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Common approach for compensation of axial motion artifacts in swept-source OCT and dispersion in Fourier-domain OCT, Opt Express , vol. 20, no. 6, pp. 6761--6776, Mä. 2012.
Common approach for compensation of axial motion artifacts in swept-source OCT and dispersion in Fourier-domain OCT, Opt Express , vol. 20, no. 6, pp. 6761--6776, Mä. 2012.
        
    
    
    
        
        
        
            
            
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                    Gesa
                    Franke,
                
        
    
        
        
        
            
            
                    Martin
                    Hagen-Eggert, and
                
        
    
        
        
        
            
            
                    Peter
                    Koch,
                
        
    
Common approach for compensation of axial motion artifacts in swept-source OCT and dispersion in Fourier-domain OCT, Opt. Express , vol. 20, no. 6, pp. 6761-6776, 2012.
Common approach for compensation of axial motion artifacts in swept-source OCT and dispersion in Fourier-domain OCT, Opt. Express , vol. 20, no. 6, pp. 6761-6776, 2012.
        
    
    
    
    
        
        
            
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Analysis of the signal fall-off in spectral domain optical coherence tomography systems, Joseph, A. Izatt and James, G. Fujimoto and Valery, V. Tuchin, Eds. SPIE, 2012. pp. 82131K.
Analysis of the signal fall-off in spectral domain optical coherence tomography systems, Joseph, A. Izatt and James, G. Fujimoto and Valery, V. Tuchin, Eds. SPIE, 2012. pp. 82131K.
| Datei: | 12.910921 | 
| Bibtex: | @inproceedings{Hagen-Eggert,
   author = {Hagen-Eggert, M. and Koch, P. and Huttmann, G.},
   title = {Analysis of the signal fall-off in spectral domain optical coherence tomography systems},
   editor = {Joseph, A. Izatt and James, G. Fujimoto and Valery, V. Tuchin},
   publisher = {SPIE},
   volume = {8213},
   pages = {82131K},
url = {https://doi.org/10.1117/12.910921},
   year = { 2012}
}
 | 
        
    
    
    
    
        
        
        
            
            
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Diffusion-sensitive Fourier-domain optical coherence tomography, James, G. Fujimoto and Joseph, A. Izatt and Valery, V. Tuchin, Eds. SPIE, 2011. pp. 78892B.
Diffusion-sensitive Fourier-domain optical coherence tomography, James, G. Fujimoto and Joseph, A. Izatt and Valery, V. Tuchin, Eds. SPIE, 2011. pp. 78892B.
| Datei: | 12.873815.short | 
| Bibtex: | @inproceedings{Hagen-Eggert2011,
   author = {Hagen-Eggert, M. and Hillmann, D. and Koch, P. and Huttmann, G.},
   title = {Diffusion-sensitive Fourier-domain optical coherence tomography},
   editor = {James, G. Fujimoto and Joseph, A. Izatt and Valery, V. Tuchin},
   publisher = {SPIE},
   volume = {7889},
   pages = {78892B},
} | 
        
    
    
    
    
        
        
        
            
            
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                    Franke, and
                
        
    
        
        
        
            
            
                    Peter
                    Koch,
                
        
    
Ultra highspeed in-vivo Fourier domain full-field OCT of the human retina, James, G. Fujimoto and Joseph, A. Izatt and Valery, V. Tuchin, Eds. SPIE, 2011. pp. 788906.
Ultra highspeed in-vivo Fourier domain full-field OCT of the human retina, James, G. Fujimoto and Joseph, A. Izatt and Valery, V. Tuchin, Eds. SPIE, 2011. pp. 788906.
        
    
    
    
        
        
        
            
            
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In vivo Fourier-domain full-field OCT of the human retina with 1.5 million A-lines/s., .... Opt Lett. 2010 Oct 15;35(20):3432-4. doi: 10.1364/OL.35.003432., 2010.
In vivo Fourier-domain full-field OCT of the human retina with 1.5 million A-lines/s., .... Opt Lett. 2010 Oct 15;35(20):3432-4. doi: 10.1364/OL.35.003432., 2010.

