Recent
publications from
BIOPHOTONICS
This website may contain copyrighted material whose
use, including reproduction, is governed by
Books
(Including Edited Books
|
1. |
C.R. Chatwin and
R.K. Wang, Frequency Domain Filtering
Strategies for Hybrid Optical Information Processing, ISBN 086380 1773,
268 pages, 1996, Series editor: Prof. J. Kittler, Research Studies Press, UK. |
|
2. |
R.K. Wang, J. Hebden, B Priezzhev, V.V.
Tuchin, Advanced Laser Technologies:
Focused on Biomedical Optics SPIE Proceeding,
Volume 5486, SPIE, Bellingham, WA. USA (2004) |
|
3. |
R.K. Wang, V.V. Tuchin. “Optical coherence
tomography – light scattering and imaging enhancement” Chapter 13, pp3-60.
In Coherent-Domain Optical Methods For
Biomedical Diagnostics, Environmental And Material Science Volume 2, VV
Tuchin Edits. Kluwer Academic Publishers. ISBN:
1-4020-7886-2. |
|
4. |
S Boppart, Y Yang,
and R.K. Wang, “Optical Coherence Tomography in Tissue
Engineering” Chapter 29 in Optical Coherence Tomography: Technology
and Applications, edited by W Drexeler and J
Fujimoto. Springer, ISBN 978-3-540-77549-2. Pp 889- 918 (2008) |
|
5. |
R.K. Wang and V.V.
Tuchin, “Optical Tissue Clearing to Enhance Imaging Performance for
OCT” Chapter 28 in Optical Coherence Tomography: Technology
and Applications, edited
by W Drexeler and J Fujimoto. Springer. ISBN
978-3-540-77549-2. Pp 855- 888 (2008) |
|
6.
|
K.X. Xu, and R.K.
Wang, “Challenges and countermeasures in NIR non-invasive blood glucose
monitoring”, Chapter 10 in Glucose
optical sensing and impact, edited by V Tuchin, Taylor & Francis
Publisher, ISBN 978-1-58488-974-8. Pp 281-318 (2008) |
Peer Refereed
|
|
|
1.
|
R.K.
Wang, “Optical Microangiography: A
Label Free 3D Imaging Technology to Visualize and Quantify Blood Circulations
within Tissue Beds in vivo”,
IEEE Journal of Selected Topics in Quantum Electronics, (In press) |
|
2.
|
N. Choudhury, F.Y. Chen, X.R. Shi, A.L.
Nuttall, and R.K. Wang, “Volumetric Imaging of Blood Flow within
Cochlea in Gerbil in vivo”, IEEE
Journal of Selected Topics in Quantum Electronics, (Accepted) |
|
3.
|
Y.L.
Jia, L. An, and R.K. Wang,
“Doppler optical micro-angiography improves the
quantification of local fluid flow and shear stress within 3D porous
constructs”, Journal
of Biomedical Optics Letters, (2009, in
press) |
|
4.
|
Y.L.
Jia, N.J. Alkayed, R.K. Wang, “The Potential of Optical Micro-angiography
to Monitor Cerebral Blood Perfusion and Vascular Plasticity Following
Traumatic Brain Injury in Mice in vivo”, Journal of Biomedical Optics Letters, 14, 040505 (2009) |
|
5.
|
J.S.
Cetas, D.R. Lee, N.J. Alkayed, R.K. Wang, J.J. Iliff, M.M. Heinricher.
“Brainstem control of cerebral blood flow and application to acute
vasospasm following experimental subarachnoid hemorrhage”, Neuroscience,
163, 719-729, (2009). |
|
6.
|
W. Zhang, J. J. Iliff, C. J. Campbell, R.K. Wang, P.D. Hurn, N. J. Alkayed, “Role of
Soluble Epoxide Hydrolase
in the Sex-Specific Vascular Response to Cerebral Ischemia”, Journal of Cerebral
Blood Flow & Metabolism, 29,
1475-1481 (2009) |
|
7.
|
A.
Liu, R.K. Wang, K.L. Thornburg, and S. Rugonyi, “Efficient post-acquisition synchronization
of 4D non-gated cardiac images obtained from optical coherence tomography:
application to 4D reconstruction of the chick embryonic heart”, Journal
of Biomedical Optics, 14 (4), 044020 (2009) |
|
8.
|
J.J. Iliff, R.K.
Wang, D.C. Zeldin, N.J. Alkayed, “Epoxyeicosanoids
as Mediators of Neurogenic Vasodilation
in Cerebral Vessels”, American Journal of Physiology - Heart and
Circulatory Physiology, 296:
1352-1363 (2009) |
|
9.
|
R.K. Wang, and L. An, “Doppler optical micro-angiography
for volumetric imaging of vascular perfusion in vivo”, Optics Express, 17 (11), 8926 – 8940 (2009) |
|
10.
|
Y. Jia , P.
Bagnaninchi , Y. Yang , A. El Haj , M. Hinds , S.
Kirkpatrick , R. K. Wang, “Doppler optical coherence tomography imaging
of local fluid flow and shear stress within microporous
scaffolds”, Journal of
Biomedical Optics, 14 (3), 034014 (2009) |
|
11.
|
A. Liu, R.K. Wang,
K.L. Thornburg and S. Rugonyi. “Dynamic Variation of Hemodynamic Shear Stress
on the Walls of Developing Chick Hearts: Computational Models of the Heart
Outflow Tract”, Engineering with
Computers, 25, 73-86 (2009). |
|
12.
|
Lin An, and Ruikang
K Wang, “In vivo volumetric
imaging of vascular perfusion within human retina and choroids with optical
micro-angiography”, Optics
Express, 16, 11438-11452
(2008) |
|
13.
|
Ruikang K Wang,
“Directional blood flow imaging in
volumetric optical micro-angiography achieved by digital frequency
modulation”, Optics Letters, 33 (no 16) 1878-1880 (2008) |
|
14.
|
|
|
15.
|
Yi Wang, and
Ruikang K Wang, “Photoacoustic recovering of
absolute optical absorption coefficient with exact solution of wave
equation”, Physics in Medicine
and Biology, 53, 6167-6177
(2008) |
|
16.
|
Jingying Jiang , Matthias Boese, Paul Turner, Ruikang K. Wang, “Penetration
Kinetics of DMSO and Glycerol in Dynamic Optical Clearing of Porcine Skin
Tissue in vitro Studied by FT-IR Spectroscopic Imaging”, Journal of Biomedical Optics. 13, Art. No. 021105 (2008) |
|
17.
|
S. Hurst, W.
Huang, W. Zhang, NJ Alkayed, A. Gruber, R.K. Wang,
“In-vivo optical imaging of cerebral blood perfusion during focal
ischemia in mice”, Stroke, 39, 572-573 (2008) |
|
18.
|
Haixin Dong, Zhouyi Guo, Changchun Zeng, Huiqing
Zhong, |
|
19.
|
D.D.
Duncan, S.J. Kirkpatrick, and R.K. Wang. “Statistics of local speckle
contrast”. Journal of Optical
Society of America A. 25, 9-15
(2008). |
|
20.
|
H. Xiong, C. Zeng, Z. Guo, H. Zong, R.K. Wang, S. Liu, Y. He, “Potential ability
of hematoporphyrin to enhance an optical coherence tomographic image of gastric cancer in vivo in
mice”, Physics in Medicine
and Biology, 53 6767–6775 (2008) |
|
2007 |
|
|
21.
|
Lin An, Ruikang K
Wang, “Use of scanner to modulate spatial interferogram for in vivo
full range Fourier domain optical coherence tomography”. Optics Letters, 32, 3423-25 (2007). [Download
PDF] |
|
22.
|
Ruikang K Wang,
“Three dimensional optical angiography maps directional blood perfusion
deep within microcirculation tissue beds in vivo”. Physics in Medicine and Biology, 52, N531-N537 (2007) [Download
PDF] |
|
23.
|
S.J,
Kirkpatrick, D.D. Duncan, R.K. Wang, and M.T. Hinds, “Quantitative
temporal speckle contrast imaging for tissue mechanics.” Journal of Optical Society of |
|
24.
|
Ruikang K Wang,
and |
|
25.
|
Yi Wang and Ruikang K Wang, “Optimization of image-forming
optics for transmission optical projection tomography”, Applied Optics, 46, 6815-6820 (2007) [PDF] |
|
26.
|
P.H. Tomlins and
Ruikang K Wang, “Digital phase stabilization to improve detection
sensitivity for optical coherence tomography”, Measurement Science and
Technology, 18, 3365–3372, (2007) [PDF] |
|
27.
|
Y. Yang, P.O.
Bagnaninchi, M. Ahearne, R.K. Wang, and K.K. Liu,
“A novel OCT-based micro-indentation technique for mechanical
characterization of hydrogels”, Journal of
Royal Society Interface, 4 (17), 1169-1173, (2007) [PDF] |
|
28.
|
Ruikang K Wang,
“Fourier domain optical coherence tomography achieves full range
complex imaging in vivo by introducing a carrier frequency during
scanning”, Physics in Medicine and Biology, 52, 5897-5907 (2007) [PDF] |
|
29.
|
C.M.
Fan, Y. Wang, R.K. Wang, “Spectral Domain Polarization Sensitive Optical
Coherence Tomography Achieved by Single Camera Detection”, Optics Express, 15, 7950-7961, (2007) [PDF] |
|
30.
|
R.K.
Wang, S.J. Kirkpatrick, |
|
31.
|
R.K.
Wang, S. Jacques, Z. Ma, S. Hurst, S. Hanson, A. Gruber “ Three
dimensional optical angiography”, Optics Express 15, 4083-4097 (April 2, 2007) [PDF] |
|
32.
|
Ruikang
K Wang, “In vivo full range complex Fourier domain optical coherence
tomography”, Applied Physics
Letters, 90, 054103 (Issue 5,
January 2007) [PDF] |
|
33.
|
PH
Tomlins, WM Palin, AC Shortall
and RK Wang, “Time-Resolved
Simultaneous Measurement of Group Index and Physical Thickness during Photo-Polymerization
of Resin Based Dental Composite”, Journal of Biomedical Optics12
(1), art. No. 014020. (January/February, 2007). [PDF] |
|
34.
|
D. A. |
|
35.
|
P.O.
Bagnaninchi, Y. Yang, N. Zghoul, N. Maffulli, R.K. Wang, A. J. El Haj,
“Chitosan Microchannel
Scaffolds for Tendon Tissue Engineering characterized by optical coherence
tomography”, Tissue Engineering,
13 (2), 323-331 (2007). [PDF] |
|
2006 |
|
|
36.
|
R.K.
Wang, Z. Ma, and S.J. Kirkpatrick, “Tissue Doppler optical coherence
elastography for real time strain rate and strain mapping of soft
tissue”, Applied Physics Letters, 89, 144103 (October, 2006) [PDF] |
|
37.
|
RK Wang and Z. Ma, “Real time flow imaging by
removing texture pattern artifacts in ultrafast spectral domain optical
Doppler tomography”, Optics
Letters, 31, 3001-2003 (October,
2006) [PDF] |
|
38.
|
Sean J.
Kirkpatrick, Ruikang K Wang, Ken Lee, Donald D. Duncan, and |
|
39.
|
Y Yang,
A Dubois, X Qin, J Li, A El Haj, R.K. Wang, “Investigation of optical
coherence tomography as an imaging modality in tissue engineering”. Physics in Medicine and Biology, 51:
1649–1659 (2006) [PDF] |
|
40.
|
P
Tomlins, R.K. Wang, “Matrix Approach to Quantitative Refractive Index
Analysis by Fourier Domain Optical Coherence Tomography”. Journal of Optical Society of |
|
41.
|
Sean J.
Kirkpatrick, Ruikang K
Wang, Donald D. Duncan, “OCT-based elastography for large and small
deformations”, Optics Express
14 (24): 11585-11597 (2006) [PDF] |
|
42.
|
R.K. Wang, Z. Ma,
“A Practical approach to eliminate autocorrelation artifacts for
volume-rate spectral domain optical coherence tomography”, Physics in Medicine and Biology 51:3231-3239 (2006) [PDF] |
|
43.
|
Z Ma, R.K. Wang, F.
Zhang, J Yao, “Arbitrary three-phase shifting algorithm to achieve full
range spectral optical coherence tomography”. Chinese Physics Letters, 23
(No.2): 366-369 (2006) [PDF] |
|
44.
|
Y Su, R.K. Wang, F.
Zhang, J Yao, “Two-dimensional photoacoustic imaging of blood vessel
networks within biological tissue”. Chinese
Physics Letters, 23 (No.2):
512 – 515 (2006) [PDF] |
|
45.
|
V Prabhudesai, C Phelan,Y Yang, RK Wang, MG Cowling. “The Potential
Role of Optical Coherence Tomography in the Evaluation of Vulnerable Carotid Atheromatous Plaques: A Pilot Study”, Cardiovascular and Interventional
Radiology 29: 1039–1045
(2006), (Published on line: |
|
46.
|
P Tomlins, R.K.
Wang, “Simultaneous analysis of refractive index and physical thickness
by Fourier domain optical coherence tomography”. |
|
47.
|
Yi Wang, and Ruikang K Wang, “Imaging using parallel integral in Optical projection
tomography”, Physics and
Medicine in Biology,
51 (2006) 6023–6032 [PDF] |
|
2005 |
|
|
48.
|
P.H. Tomlins,
and R.K. Wang, “Theory, Developments and Applications of Optical
Coherence Tomography”, Journal of
Physics D: Applied Physics 38 2519–2535(2005) [PDF] |
|
49.
|
Y Su, F
Zhang, K Xu, J Yao, and R.K. Wang, “A Photoacoustic tomography system
for imaging of biological tissues”, Journal
of Physics D: Applied Physics 38 2640-2644 (2005) [PDF] |
|
50.
|
W Chen,
R Liu, K Xu, and R.K. Wang. “Influence of contact state on NIR diffuse
reflectance spectroscopy in
vivo”, Journal of Physics D: Applied Physics 38 2691-2695 (2005) |
|
51.
|
I.A.
Watson, R.K. Wang, |
|
52.
|
R Liu, W
Chen, X Gu, R.K. Wang, and K Xu. “Chance correlation in the
non-invasive glucose measurement using near infrared spectroscopy”, Journal of Physics D: Applied Physics 38 2675-2681 (2005) |
|
53.
|
M.Yu. Kirillin, A.V. Priezzhev, V.V.
Tuchin, R.K. Wang and R. Myllyläm, “Effect of Red Blood Cell Aggregation and Sedimentation on
Optical Coherence Tomography Signals from Blood Samples”. Journal of Physics D: Applied Physics 38
2582-2589 (2005) |
|
54.
|
|
|
55.
|
Su YX, Wang RK, Xu KX, Zhang F, Yao JQ,
“Time-resolved optoacoustic technique and its applications to noninvasive monitoring of biological tissue”. SPECTROSCOPY
|
|
56.
|
J.
Jiang, and Ruikang K Wang, “How different molarities of oleic acid as
enhancer exert its effect on optical clearing of skin tissue in vitro”. Journal of X-ray Science
and Technology 13: 149-159
(2005) |
|
57.
|
Yingjie Liu, Yixiong Su, Jianquan Yao, and
Ruikang K Wang, “Influence of optical properties of surrounding medium
on measured photoacoustic signals”. Journal
of X-ray Science and Technology 13:
129-136 (2005) |
|
58.
|
Ma Zhenhe, Ruikang K Wang, Zhang Fan, |
|
59.
|
Wang RKK, Priezzhev
AV, Fantini S, Special issue in honour of Professor Valery V Tuchin's
contribution to the field of biomedical optics. JOURNAL OF PHYSICS
D-APPLIED PHYSICS 38 (15): |
|
2004 |
|
|
60.
|
R.K. Wang, “High resolution
visualisation of fluid dynamics with Doppler Optical Coherence
Tomography”. Measurement Science
and Technology 15 725–733 (2004) |
|
61.
|
X
Xu, R.K. Wang,
“Synergistic effect of hyperosmotic agents on
optical clearing of gastric tissue studied with near infrared
spectroscopy”. Physics
in Medicine and Biology 49: 457 – 468
(2004) |
|
62.
|
Y Yang,
S Whiteman, Y He, D Pittius, RK Wang, M Spiteri, “Use of OCT in delineating airway microstructures:
comparison of OCT images with histopathologies”.
Physics
in Medicine and Biology 49: 1247-56 (2004) |
|
63.
|
RK Wang,
JC Hebden, and VV Tuchin, “Recent
developments in Biomedical Optics (editorial)”. Physics
in Medicine and Biology 49: U3-U3 (2004) |
|
64.
|
Y He, R.K. Wang,
“Dynamic optical clearing effect of tissue impregnated by hyper-osmotic
agents: studied with optical coherence tomography”. Journal of Biomedical Optics 9:
200-206 (2004) |
|
65.
|
Y.
Yang, J. Sulé-Suso, P. Hoban, A. El Haj, R. K.
Wang. “Monitoring of tumour cell
growth in artificial membranes”. Biosensors and Bioelectronics 20:
442-447 (2004)
|
|
66.
|
Mason C,
Markusen JF, Town MA, Dunnill
P, Wang RK, “The potential of
optical coherence tomography in the engineering of living tissue”, Physics
in Medicine and Biology 49: 1097-1116 (2004) |
|
67.
|
|
|
68.
|
C Mason,
JF |
|
69.
|
R.K. Wang, R.P. Tatum and M. Somekh,
“Special Issue on Optical Biosensing: Preface
(Editorial)”, Biosensors and Bioelectronics 20(3): 413-413 (2004)
|
|
70.
|
Y. He, R. K. Wang, “Improvement
of depth and spatial resolution of internally generated light imaging with
optical clearing method”, Biosensors and
Bioelectronics 20:
460-467 (2004)
|
|
71.
|
J.Y.
Jiang, R.K. Wang, “Comparing Synergistic Effects of Oleic Acid and Dimethyl Sulfoxide as Vehicle
on Optical Clearing of Skin Tissue in vitro”, Physics in Medicine and Biology 49 (2004)
5283–5294
|
|
72.
|
S.G. Proskurin,
R.K. Wang, “Visualisation of human
subcutaneous blood vessels by increasing coherence probing depth”, QUANTUM ELECTRON+ 34 (12): 1157-1162 (2004) |
|
2003 |
|
|
73.
|
|
|
74.
|
X Xu, RK Wang, JB
Elder, VV Tuchin, “Effect on dextran-induced changes in refractive index and aggregation on optical
properties of whole blood”. Physics
in Medicine and Biology, 48: 1205–1221 (2003) |
|
75.
|
|
|
76.
|
|
|
77.
|
|
|
78.
|
|
|
79.
|
|
|
80.
|
X. Xu,
R.K. Wang, and JB Elder, “Optical clearing effect on Gastric tissues
immersed with biocompatible chemical agents studied by near infrared reflectance
spectroscopy”, Journal of Physics
D: Applied Physics 36:1707-1713
(2003) |
|
81.
|
R.K.
Wang, X Xu, Y He, and JB Elder, “Investigation of optical clearing of
gastric tissue immersed with the hyperosmotic
agents”, IEEE Journal of Selected
Topics in Quantum Electronics 9:
234-242 (2003), |
|
82.
|
S.G. Proskurin, I.A. Sokolova, R.K.
Wang, “Imaging of non-parabolic velocity profiles in converging flow with
optical coherence tomography”, Physics
in Medicine and Biology 48: 2907-2918 (2003) |
|
83.
|
L Wu,
and R.K. Wang, “Laminar flow velocity estimation by the use of
conventional optical coherence tomography”, Journal of Physics D: Applied Physics (2003, In press) Withdraw |
|
2002 |
|
|
84.
|
|
|
85.
|
|
|
86.
|
|
|
87.
|
R.K. Wang, “Signal degradation by
multiple scattering in optical coherence tomography of dense tissue: A |
|
88.
|
R.
K. Wang and V. V. Tuchin, “Enhance light penetration in tissue for high
resolution optical imaging techniques by use of biocompatible chemical agents
(Invited)”, J. X-Ray Science
Tech. Vol 10, 167-176 (2002) |
|
2001 |
|
|
89.
|
M.
Wilson, R. K. Wang, “A path integral
model of light scattered by turbid media”, Journal of Physics B: Atomic, Molecular & Optical Physics,
Vol.34, pp1453-1472, (2001) |
|
90.
|
R.K.
Wang, V.V. Tuchin, X. Xu, and J.B. Elder, “Concurrent Enhancement of imaging
depth and contrast for Optical Coherence Tomography by hyperosmotic
agents”, Journal of Optical
Society of America B, Vol. 18 (No.7)
pp948-953 (2001) |
|
91.
|
R.K.
Wang, and M. Wilson, “A vertex/propagator model for least scattered photons
traversing a turbid medium”. Journal
of Optical Society of |
|
92.
|
R.K.
Wang, Y Yang, A El Haj, and J.B. Elder, “High
resolution optical tomographic imaging of
biological tissues”, Scope,
Vol.10 (4), pp12-14 (2001) |
|
93.
|
R.K.
Wang, J.B. Elder, “Optical Biopsy for soft biological tissue with
optical coherence tomography”,
Asian Journal of Physics, Vol 10, 513-518 (2001) |
|
Prior to 2000 |
|
|
94.
|
R.K.
Wang, “Modelling
Optical Properties of Soft Tissue by Fractal Distribution of Scatters”,
Journal of Modern Optics, Vol.47,
pp103-120 (2000) |
|
95.
|
G.D.
Ward, I.A. Watson, D.E. Stewart-Tull, A.C. Wardlaw, R.K. Wang, M.A. Nutely,
A. Cooper, “Bactericidal action of high power Nd:YAG
laser light on Escherichia Coli in saline suspension”, Journal of Applied Microbiology, Vol 83, 517-525 (2000) |
|
96.
|
R.K.
Wang, “Resolution improved optical
coherence-gating tomography for imaging biological tissue”, Journal of Modern Optics, Vol. 46,
1905-1913 (1999) |
|
97.
|
E.
Rue, R. K. Wang, and Y. Wickramasinghe, “An
investigation into a four channel continuous wave NIRS device for regional
cerebral oxygenation monitoring”, Advances
in Optical Imaging, Photon Migration and Tissue Optics, ISSBN
1-55752-611-7, pp270-272 (1999) |
|
98.
|
R.K.
Wang, and Y. Wickramasinghe, “A novel and
fast algorithm to determine optical properties of turbid medium from
time-resolved measurements”, Applied
Optics. Vol. 37 (No.31),
pp7342 – 7351 (1998) |
|
99.
|
R.K.
Wang, “Space Variant Optical Correlation by the Use of Random Binary
Phase Modulation”, Journal of
Modern Optics. Vol. 45,
pp653-659 (1998, No.3). |
|
100.
|
R.K.
Wang, I.A. Watson, G.D. Ward, D.E. Stewart-Tull,
and A.C. Wardlaw, “Temperature Distribution
in Escherichia coli Liquid
Suspensions during Irradiation by a High Power Nd:YAG Laser for Sterilisation
Applications”. Journal of
Biomedical Optics, Vol 2, pp295-303(1997, No.3). |
|
101.
|
L.
Shang, R.K. Wang, and C.R. Chatwin, “Complexed
DOG Filters for Optical Correlation”, Journal of Optics and Lasers in Engineering, Vol.27. pp161-177 (1997). |
|
102.
|
R.K.
Wang, IA Watson, GD Ward, DE Stewart-Tull, and AC Wardlaw, “Temperature distribution of E. coli
liquid suspension during high power Nd:YAG
laser irradiation, Journal of Medical
& Biological Engineering & Computing, Vol. 35, Sup. Part I, 160
(1997) |
|
103.
|
R.K.
Wang, “Joint Transform Correlator Performing
Pure Phase Correlation for Optical Pattern Recognition”, Journal of Modern Optics, Vol.43,
pp2019-2035 (1996). |
|
104.
|
R.K.
Wang, I.A. Watson and C.R. Chatwin, “Random Phase Encoding for Optical
Security”, Optical Engineering,
Vol.35, pp2464-2469 (1996, No.9). |
|
105.
|
R.K.
Wang, L. Shang, I.A. Watson, and C.R. Chatwin, “Cosine Wave Encoded
Joint Transform Correlation”, Optical
Engineering, Vol.35, pp1901-1910 (1996, No.7). |
|
106.
|
R.K.
Wang, L. Shang, and C.R. Chatwin, “Modified Fringe-adjusted Joint
Transform Correlation to Accommodate Noise in Input Scene”, Applied Optics, Vol.35, pp286-296
(1996, No.2). |
|
107.
|
D.M.
Budgett, P.C. Tang, J.H. Sharp, R.K. Wang and B.F.
Scott, “Parallel Pixel Processing Using Programmable Gate
Arrays”, Electronics Letters,
Vol.32, pp1557-1559 (1996, No.17), ISSN 0013-5194 |
|
108.
|
I.A.
Watson, G.D. Ward, R.K. Wang,
J.H. Sharp, D.M. Budgett, and C.R. Chatwin,
“Comparative Bactericidal Activities of Seven Different Lasers”, Journal of Biomedical Optics, Vol.1,
(1996, No.4). |
|
109.
|
R.K.
Wang, C.R. Chatwin, and L. Shang, “Synthetic Discriminant
Function Fringe-adjusted Joint Transform Correlation”, Optical Engineering, Vol.34,
pp2935-2944 (1995). |
|
110.
|
R.K.
Wang and C.R. Chatwin, “Multilevel Amplitude and Phase Encoded Modified
Filter Synthetic Discriminant Function
Filters”, Applied Optics,
Vol.34, pp4094-4104(1995, No.20). |
|
111.
|
R.K.
Wang, C.R. Chatwin and R.C.D. Young, “Assessment of A Wiener Filter --
Synthetic Discriminant Function for Optical
Correlation”,
Journal of Optics and Lasers in Engineering,
Vol.22, pp33-51(1995, No.1). |
|
112.
|
R.K.
Wang, C.R. Chatwin and M.Y. Huang, “Correlation Filter with a Noise
Adaptive Discriminant Capability”, Optik: International Journal for Light and
Electron Optics, Vol.99, pp18-24(1995, No.1). |
|
113.
|
C.R.
Chatwin, R.K. Wang and R.C.D. Young, “Tuneable
Edge Enhanced Filters for Optical Correlation, (invited paper)” Journal of Optics and Lasers in
Engineering, Vol.23, pp75-91 (1995, No.2). |
|
114.
|
M.Y.
Huang, C.R. Chatwin and R.K. Wang, “Wiener Filter Applied to Laser
Cutting Process Control”, Journal
of Lasers in Engineering, Vol.4, pp1-12(1995). |
|
115.
|
R.K.
Wang, C.R. Chatwin and M.Y. Huang, “Modified Filter Synthetic Discriminant Functions for Improved Optical Correlation
Performance”, Applied Optics,
Vol.33, pp7646-7654(1994, No.32). |
|
116.
|
R.K.
Wang, C.R. Chatwin and M.Y. Huang, “Noise Robustness of Tuneable Photorefractive Filters”, Journal of Optics and Lasers in
Engineering, Vol.21, pp297-306(1994, No.5). |
|
117.
|
G.X.
Zhang and R.K. Wang, “Four-point Method of Roundness and Spindle Error
Measurements”, Annals of CIRP,
Vol.42, pp593-596(1993, No.1). |
|
118.
|
R.K.
Wang and G.X. Zhang, “An Effective Method for Improving the Laser
Alignment Accuracy”, Journal of
Tianjin University, No.5 1993, pp115-119. |
|
119.
|
R.K.
Wang, G.X. Zhang, and S. Liu, “The Measurement and Evaluation for
Conical Deviation on the 3D Co-ordinate Measuring Machine ( |
|
120.
|
R.K.
Wang and G.X. Zhang, “Minimum zone evaluation for angular deviation
between planes of mechanical parts”, Chinese J. Measurement Technology, No.10 1992, pp1-3. |
|
121.
|
R.K.
Wang, G.X. Zhang and S. Liu, “Measurement and Calculation for the Basic
Geometric Elements on the 3D |
|
122.
|
R.K.
Wang and G.X. Zhang, “Data Processing for Measuring the Elliptical
Parts”, Journal of Tianjin
University, No.1 1992, pp112-116. |
|
123.
|
R.K.
Wang and G.X. Zhang, “An Intelligent Instrument to Measure the Co-axiality Deviation with Large Diameters”, Chinese J. New Technology & New
Process, 93(3), 1991, pp28-31. |
|
For detailed publication list, please check on Web of Science. When searching on WoS, use Wang R*K
at the AUTHOR Line, and use Oregon OR Glasgow OR Keele
OR Cranfield at the ADDRESS Line |
|