1)Ting Feng* , Hang Li, Haigang Ma*, Adaptively spatial PSF removal enables contrast enhancement for multi-layer image fusion in photoacoustic microscopy,Optics Letters, 2024 (Accepted).
2)Ting Feng+,*, Jieshu Li+, Weiya Xie, Qian Cheng*, Dean Ta*, Adaptively multi-scale microstructure characterization of cancellous bone via photoacoustic signal decomposition, 144: 107407, Ultrasonics, 2024.
3) Ting Feng+, Weiya Xie+, Wenyi Xu+, Ya Gao+, Teng Liu, Dean Ta, Menglu Qian, Qian Cheng*. Chapter 17 Photoacoustic spectrum analysis for bone characterization. Biomedical Photoacoustics: Technology and Applications[M], Springer Nature Pte Ltd, 2024.
4) Yang Gao, Ting Feng*, Haixia Qiu, Ying Gu, Qian Chen, Chao Zuo, Haigang Ma*.4D spectral-spatial computational photoacoustic dermoscopy. Photoacoustics, 34:100572, 2023.
5) 封婷+, 解维娅+, 徐文逸, 高雅, 刘腾, 他得安, 钱梦騄, 程茜*. 光声骨检测研究进展[J]. 科学通报(拓扑声学与多相孔隙介质声学专题), 68(26): 3437-3454,2023.
6) Ting Feng+,*, Yihan Zhu+, Xiaoxiang Gao, Weiya Xie, Haigang Ma, Liming Cheng, Dean Ta, and Qian Cheng*,Nakagami statistics-based photoacoustic spectroscopy used for label-free assessment of bone tissue, Optics Letters, 48(3), 2023. (被期刊推荐为Editor's picks 编辑精选论文)
7) Ting Feng , Yejing Xie, Weiya Xie, Yingna Chen, Peng Wang, Lan Li, Jing Han, Dean Ta, Liming Cheng, and Qian Cheng*, Characterization of multi-biomarkers for bone health assessment based on photoacoustic physicochemical analysis method,Photoacoustics, 25:100320, 2022.(被期刊推荐为Highlighted论文并报道)
8) Weiya Xie+, Ting Feng+, Dong Yu, Dean Ta, Liming Cheng, and Qian Cheng*. Photoacoustic characterization of bone physico-chemical information, Biomedical Optics Express 13(5): 2668-2681, 2022.
9) Ting Feng, yuxiang Ge, Yejing Xie, Weiya Xie, Chengcheng Liu, Lan Li, Dean Ta, Qing Jiang*, Qian Cheng*,Detection of Collagen by Multi-Wavelength Photoacoustic Analysis as a Biomarker for Bone Health Assessment, Photoacoustics, 24:100296 ,2021.
10) Ting Feng+, Yunhao Zhu+, Richard Morris, Kenneth. M. Kozloff*, and Xueding Wang*, The feasibility study of the transmission mode photoacoustic measurement of human calcaneus bone in vivo,Photoacoustics, 23:10027, 2021.
11) Weiya Xie+, Ting Feng+, Mengjiao Zhang, Dean Ta, Liming Cheng and Qian Cheng*, Wavelet Transform-based Photoacoustic Time-frequency Spectral Analysis for Bone Assessment, Photoacoustics, 22: 100259, 2021.
12) Ting Feng, Yunhao Zhu, Richard Morris*, Kenneth M. Kozloff*, and Xueding Wang*, Functional Photoacoustic and Ultrasonic Assessment of Osteoporosis: A Clinical Feasibility Study. BME frontiers, 1081540,2020.(被Science AAAS中文官方平台专题报道)
13) Chao Tian*, Mengliu Pei, Kang Shen, Songde Liu, Ting Feng*. Impact of system factors on the performance of photoacoustic tomography scanners. Physical Review Applied,13(1), 2020.
14) Ting Feng, Yunhao Zhu, Yejing Xie, Dean Ta, Jie Yuan*, and Qian Cheng*, Feasibility study for bone health assessment based on photoacoustic imaging method, Chinese Optics Letter, 18(12), 2020.
15) Ting Feng, Qiaochu Li, Cheng Zhang, Guan Xu, L. Jay Guo, Jie Yuan, Xueding Wang. characterizing cellular morphology by photoacoustic spectrum analysis with an ultra-broadband optical ultrasonic detector, Optics Express, 24(17):19853:19862, 2016.
16) Ting Feng, Joseph E. Perosky, Kenneth M. Kozloff, Guan Xu, Qian Cheng, Sidan Du, Jie Yuan, Xueding Wang, Characterization of bone microstructure using photoacoustic spectrum analysis. Optics Express, 23(19):25217:25224, 2015.
17) Ting Feng, Kenneth M. Kozloff, et al. Bone assessment via thermal photo-acoustic measurements. Optics Letters, 40(8): 1721-1724, 2015.
18) Ting Feng, Jie Yuan, et al. A Photoacoustic Imaging System with Optimized Real-Time Parallel Reconstruction. Chinese Physics Letters, 30(10): 100702, 2013.
19) Meng Cao, Ting Feng, Jie Yuan, Guan Xu, Xueding Wang, Paul. L. Carson, Spread spectrum photoacoustic tomography with image optimization, IEEE transactions on biomedical circuits and systems, 2017, 11(2), 411-419.
20) Chao Tian, Ting Feng, Cheng Wang, Shengchun Liu, Qian Cheng, David E. Oliver, Xueding Wang, Guan Xu, Non-contact photoacoustic imaging using a commercial heterodyne interferometer, IEEE sensors journal, 2016, 16(23): 8381-8388.
21) Sreekumar Kaiplavil, Andreas Mandelis, Xueding Wang, and Ting Feng, Photothermal tomography for the functional and structural evaluation, and early mineral loss monitoring in bones, Biomedical Optics Express, 2014, 5(8), 2488-2502.