Carbon nanotubes as photoacoustic molecular imaging agents in living mice.
暂无分享,去创建一个
Zhuang Liu | S. Gambhir | O. Oralkan | H. Dai | Xiaoyuan Chen | Sunil Bodapati | B. Khuri-Yakub | Zhen Cheng | B. Smith | C. Zavaleta | A. de la Zerda | S. Keren | S. Vaithilingam | Jelena Levi | T. Ma | Te-Jen Ma
[1] M. Strano,et al. Near-infrared optical sensors based on single-walled carbon nanotubes , 2004, Nature materials.
[2] G. Mizejewski,et al. Role of integrins in cancer: survey of expression patterns. , 1999, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[3] Lihong V. Wang,et al. Functional photoacoustic microscopy for high-resolution and noninvasive in vivo imaging , 2006, Nature Biotechnology.
[4] André Conjusteau,et al. Detection and noninvasive diagnostics of breast cancer with 2-color laser optoacoustic imaging system , 2007, SPIE BiOS.
[5] Vasilis Ntziachristos,et al. Shedding light onto live molecular targets , 2003, Nature Medicine.
[6] Lihong V. Wang,et al. Photoacoustic imaging in biomedicine , 2006 .
[7] Wei Wang,et al. Simultaneous Molecular and Hypoxia Imaging of Brain Tumors In Vivo Using Spectroscopic Photoacoustic Tomography , 2008, Proceedings of the IEEE.
[8] Craig S. Levin,et al. A Comparison Between a Time Domain and Continuous Wave Small Animal Optical Imaging System , 2008, IEEE Transactions on Medical Imaging.
[9] Sheng-Wen Huang,et al. Indocyanine-green-embedded PEBBLEs as a contrast agent for photoacoustic imaging. , 2007, Journal of biomedical optics.
[10] Lihong V. Wang,et al. Imaging acute thermal burns by photoacoustic microscopy. , 2006, Journal of biomedical optics.
[11] Massoud Motamedi,et al. High sensitivity of in vivo detection of gold nanorods using a laser optoacoustic imaging system. , 2007, Nano letters.
[12] D. Shieh,et al. Photoacoustic Imaging of Multiple Targets Using Gold Nanorods , 2007, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[13] Sanjiv S Gambhir,et al. A pilot toxicology study of single-walled carbon nanotubes in a small sample of mice. , 2008, Nature nanotechnology.
[14] Sanjiv Sam Gambhir,et al. AMIDE: a free software tool for multimodality medical image analysis. , 2003, Molecular imaging.
[15] F. M. van den Engh,et al. Initial results of in vivo non-invasive cancer imaging in the human breast using near-infrared photoacoustics. , 2007, Optics express.
[16] Fred P. Seeber,et al. OP-TEC national center for optics and photonics education and ANSI Z136.5 American National Standard for the safe use of lasers in educational institutions – How they will work together to improve laser safety in educational institutions , 2009 .
[17] M. Dresselhaus,et al. Determination of nanotubes properties by Raman spectroscopy , 2004, Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[18] Xinmai Yang,et al. Photoacoustic tomography of a rat cerebral cortex in vivo with au nanocages as an optical contrast agent. , 2007, Nano letters.
[19] H. Dai,et al. Carbon nanotubes as multifunctional biological transporters and near-infrared agents for selective cancer cell destruction. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[20] Geng Ku,et al. Noninvasive imaging of hemoglobin concentration and oxygenation in the rat brain using high-resolution photoacoustic tomography. , 2006, Journal of biomedical optics.
[21] Valery V Tuchin,et al. Photoacoustic flow cytometry: principle and application for real-time detection of circulating single nanoparticles, pathogens, and contrast dyes in vivo. , 2007, Journal of biomedical optics.
[22] Milind Rajopadhye,et al. Tumor targeting with radiolabeled alpha(v)beta(3) integrin binding peptides in a nude mouse model. , 2002, Cancer research.
[23] R. M. Moore,et al. In vivo imaging of inflammatory responses by photoacoustics using cell-targeted gold nanorods (GNR) as contrast agent , 2008, SPIE BiOS.
[24] Sanjiv S Gambhir,et al. Peptide-labeled near-infrared quantum dots for imaging tumor vasculature in living subjects. , 2006, Nano letters.
[25] Jung-Taek Oh,et al. Three-dimensional imaging of skin melanoma in vivo by dual-wavelength photoacoustic microscopy. , 2006, Journal of biomedical optics.
[26] H. Dai,et al. In vivo biodistribution and highly efficient tumour targeting of carbon nanotubes in mice. , 2020, Nature nanotechnology.
[27] Pai-Chi Li,et al. In vivo photoacoustic imaging with multiple selective targeting using bioconjugated gold nanorods , 2008, SPIE BiOS.
[28] M. Prato,et al. Applications of carbon nanotubes in drug delivery. , 2005, Current opinion in chemical biology.