V.; "Compressed sensing in photoacoustic tomography in vivo," Journal of Biomedical Optics 15(2) 021311 (2010) [PDF]

  23. Guo, Z.; Hu, S.; Wang, L. V.; "Calibration-free absolute quantification of optical absorption coefficients using acoustic spectra in three-dimensional photoacoustic microscopy of biological tissue," Optics Letters 35(12) 2067-2069 (2010) [PDF]

  24. Guo, Z.; Xu, Z.; Wang, L. V.; "Dependence of photoacoustic speckles on boundary roughness," Journal of Biomedical Optics 17(4) 046009 (2012) [PDF]

  25. Guo, Z.; Favazza, C.; Garcia-Uribe, A.; Wang, L. V.; "Quantitative photoacoustic microscopy of optical absorption coefficients from acoustic spectra in the optical diffusive regime," Journal of Biomedical Optics 17(6) 066011 (2012) [PDF]

  26. Gupta, S.; Chatni, M. R.; Rao, A. L. N.; Vullev, V. I.; Wang, L. V.; Anvari, B.; "Virus-mimicking nano-constructs as a contrast agent for near infrared photoacoustic imaging," Nanoscale 5 1772-1776 (2013) [PDF]

[H]

  1. Hai, P.; Yao, J.; Maslov, K.; Zhou, Y.; Wang, L. V.; "Near-infrared optical resolution photoacoustic microscopy," Optics Letters 19(17) 5192–5195 (2014) [PDF]

  2. Hai, P.; Zhou, Y.; Liang, J.; Li, C.; Wang, L. V.; "Photoacoustic tomography of vascular compliance in humans," Journal of Biomedical Optics 20(12) 126008 (2015) [PDF]

  3. Hai, P.; Yao, J.; Li, G.; Li, C.; Wang, L. V.; "Photoacoustic elastography," Optics Letters 41(4) 725-728 (2016) [Request PDF]

  4. Hai, P.; Zhou, Y.; Gong, L.; Wang, L. V.; "Quantitative photoacoustic elastography in humans," Journal of Biomedical Optics 21(6) 066011 (2016) [Request PDF]

  5. Hai, P.; Zhou, Y.; Zhang, R.; Ma, J.; Li, Y.; Shao, J.-Y.; Wang, L. V.; "Label-free high-throughput detection and quantification of circulating melanoma tumor cell clusters by linear-array-based photoacoustic tomography," Journal of Biomedical Optics 22(4) 041003 (2017) [Request PDF]

  6. [He, Y.; Wang, L.; Shi, J.]; Yao, J.; Li, L.; Zhang, R.; Huang, C.-H.; Zou, J.; Wang, L. V.; "In vivo label-free photoacoustic flow cytography and on-the-spot laser killing of single circulating melanoma cells," Scientific Reports 6 39616 (2016) [Request PDF]

  7. He, Y.; Shen, Y.; Feng, X.; Liu, C.; Wang, L, V.; "Homogenizing microwave illumination in thermoacoustic tomography by a linear-to-circular polarizer based on frequency selective surfaces," Applied Physics Letters 111(6) 063703 (2017) [Request PDF]

  8. He, Y.; Shen, Y. C.; Liu, C. J.; Wang, L. V.; "Suppressing excitation effects in microwave induced thermoacoustic tomography by multi-view Hilbert transformation," Applied Physics Letters 110(5) (2017) [Request PDF]

  9. He, Y.; Liu, C.; Lin, L.; Wang, L, V.; "Comparative effects of linearly and circularly polarized illumination on microwave-Induced thermoacoustic tomography," IEEE Antennas and Wireless Propagation Letters 16 1593-1596 (2017) [Request PDF]

  10. Hemphill, A. S.; Tay, J. W.; Wang, L. V.; "Hybridized wavefront shaping for high-speed, high-efficiency focusing through dynamic diffusive media," Journal of Biomedical Optics 21(12) 121502 (2016) [Request PDF]

  11. Hennen, S. N.; Xing, W.; Shui, Y. B.; Zhou, Y.; Jennifer, K.; Andrews-Kaminsky, L. B.; Kass, M. A.; Beebe, D. C.; Maslov, K. I.; Wang, L. V.; "Photoacoustic tomography imaging and estimation of oxygen saturation of hemoglobin in ocular tissue of rabbits," Experimental Eye Research 138 153–158 (2015) [PDF]

  12. Hielscher, A. H.; Jacques, S. L.; Wang, L. V.; Tittel, F. K.; "The influence of boundary-Conditions on the accuracy of diffusion-Theory in time-Resolved reflectance spectroscopy of biological tissues," Physics in Medicine and Biology 40(11) 1957-1975 (1995) [PDF]

  13. Hollmann, J. L.; Wang, L. V.; "Multiple-source optical diffusion approximation for a multilayer scattering medium," Applied Optics 46(23) 6004-6009 (2007) [PDF]

  14. Hsu, H.-C.; Wang, L.; Wang, L. V.; "In vivo photoacoustic microscopy of human cuticle microvasculature with single-cell resolution," Journal of Biomedical Optics 21(5) 056004 (2016) [Request PDF]

  15. Hu, S.; Yan, P.; Maslov, K.; Lee, J.-M.; Wang, L. V.; "Intravital imaging of amyloid plaques in a transgenic mouse model using optical-resolution photoacoustic microscopy," Optics Letters 34(24) 3899-3901 (2009) [PDF]

  16. Hu, S.; Maslov, K.; Tsytsarev, V.; Wang, L. V.; "Functional transcranial brain imaging by optical-resolution photoacoustic microscopy," Journal of Biomedical Optics 14(4) 040503 (2009) [PDF]

  17. Hu, S.; Maslov, K.; Wang, L. V.; "Noninvasive label-free imaging of microhemodynamics by optical-resolution photoacoustic microscopy," Optics Express 17(9) 7688-7693 (2009) [PDF]

  18. Hu, S.; Maslov, K.; Wang, L. V.; "In vivo functional chronic imaging of a small animal model using optical-resolution photoacoustic microscopy," Medical Physics 36(6) 2320-2323 (2009) [PDF]

  19. Hu, S.; Wang, L. V.; "Neurovascular photoacoustic tomography," Frontiers in Neuroenergetics 2 1-7 (2010) [PDF]

  20. Hu, S.; Wang, L. V.; "Photoacoustic imaging and characterization of the microvasculature," Journal of Biomedical Optics 15(1) 011101 (2010) [PDF]

  21. Hu, S.; Rao, B.; Maslov, K.; Wang, L. V.; "Label-free photoacoustic ophthalmic angiography," Optics Letters 35(1) 1-3 (2010) [PDF]

  22. Hu, S.; Maslov, K.; Wang, L. V.; "Three-dimensional optical-resolution photoacoustic microscopy," Journal of Visualized Experiments 51 (2011) [PDF]

  23. [Hu, S.; Maslov, K.]; Wang, L. V.; "Second-generation optical-resolution photoacoustic microscopy with improved sensitivity and speed," Optics Letters 36(7) 1134-1136 (2011) [PDF]

  24. Hu, S.; Wang, L. V.; "Optical-resolution photoacoustic microscopy: auscultation of biological systems at the cellular level," Biophysical Journal 105(4) 841-847 (2013) [PDF]

  25. Huang, B.; Xia, J.; Maslov, K.; Wang, L. V.; "Improving limited-view photoacoustic tomography with an acoustic reflector," Journal of Biomedical Optics 18(11) 110505 (2013) [PDF]

  26. [Huang, C.; Nie, L.]; Schoonover, R. W.; Wang, L. V.; Anastasio, M. A.; "Photoacoustic computed tomography correcting for heterogeneity and attenuation," Journal of Biomedical Optics 17(6) 061211 (2012) [PDF]

  27. [Huang, C.; Nie, L.]; Schoonover, R. W.; Guo, Z.; Schirra, C. O.; Anastasio, M. A.; Wang, L. V.; "Aberration correction for transcranial photoacoustic tomography of primates employing adjunct image data," Journal of Biomedical Optics 17(6) 066016 (2012) [PDF]

  28. Huang, C.; Wang, K.; Nie, L.; Wang, L. V.; Anastasio, M. A.; "Full-wave iterative imaging reconstruction in photoacoustic tomography with acoustically inhomogeneous media," IEEE Transactions on Medical Imaging 32(6) 1097–1110 (2013) [PDF]

  29. Huang, C.-H.; Yao, J.; Wang, L. V.; Zou, J.; "Water-immersible 2-axis scanning mirror microsystem for ultrasound andha photoacoustic microscopic imaging applications," Microsyst. Technol. 19 577–582 (2013) [PDF]

[I]

[J]

  1. Jiang, H. B.; Marquez, G.; Wang, L. V.; "Particle sizing in concentrated suspensions by use of steady-state, continuous-wave photon-migration techniques," Optics Letters 23(5) 394-396 (1998) [PDF]

  2. Jiao, S. L.; Yao, G.; Wang, L. V.; "Depth-resolved two-dimensional stokes vectors of backscattered light and Mueller matrices of biological tissue measured with optical coherence tomography," Applied Optics 39(34) 6318-6324 (2000) [PDF]

  3. Jiao, S. L.; Wang, L. V.; "Two-dimensional depth-resolved Mueller matrix of biological tissue measured with double-beam polarization-sensitive optical coherence tomography," Optics Letters 27(2) 101-103 (2002) [PDF]

  4. Jiao, S. L.; Wang, L. V.; "Jones-matrix imaging of biological tissues with quadruple-channel optical coherence tomography," Journal of Biomedical Optics 7(3) 350-358 (2002) [PDF]

  5. Jiao, S. L.; Yu, W. R.; Stoica, G.; Wang, L. V.; "Optical-fiber-based Mueller optical coherence tomography," Optics Letters 28(14) 1206-1208 (2003) [PDF]

  6. Jiao, S. L.; Yu, W. R.; Stoica, G.; Wang, L. V.; "Contrast mechanisms in polarization-sensitive Mueller-matrix optical coherence tomography and application in burn imaging," Applied Optics 42(25) 5191-5197 (2003) [PDF]

  7. Jiao, S. L.; Todorovic, M.; Stoica, G.; Wang, L. V.; "Fiber-based polarization-sensitive Mueller matrix optical coherence tomography with continuous source polarization modulation," Applied Optics 44(26) 5463-5467 (2005) [PDF]

  8. Jin, X.; Wang, L. V.; "Thermoacoustic tomography with correction for acoustic speed variations," Physics in Medicine and Biology 51(24) 6437-6448 (2006) [PDF]

  9. Jin, X.; Li, C. H.; Wang, L. V.; "Effects of acoustic heterogeneities on transcranial brain imaging with microwave-induced thermoacoustic tomography," Medical Physics 35(7) 3205-3214 (2008) [PDF]

[K]

  1. Ke, H.; Erpelding, T. N.; Jankovic, L.; Liu, C.; Wang, L. V.; "Performance characterization of an integrated ultrasound, photoacoustic, and thermoacoustic imaging system," Journal of Biomedical Optics 15(5) 056010 (2012) [PDF]

  2. Ke, H.; Tai, S.; Wang, L. V.; "Photoacoustic thermography of tissue," Journal of Biomedical Optics 19(2) 026003 (2014) [PDF]

  3. Kim, C. H.; Zemp, R. J.; Wang, L. V.; "Intense acoustic bursts as a signal-enhancement mechanism in ultrasound-modulated optical tomography," Optics Letters 31(16) 2423-2425 (2006) [PDF]

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  5. Kim, C. H.; Song, K. H.; Maslov, K.; Wang, L. V.; "Ultrasound-modulated optical tomography in reflection mode with ring-shaped light illumination," Journal of Biomedical Optics 14(2) 024015 (2009) [PDF]

  6. Kim, C. H.; Song, K. H.; Gao, F. ; Wang, L. V.; "Sentinel lymph nodes and lymphatic vessel: noninvasive dual-modality in vivo mapping by using indocyanine green in rats – volumetric spectroscopic photoacoustic imaging and planar fluorescence imaging," Radiology 255(2) 442-450 (2010) [PDF]

  7. Kim, C. H.; Erpelding, T. N.; Maslov, K.; Jankovic, L.; Akers, W. J.; Song, L.; Achilefu, S.; Margenthaler, J. A.; Pashley, M. D.; Wang, L. V.; "Handheld array-based photoacoustic probe for guiding needle biopsy of sentinel lymph nodes," Journal of Biomedical Optics 15(4) 046010 (2010) [PDF]

  8. [Kim, C. H.; Cho, E. C.]; Song, K. H.; Au, L.; Favazza, C.; Zhang, Q.; Cobley, C. M.; Gao, F.; Xia, Y.; Wang, L. V.; "In vivo molecular photoacoustic tomography of melanomas targeted by bio-conjugated gold nanocages," ACS Nano 4(8) 4559-4564 (2010) [PDF]

  9. Kim, C. H.; Qin, R.; Xu, J. S.; Wang, L. V.; Xu, R.; "Multifunctional microbubbles and nanobubbles for photoacoustic and ultrasound imaging," Journal of Biomedical Optics 15(1) 010510 (2010) [PDF]

  10. Kim, C. H.; Favazza, C.; Wang, L. V.; "In vivo photoacoustic tomography of chemicals: high-Resolution functional and molecular optical imaging at new depths," Chemical Reviews 110(5) 2756-2782 (2010) [PDF]

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  13. Kim, C. H.; Jeon, M.; Wang, L. V.; "Nonionizing photoacoustic cystography in vivo," Optics Letters 36(18) 3599-3601 (2011) [PDF]

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  2. Pan, D.; Pramanik, M.; Senpan, A.; Wickline, S. A.; Wang, L. V.; Lanza, G. M.; "A facile synthesis of novel self-assembled gold nanorods designed for near-infrared imaging," Journal of Nanoscience and Nanotechnology 10(12) 8118-8123 (2010) [PDF]

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[Y]

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