- 单位:西安电子科技大学 生命科学技术学院
- 职称:讲师
- 职位:
- 出生:1990年5月
- 性别:男
- 社会职务:
- 微博:
研究领域
Biomedical optical imaging;
Biomedical optical detection technology and system
His major research interests include the development of new functional photoacoustic/diffuse optical imaging systems and image reconstruction algorithm for pre-clinical and clinical applications.
论文与著作
[1] Yihan Wang, Tong Lu, Jiao Li, et al, “Enhancing sparse-view photoacoustic to-mography with combined virtually parallel projecting and spatially adaptive fil-tering,” Biomedical Optics Express, Vol. 9(9): 4569-4587, 2018.(SCI二区,WOS: 000443313700042,IF:3.482)
[2] Yihan Wang, Jie He, Jiao Li, et al, “Toward whole-body quantitative photoa-coustic tomography of small-animals with multi-angle light-sheet illuminations,” Biomedical Optics Express, Vol. 8(8): 3778-3795, 2017.(SCI二区,WOS: 000407011200020,IF:3.482)
[3] Yihan Wang, Tong Lu, Jiao Li, et al, “Combined diffuse optical tomography and photoacoustic tomography for enhanced functional imaging of small animals: a methodological study on phantoms,” Applied Optics, Vol. 56(2): 303-311, 2017.(SCI三区,WOS: 000392097500024,IF:1.791)
[4] Wenbo Wan, Yihan Wang, et al, “Region-based diffuse optical tomography with registered atlas: in vivo acquisition of mouse optical properties,” Biomedical Op-tics Express, Vol. 7(12): 5066-5080, 2016.(SCI二区,IF:3.482)
[5] Wenbo Wan, Lingling Liu, Zhuanping Qin, Yihan Wang, Jiao Li, Limin Zhang, Zhongxing Zhou, Huijuan Zhao, and Feng Gao, “Time-resolved early-photon scheme for high-resolution fluorescence molecular tomography with perturbation Monte Carlo modeling: experimental validations using a multichannel TCSPC system,” Infrared Physics & Technology, Vol. 98, 323-333, 2019.
[6] Bingyuan Wang, Wenbo Wan, Yihan Wang, Wenjuan Ma, Limin Zhang, Jiao Li, Zhongxing Zhou, Huijuan Zhao and Feng Gao, “An Lp(0≤p≤1)-norm regular-ized image reconstruction scheme for breast DOT with non-negative-constraint,” BioMedical Engineering OnLine, Vol. 16(1): 32, 2017.(SCI三区,IF:1.676)
[7] Weiting Chen, Xin Wang, Bingyuan Wang, Yihan Wang, Yanqi Zhang, Huijuan Zhao and Feng Gao, “Lock-in-photon-counting-based highly-sensitive and large-dynamic imaging system for continuous-wave diffuse optical tomography,” Biomedical Optics Express, Vol. 7(2): 499-511, 2016.(SCI二区,IF:3.482)
[8] Xi Yi, Bingyuan Wang, Wenbo Wan, Yihan Wang, Yanqi Zhang, Huijuan Zhao and Feng Gao, “Full time-resolved diffuse fluorescence tomography accelerated with parallelized Fourier-series truncated diffusion approximation,” Journal of Biomedical Optics, 20: 056003, 2015.(SCI三区,IF:2.530)
[9] Yihan Wang, Tong Lu, Songhe Zhang, et al, “A calibrated iterative reconstruc-tion for quantitative photoacoustic tomography using multi-angle light-sheet illu-minations,” Proc. of SPIE, Vol. 2018, 104943C.(EI检索:20182205240591)
[10] Yihan Wang, Tong Lu, Jiao Li, et al, “Sparse-view photoacoustic tomography using virtual parallel-projections and spatially adaptive filtering,” Proc. of SPIE, Vol. 2018, 104944T.(EI检索:20182205240617)
[11] Yihan Wang, Tong Lu, Jiao Li, et al, “Combined photoacoustic tomography and diffuse optical tomography for small-animal model: A methodological study,” Asia Communications and Photonics Conference. Optical Society of America, Vol. 2016: AF2A. 26.(EI检索:20171403520909)
[12] Yihan Wang, Feng Gao, Wenbo Wan, et al, “Photoacoustic tomography guided diffuse optical tomography for small-animal model,” Proc. of SPIE, Vol. 2015, 93160P: 93160P-7.(EI检索:20151800803447)
[13] Yihan Wang, Limin Zhang, Huijuan Zhao, et al, “Diffuse fluorescence tomogra-phy based on the radiative transfer equation for small animal imaging,” Proc. of SPIE, Vol. 2014, 8937: 89370W.(EI检索:20141217473916)
[14] Tong Lu, Yihan Wang, Feng Gao, Huijuan Zhao, Vasilis Ntziachristos, Jiao Li, “Spatial-impulse-response-dependent back-projection using the nonsatationary convolution in photoacoustic mesoscopy,” Proc. of SPIE, Vol. 2018, 104943R.(EI检索:17757336)
[15] Bingyuan Wang, Yihan Wang, Yanqi Zhang, et al, “Towards improved image reconstruction in breast diffuse optical tomography using compressed sensing: a comparative study among Lp (0≤p≤2) sparsity regularizations,” Proc. of SPIE, Vol. 2016, 9700: 970016-1.(EI检索:20163502752222)
荣誉与奖励
Reviewer of 《Biomedical Optics Express》