Biomedical Engineering Reference
In-Depth Information
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based hand-held photoacoustic probe adapted from a clinical ultrasound system for
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molecular and hypoxia imaging of brain tumors in vivo using spectroscopic photoacoustic
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[38] guo Z, Li L, Wang LV. on the speckle-free nature of photoacoustic tomography. Med
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[39] Erpelding Tn, Kim C, Pramanik M, Jankovic L, Maslov K, guo Z, Margenthaler JA,
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[40] Kim C, Erpelding Tn, Jankovic L, Pashley Md, Wang LV. deeply penetrating in vivo
photoacoustic imaging using a clinical ultrasound array system. Biomed opt Express
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[41] Kim d, Kim E, Lee J, Hong S, Sung W, Lim n, Park Cg, Kim K. direct synthesis of
polymer nanocapsules: self-assembly of polymer hollow spheres through irreversible
covalent bond formation. J Am Chem Soc 2010; 132 :9908-9919.
[42] Zhang HF, Maslov K, Wang LV. In vivo imaging of subcutaneous structures using
functional photoacoustic microscopy. nat Protoc 2007; 2 :797-804.
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imaging of prostate tumor progression in the mouse window chamber. J Biomed opt
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[47] Jose J, Manohar S, Kolkman rg, Steenbergen W, van Leeuwen Tg. Imaging of tumor
vasculature using Twente photoacoustic systems. J Biophotonics 2009; 2 :701-717.
[48] Lao Y, Xing d, Yang S, Xiang L. noninvasive photoacoustic imaging of the developing
vasculature during early tumor growth. Phys Med Biol 2008; 53 :4203-4212.
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J Biomed opt 2007; 12 :060503.
[51] Song KH, Wang LV. noninvasive photoacoustic imaging of the thoracic cavity and the
kidney in small and large animals. Med Phys 2008; 35 :4524-4529.
[52] Proskurnin MA, Zhidkova TV, Volkov dS, Sarimollaoglu M, galanzha EI, Mock d,
nedosekin dA, Zharov VP. In vivo multispectral photoacoustic and photothermal flow
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