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Proceedings

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  • Liu Y, Bernucci MT, Ji Q, Crowell JA, Bowles-Johnson K, Keller MJ, Miller DT, "An integrated fixation and stimulus channel for adaptive optics ophthalmoscopy with a large working distance, steering field, dioptric range, and light efficiency," Proc. SPIE 12824, Ophthalmic Technologies XXXIV, 1282402 (2024).

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  • Ji Q, Liu Y, Bernucci MT, Crowell JA, Miller DT, “Method for assessing structure and function of cone photoreceptors with multiple outer segment reflections in healthy and diseased eyes,” Proc. SPIE 12824, Ophthalmic Technologies XXXIV, 1282407 (2024)

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  • Bernucci MT, Liu Y, Crowell JA, Kurokawa K, Ji Q, Miller DT, "Photopigment density variation of individual cone photoreceptors revealed by phase-sensitive AO-OCT," Proc. SPIE 12360, Ophthalmic Technologies XXXIII, 1236006 (2023).

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  • Ji Q, Bernucci MT, Liu Y, Crowell JA, Miller DJ, Miller DT, "S-cone identification using AO-OCT cone structural measurements and support vector machine classifier," Proc. SPIE 12360, Ophthalmic Technologies XXXIII, 1236005 (2023).

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  • Lassoued A, Zhang F, Kurokawa K, Liu Y, Crowell JA, Miller DT, "Measuring dysfunction of cone photoreceptors in retinitis pigmentosa with phase-sensitive AO-OCT," Proc. SPIE 11218, Ophthalmic Technologies XXX, 1121815 (2020).

 

  • Soltanian-Zadeh S, Kurokawa K, Liu Z, Hammer DX, Miller DT, Farsiu S "Fully automatic quantification of individual ganglion cells from AO-OCT volumes via weakly supervised learning," Proc. SPIE 11218, Ophthalmic Technologies XXX, 112180Q (2020).

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  • Kurokawa K, Zhang F, Crowell JA, Lassoued A, Miller DT, "Method to track and measure loss of inner retinal neurons in the living human eye," Proc. SPIE 10858, Ophthalmic Technologies XXIX, 108580L (2019).

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  • Zhang F, Kurokawa K, Lassoued A, Crowell JA, Miller DT, "Classifying cone photoreceptors in the living human eye using their unique phase response to light," Proc. SPIE 10858, Ophthalmic Technologies XXIX, 108580K (2019).

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  • Kurokawa K, Liu Z, Crowell J, Zhang F, Miller DT, "Method to investigate temporal dynamics of ganglion and other retinal cells in the living human eye," Proc. SPIE 10474, Ophthalmic Technologies XXVIII, 104740W (2019).

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  • Liu Z, Kurokawa K, Zhang F, Miller DT, "Characterizing motility dynamics in human RPE cells," Proc. SPIE 10045, Ophthalmic Technologies XXVII, 1004515 (2017).

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  • Zhang F, Liu Z, Kurokawa K, Miller DT, "Tracking dynamics of photoreceptor disc shedding with adaptive optics-optical coherence tomography," Proc. SPIE 10045, Ophthalmic Technologies XXVII, 1004517 (2017).

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  • Liu Z, Kocaoglu OP, Miller DT, "Imaging human retinal pigment epithelium cells using adaptive optics optical coherence tomography," Proc. SPIE 9693, Ophthalmic Technologies XXVI, 96931E (March 4, 2016).

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  • Liu Z, Kocaoglu OP, Turner TL, Miller DT, "Imaging modal content of cone photoreceptors using adaptive optics optical coherence tomography," Proc. SPIE 9307, Ophthalmic Technologies XXV, 930712 (March 20, 2015).

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  • Liu Z, Kocaoglu OP, Wang Q, Miller DT, "Design and validation of a toroidal-based ophthalmic adaptive optics system," In Imaging and Applied Optics, OSA Technical Digest (Optical Society of America, 2013), paper OM4A.2.

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  • Kocaoglu OP, Jonnal RS, Lee S, Wang Q, Liu Z, Miller DT, "Adaptive optics optical coherence tomography for measuring phase and reflectance dynamics of photoreceptors," Proc. SPIE 8209, Ophthalmic Technologies XXII, 82091I (March 8, 2012).

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  • Liu Z, Kocaoglu OP, Jonnal RS, Wang Q, Miller DT, "Performance of an off-axis ophthalmic adaptive optics system with toroidal mirror," In Adaptive Optics: Methods, Analysis and Applications, OSA Technical Digest (CD) (Optical Society of America, 2011), paper AMA4.

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  • Kocaoglu OP, Lee S, Jonnal RS, Wang Q, Herde AE, Besecker J, Gao W, Miller DT, "3D imaging of cone photoreceptors over extended time periods using optical coherence tomography with adaptive optics," Proc. SPIE 7885, Ophthalmic Technologies XXI, 78850C (February 11, 2011).

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  • Kocaoglu OP, Cense B, Wang Q, Bruestle J, Besecker J, Gao W, Jonnal R, Miller DT, "Imaging retinal nerve fiber bundles at ultrahigh-speed and ultrahigh-resolution using OCT with adaptive optics," Proc. SPIE 7550, Ophthalmic Technologies XX, 755010 (March 02, 2010).

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  • Miller DT, Cense B, Koperda E, Jonnal RS, Gao W, "Does transverse chromatic aberration limit performance of AO-OCT retinal imaging?," Proc. SPIE 7139, 1st Canterbury Workshop on Optical Coherence Tomography and Adaptive Optics, 71390Z (December 30, 2008).

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  • Zawadzki RJ, Zhang Y, Jones SM, Choi SS, Cense B, Evans JW, Miller DT, Olivier SS, Werner JS, "Ultra-high resolution adaptive optics: optical coherence tomography for in vivo imaging of healthy and diseased retinal structures," Proc. SPIE 6844, Ophthalmic Technologies XVIII, 684408 (February 11, 2008).

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  • Jones SM, Olivier SS, Chen D, Joeres S, Sadda S, Zawadzki RJ, Werner JS, Miller DT, "Adaptive optics ophthalmologic systems using dual deformable mirrors," Proc. SPIE 6467, MEMS Adaptive Optics, 64670H (February 09, 2007).

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  • Zawadzki RJ, Zhang Y, Jones SM, Choi SS, Cense B, Chen D, Fuller AR, Miller DT, Olivier SS, Werner JS, "Application of adaptive optics: Optical coherence tomography for in vivo imaging of microscopic structures in the retina and optic nerve head," Proc. SPIE 6426, Ophthalmic Technologies XVII, 64261O (March 05, 2007).

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  • Zawadzki RJ, Zhang Y, Jones SM, Ferguson RD, Choi SS, Cense B, Evans JW, Chen D, Miller DT, Olivier SS, Werner JS, "Ultrahigh-resolution adaptive optics--optical coherence tomography: Towards isotropic 3 µm resolution for in vivo retinal imaging," Proc. SPIE 6429, Coherence Domain Optical Methods and Optical Coherence Tomography in Biomedicine XI, 642909 (February 09, 2007).

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  • Zhang Y, Cense B, Jonnal RS, Gao W, Jones SM, Olivier S, Miller DT, "Volumetric imaging of inner retina with adaptive optics spectral-domain optical coherence tomography," Proc. SPIE 6426, Ophthalmic Technologies XVII, 64261P (March 05, 2007).

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  • Jonnal RS, Rha J, Zhang Y, Cense B, Miller DT, "High-speed adaptive optics functional imaging of cone photoreceptors at a 100 MHz pixel rate," Proc. SPIE 6426, Ophthalmic Technologies XVII, 64261N (March 05, 2007).

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  • Zawadzki RJ, Choi SS, Werner JS, Jones SM, Chen D, Olivier SS, Zhang Y, Rha J, Cense B, Miller DT, "Two deformable mirror adaptive optics system for in vivo retinal imaging with optical coherence tomography," in Biomedical Optics, Technical Digest (CD) (Optical Society of America, 2006), paper WC2.

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  • Doble N, Miller DT, Yoon G, Helmbrecht MA, Williams DR, "Wavefront corrector requirements for compensation of ocular aberrations in two large populations of normal human eyes," Proc. SPIE 6138, Ophthalmic Technologies XVI, 61380X (March 07, 2006).

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  • Zhang Y, Rha J, Jonnal RS, Gao W, Zawadzki RJ, Werner JS, Miller DT, "Motion-free volumetric retinal imaging with adaptive optics spectral-domain optical coherence tomography," Proc. SPIE 6138, Ophthalmic Technologies XVI, 613802 (March 07, 2006).

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  • Miller DT, Zhang Y, Rha J, Jonnal RS, Gao W, "Imaging the living retina at the cellular level with AO parallel spectral-domain optical coherence tomography," Proc. SPIE 6018, 5th International Workshop on Adaptive Optics for Industry and Medicine, 601803 (June 08, 2006).

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  • Zhang Y, Rha J, Jonnal RS, Miller DT, "Single shot retinal imaging with AO spectral OCT," Proc. SPIE 5690, Coherence Domain Optical Methods and Optical Coherence Tomography in Biomedicine IX, 548 (April 19, 2005).

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  • Kim J, Kim EK, Miller DT, Milner TE, "Speckle reduction in OCT with multimode source fiber," Proc. SPIE 5317, Optical Fibers and Sensors for Medical Applications IV, 246 (June 10, 2004).

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  • Qu J, Jonnal RS, Miller DT, "Ultrafast parallel coherence gating for an adaptive optics retina camera," Proc. SPIE 4956, Coherence Domain Optical Methods and Optical Coherence Tomography in Biomedicine VII, 352 (July 1, 2003).

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  • Miller DT, Qu J, Jonnal RS, Thorn K, "Coherence Gating and Adaptive Optics in the Eye," Proc. SPIE 4956, Coherence Domain Optical Methods and Optical Coherence Tomography in Biomedicine VII, 65 (July 1, 2003).

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  • Hong X, Thibos L, Bradley A, Miller D, Cheng X, Himebaugh N, ""Statistics of aberrations among healthy young eyes," in Vision Science and its Applications, Sawchuk A, ed., Vol. 53 of OSA Trends in Optics and Photonics (Optical Society of America, 2001), paper SuA5.

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  • Cheng X, Thibos LN, Hong X, Bradley A, Himebaugh N, Riley C, Miller DT, "Increased optical aberrations in myopia," Proceedings of the VIII International Conference on Myopia, 122-126 (2000).

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  • Thibos LN, Qi X, Miller DT, "Vision through a liquid-crystal spatial light modulator," Love GD, ed. Proceedings of the 2nd International Workshop on Adaptive Optics for Industry and Medicine, World Scientific, Singapore, 57-62 (1999).

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  • Miller DT, Hong X, Thibos LN, "Requirements for segmented spatial light modulators for diffraction-limited imaging through aberrated eyes," Love GD, ed. Proceedings of the 2nd International Workshop on Adaptive Optics for Industry and Medicine, World Scientific, Singapore, 63-68 (1999).

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  • Watson EA, Miller DT, McManamon PF, "Application and requirements for nonmechanical beam steering in active electro-optic sensors," Proc. SPIE 3633, Diffractive and Holographic Technologies, Systems, and Spatial Light Modulators VI, 216 (June 1, 1999).

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  • Watson EA, Miller DT, Barnard KJ, "Fill factor improvement using microlens arrays," Proc. SPIE 3276, Miniaturized Systems with Micro-Optics and Micromechanics III, 123 (March 15, 1998).

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  • Liang J, Williams DR, Miller DT, "Imaging photoreceptors in the living eye with adaptive optics," in Basic and Clinical Applications of Vision Science, The Professor Jay M. Enoch Festschrift Volume, Documeta Ophthalmologica Proceedings Series 60, edited by Lakshminarayanan V, (Kluwer Academic Publishers, Dordecht, the Netherlands, 1997) 43-46.

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