Multimodal optoacoustic and multiphoton microscopy of human carotid atheroma
Tài liệu tham khảo
WHO, 2014, WHO, The top 10 causes of death, Fact Sheet N°310 (Updated May 2014) (2014) http://www.who.int/mediacentre/factsheets/fs310/en/.
Insull, 2009, The pathology of atherosclerosis: plaque development and plaque responses to medical treatment, Am. J. Med., 122, S3, 10.1016/j.amjmed.2008.10.013
Dickson, 2003, Towards understanding acute destabilization of vulnerable atherosclerotic plaques, Cardiovasc. Pathol., 12, 237, 10.1016/S1054-8807(03)00072-3
Singh, 2002, Pathogenesis of atherosclerosis: a multifactorial process, Exp. Clin. Cardiol., 7, 40
Virmani, 2007, Pathology of carotid artery atherosclerotic disease, 1
Stary, 1994, A definition of initial, fatty streak, and intermediate lesions of atherosclerosis. A report from the Committee on Vascular Lesions of the Council on Arteriosclerosis, American Heart Association, Circulation, 89, 2462, 10.1161/01.CIR.89.5.2462
Gutstein, 1999, Pathophysiology and clinical significance of atherosclerotic plaque rupture, Cardiovasc. Res., 41, 323, 10.1016/S0008-6363(98)00322-8
Stary, 1995, A definition of advanced types of atherosclerotic lesions and a histological classification of atherosclerosis: a report from the Committee on Vascular Lesions of the Council on Arteriosclerosis, American Heart Association, Circulation, 92, 1355, 10.1161/01.CIR.92.5.1355
Mann, 1996, Vulnerable plaque. Relation of characteristics to degree of stenosis in human coronary arteries, Circulation, 94, 928, 10.1161/01.CIR.94.5.928
Falk, 1995, Coronary plaque disruption, Circulation, 92, 657, 10.1161/01.CIR.92.3.657
Richardson, 1989, Influence of plaque configuration and stress distribution on fissuring of coronary atherosclerotic plaques, Lancet, 334, 941, 10.1016/S0140-6736(89)90953-7
Pasterkamp, 1999, Inflammation of the atherosclerotic cap and shoulder of the plaque is a common and locally observed feature in unruptured plaques of femoral and coronary arteries, Arterioscler. Thromb. Vasc. Biol., 19, 54, 10.1161/01.ATV.19.1.54
Chistiakov, 2015, Contribution of neovascularization and intraplaque haemorrhage to atherosclerotic plaque progression and instability, Acta Physiol., 213, 539, 10.1111/apha.12438
Nadkarni, 2009, Evaluation of collagen in atherosclerotic plaques: the use of two coherent laser-based imaging methods, Lasers Med. Sci., 24, 439, 10.1007/s10103-007-0535-x
Deguchi, 2005, Matrix metalloproteinase-13/collagenase-3 deletion promotes collagen accumulation and organization in mouse atherosclerotic plaques, Circulation, 112, 2708, 10.1161/CIRCULATIONAHA.105.562041
Libby, 2003, Mechanisms of plaque stabilization with statins, Am. J. Cardiol., 91, 4B, 10.1016/S0002-9149(02)03267-8
Purushothaman, 2011, Inflammation, neovascularization and intra-plaque hemorrhage are associated with increased reparative collagen content: implication for plaque progression in diabetic atherosclerosis, Vasc. Med., 16, 103, 10.1177/1358863X11402249
Bentzon, 2014, Mechanisms of plaque formation and rupture, Circ. Res., 114, 1852, 10.1161/CIRCRESAHA.114.302721
Virmani, 2005, Atherosclerotic plaque progression and vulnerability to rupture: angiogenesis as a source of intraplaque hemorrhage, Arterioscler. Thromb. Vasc. Biol., 25, 2054, 10.1161/01.ATV.0000178991.71605.18
Milei, 2003, Atherosclerotic plaque rupture and intraplaque hemorrhage do not correlate with symptoms in carotid artery stenosis, J. Vasc. Surg., 38, 1241, 10.1016/S0741-5214(03)00910-8
Virmani, 2000, Lessons from sudden coronary death, Arterioscler. Thromb., 1262, 10.1161/01.ATV.20.5.1262
Van Zandvoort, 2004, Two-photon microscopy for imaging of the (Atherosclerotic) vascular wall: a proof of concept study, J. Vasc. Res., 41, 54, 10.1159/000076246
Massberg, 2002, A critical role of platelet adhesion in the initiation of atherosclerotic lesion formation, J. Exp. Med., 196, 887, 10.1084/jem.20012044
Massberg, 2002, A crucial role of glycoprotein VI for platelet recruitment to the injured arterial wall in vivo, J. Exp. Med., 197, 41, 10.1084/jem.20020945
Yu, 2007, In vivo imaging of atherosclerotic plaques in apolipoprotein E deficient mice using nonlinear microscopy, J. Biomed. Opt., 12, 054008, 10.1117/1.2800337
Yoo, 2011, Intra-arterial catheter for simultaneous microstructural and molecular imaging in vivo, Nat. Med., 17, 1680, 10.1038/nm.2555
Jaffer, 2011, Two-dimensional intravascular near-infrared fluorescence molecular imaging of inflammation in atherosclerosis and stent-induced vascular injury, J. Am. Coll. Cardiol., 57, 2516, 10.1016/j.jacc.2011.02.036
Calfon, 2010, Intravascular near-infrared fluorescence molecular imaging of atherosclerosis: toward coronary arterial visualization of biologically high-risk plaques, J. Biomed. Opt., 15, 011107, 10.1117/1.3280282
Vinegoni, 2011, Indocyanine green enables near-infrared fluorescence imaging of lipid-rich, Inflamed Atherosclerotic Plaques, 3, 1
Le, 2009, Label-free molecular imaging of atherosclerotic lesions using multimodal nonlinear optical microscopy, Biomed. Microdevices, 12, 1
Lilledahl, 2014, Characterization of vulnerable plaques by multiphoton microscopy, J. Biomed. Opt., 12, 044005, 10.1117/1.2772652
Mostaço-Guidolin, 2010, Differentiating atherosclerotic plaque burden in arterial tissues using femtosecond CARS-based multimodal nonlinear optical imaging, Biomed. Opt. Express, 1, 59, 10.1364/BOE.1.000059
Jaffer, 2011, Two-dimensional intravascular near-infrared fluorescence molecular imaging of inflammation in atherosclerosis and stent-induced vascular injury, J. Am. Coll. Cardiol., 57, 2516, 10.1016/j.jacc.2011.02.036
Wang, 2008, Label-free imaging of arterial cells and extracellular matrix using a multimodal CARS microscope, Opt. Commun., 281, 1813, 10.1016/j.optcom.2007.07.067
Wang, 2009, Imaging and quantitative analysis of atherosclerotic lesions by CARS-based multimodal nonlinear optical microscopy, Arterioscler. Thromb. Vasc. Biol., 29, 1342, 10.1161/ATVBAHA.109.189316
Jansen, 2014, Photoacoustic imaging of human coronary atherosclerosis in two spectral bands, Photoacoustics, 2, 12, 10.1016/j.pacs.2013.11.003
Petrov, 2014, Optoacoustic detection of intra- and extracranial hematomas in rats after blast injury, Photoacoustics, 2, 75, 10.1016/j.pacs.2014.04.001
Sethuraman, 2008, Spectroscopic intravascular photoacoustic imaging to differentiate atherosclerotic plaques, Opt. Express, 16, 3362, 10.1364/OE.16.003362
Wang, 2010, Detection of lipid in atherosclerotic vessels using ultrasound-guided spectroscopic intravascular photoacoustic imaging, Opt. Express, 18, 4889, 10.1364/OE.18.004889
Tserevelakis, 2014, Hybrid multiphoton and optoacoustic microscope, Opt. Lett., 39, 1819, 10.1364/OL.39.001819
Soliman, 2015, Combining microscopy with mesoscopy using optical and optoacoustic label-free modes, Nat. Publ. Gr., 1
Rao, 2014, Integrated photoacoustic, confocal, and two-photon microscope, J. Biomed. Opt., 19, 36002, 10.1117/1.JBO.19.3.036002
Thévenaz, 1998, A pyramid approach to subpixel registration based on intensity, IEEE Trans. Image Process., 7, 27, 10.1109/83.650848
Pelisek, 2012, Expression and cellular localization of metalloproteases ADAMs in high graded carotid artery lesions, Scand. J. Clin. Lab. Invest., 1
Pelisek, 2012, Neovascularization and angiogenic factors in advanced human carotid artery stenosis, Circ. J., 76, 1274, 10.1253/circj.CJ-11-0768
Zoumi, 2002, Imaging cells and extracellular matrix in vivo by using second-harmonic generation and two-photon excited fluorescence, Proc. Natl. Acad. Sci. U. S. A., 99, 11014, 10.1073/pnas.172368799
Segawa, 2012, Label-free tetra-modal molecular imaging of living cells with CARS, SHG, THG and TSFG (coherent anti-stokes Raman scattering, second harmonic generation, third harmonic generation and third-order sum frequency generation), Opt. Express, 20, 9551, 10.1364/OE.20.009551
Mansfield, 2009, The elastin network: its relationship with collagen and cells in articular cartilage as visualized by multiphoton microscopy, J. Anat., 215, 682, 10.1111/j.1469-7580.2009.01149.x
Chen, 2012, Second harmonic generation microscopy for quantitative analysis of collagen fibrillar structure, Nat. Protoc., 7, 654, 10.1038/nprot.2012.009
Weigelin, 2016, Third harmonic generation microscopy of cells and tissue organization, J. Cell Sci., 245, 10.1242/jcs.152272
Yao, 2014, Sensitivity of photoacoustic microscopy, Photoacoustics, 2, 87, 10.1016/j.pacs.2014.04.002
Ntziachristos, 2010, Molecular imaging by means of multispectral optoacoustic tomography (MSOT), Chem. Rev., 110, 2783, 10.1021/cr9002566
Gasser, 2006, Hyperelastic modelling of arterial layers with distributed collagen fibre orientations, J. R. Soc. Interface, 3, 15, 10.1098/rsif.2005.0073
Rekhter, 1999, Collagen synthesis in atherosclerosis: too much and not enough, Cardiovasc. Res., 41, 376, 10.1016/S0008-6363(98)00321-6
Pasterkamp, 2002, The erythrocyte: a new player in atheromatous core formation, Heart, 88, 115, 10.1136/heart.88.2.115
Finn, 2010, Coronary plaque neovascularization and hemorrhage, JACC Cardiovasc. Imaging, 3, 41, 10.1016/j.jcmg.2009.11.001
Dima, 2012, Non-invasive carotid imaging using optoacoustic tomography, Opt. Express, 20, 25044, 10.1364/OE.20.025044
