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2020

Conference Publication

Synthesis And Edition Of Ultrasound Images Via Sketch Guided Progressive Growing Gans

Liang, Jiamin, Yang, Xin, Li, Haoming, Wang, Yi, Manh The Van,, Dou, Haoran, Chen, Chaoyu, Fang, Jinghui, Liang, Xiaowen, Mai, Zixin, Zhu, Guowen, Chen, Zhiyi and Ni, Dong (2020). Synthesis And Edition Of Ultrasound Images Via Sketch Guided Progressive Growing Gans. IEEE 17th International Symposium on Biomedical Imaging (ISBI), Iowa, IA United States, 3-7 April 2020. Piscataway, NJ United States: Institute of Electrical and Electronics Engineers. doi: 10.1109/isbi45749.2020.9098384

Synthesis And Edition Of Ultrasound Images Via Sketch Guided Progressive Growing Gans

2020

Conference Publication

Multiphoton and FLIM imaging in quantifying ex vivo and in vivo body organ kinetics of solutes

Roberts, Michael S., Barkauskas, Deborah, Wang, Haolu, Liu, Xin, Studier, Hauke, Pastore, Michael, Zhang, Run, Holmes, Amy, Grice, Jeffrey E., Xu, Zhiping, Mohammed, Yousuf S. and Liang, Xiaowen (2020). Multiphoton and FLIM imaging in quantifying ex vivo and in vivo body organ kinetics of solutes. Multiphoton Microscopy in the Biomedical Sciences, San Francisco, CA United States, 2-4 February 2020. Bellingham, WA United States: SPIE. doi: 10.1117/12.2546058

Multiphoton and FLIM imaging in quantifying ex vivo and in vivo body organ kinetics of solutes

2017

Conference Publication

Non-invasive assessment of the liver using imaging

Thorling (Thompson), Camilla, Wang, Haolu, Liu, Xin, Liang, Xiaowen, Crawford, Darrell H. G. and Roberts, Michael S. (2017). Non-invasive assessment of the liver using imaging. SPIE BioPhotonics Australasia Conference, Adelaide, SA, Australia, 17 - 19 October 2016. Bellingham, WA, United States: International Society for Optical Engineering. doi: 10.1117/12.2242883

Non-invasive assessment of the liver using imaging

2017

Conference Publication

In vivo quantitative visualization of hypochlorous acid in the liver using a novel selective two-photon fluorescent probe

Wang, Haolu, Jayachandran, Aparna, Gravot, Germain, Liang, Xiaowen, Thorling, Camilla A., Zhang, Run, Liu, Xin and Roberts, Michael S. (2017). In vivo quantitative visualization of hypochlorous acid in the liver using a novel selective two-photon fluorescent probe. SPIE BioPhotonics Australasia Conference, Adelaide,SA, Australia, 17 - 19 October 2016. Bellingham, WA, United States: S P I E - International Society for Optical Engineering. doi: 10.1117/12.2242978

In vivo quantitative visualization of hypochlorous acid in the liver using a novel selective two-photon fluorescent probe

2017

Conference Publication

Characterizing and predicting the in vivo kinetics of mesenchymal stem cells and their secretome for the treatment of liver cirrhosis

Wang, H., Liang, X., Weijs, L., Brooks, A., Liu, X., Roberts, M. S. and Crawford, D. H. G. (2017). Characterizing and predicting the in vivo kinetics of mesenchymal stem cells and their secretome for the treatment of liver cirrhosis. Gastroenterological Society of Australia Australian Gastroenterology Week Precision Medicine in Gastroenterology, Gold Coast, Queensland, 20–22 Aug 2017. Hoboken, NJ United States: Wiley.

Characterizing and predicting the in vivo kinetics of mesenchymal stem cells and their secretome for the treatment of liver cirrhosis

2017

Conference Publication

Quantitative optical imaging of paracetamol-induced metabolism changes in the liver

Liang, Xiaowen, Wang, Haolu, Liu, Xin and Roberts, Michael (2017). Quantitative optical imaging of paracetamol-induced metabolism changes in the liver. SPIE BioPhotonics Australasia, Adelaide, SA, Australia, 17 - 19 October 2016. Bellingham, WA, United States: International Society for Optical Engineering. doi: 10.1117/12.2242962

Quantitative optical imaging of paracetamol-induced metabolism changes in the liver

2017

Conference Publication

Novel mechanistic imaging biomarkers for early prediction of acetaminophen-induced hepatotoxicity

Liang, X., Wang, H., Liu, X., Touraud, M., Chouane, J. B., Tse, B. and Roberts, M. S. (2017). Novel mechanistic imaging biomarkers for early prediction of acetaminophen-induced hepatotoxicity. Gastroenterological Society of Australia Australian Gastroenterology Week Precision Medicine in Gastroenterology, , Gold Coast, Queensland, Australia, 20–22 Aug 2017. Richmond, VIC Australia: Wiley.

Novel mechanistic imaging biomarkers for early prediction of acetaminophen-induced hepatotoxicity

2015

Conference Publication

A blood-flow limited physiologically based kinetic model to characterize and predict the biological fate of mesenchymal stem cells in vivo

Wang, H., Liang, X., Endo-Munoz, L., Weijs, L., Liu, X., Crawford, D. and Roberts, M. (2015). A blood-flow limited physiologically based kinetic model to characterize and predict the biological fate of mesenchymal stem cells in vivo. Gastro 2015 GESA‐AGW And WGO International Congress, Gastroenterological Society Of Australia Australian Gastroenterology Week 2015 - World Congress Of Gastroenterology, , Brisbane, Queensland, Australia, 28 September‐2 October 2015. Richmond, VIC Australia: Wiley.

A blood-flow limited physiologically based kinetic model to characterize and predict the biological fate of mesenchymal stem cells in vivo

2015

Conference Publication

Early diagnosis of hepatocellular carcinoma by in vivo imaging

Liang, X., Wang, H., Zhu, Y., Grice, J., Liu, X., Xu, Z. and Roberts, M. (2015). Early diagnosis of hepatocellular carcinoma by in vivo imaging. European Cancer Congress, Vienna, Austria, 2015. Oxford, United Kingdom: Elsevier. doi: 10.1016/S0959-8049(16)30378-1

Early diagnosis of hepatocellular carcinoma by in vivo imaging

2015

Conference Publication

A physiologically based kinetic model to characterize and predict the biological fate of circulating tumor cells in vivo

Wang, H., Liang, X., Thorling, C., Xu, Z. P., Crawford, D., Liu, X. and Roberts, M. (2015). A physiologically based kinetic model to characterize and predict the biological fate of circulating tumor cells in vivo. European Cancer Congress, Vienna, Austria, 2015. Hoboken, NJ United States: Wiley. doi: 10.1016/S0959-8049(15)30013-7

A physiologically based kinetic model to characterize and predict the biological fate of circulating tumor cells in vivo