Advances in light microscopy for neuroscience.
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[1] Structure et connexions des neurones. Conférence Nobel faite à Stockholm le 12 décembre 1906 , 1907 .
[2] D. Gabor. A New Microscopic Principle , 1948, Nature.
[3] W. Lukosz,et al. Optischen Abbildung Unter Überschreitung der Beugungsbedingten Auflösungsgrenze , 1963 .
[4] A R Maranto,et al. Neuronal mapping: a photooxidation reaction makes Lucifer yellow useful for electron microscopy. , 1982, Science.
[5] M D Duncan,et al. Scanning coherent anti-Stokes Raman microscope. , 1982, Optics letters.
[6] D. Purves,et al. Changes in the dendritic branching of adult mammalian neurones revealed by repeated imaging in situ , 1985, Nature.
[7] D. Purves,et al. Dynamic changes in the dendritic geometry of individual neurons visualized over periods of up to three months in the superior cervical ganglion of living mice , 1986, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[8] S. Brenner,et al. The structure of the nervous system of the nematode Caenorhabditis elegans. , 1986, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[9] N. Bobroff. Position measurement with a resolution and noise‐limited instrument , 1986 .
[10] D. Purves,et al. Visualization of neuromuscular junctions over periods of several months in living mice , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[11] W. Moerner,et al. Optical detection and spectroscopy of single molecules in a solid. , 1989, Physical review letters.
[12] W. P. Ambrose,et al. Fluorescence spectroscopy and spectral diffusion of single impurity molecules in a crystal , 1991, Nature.
[13] R. M. Siegel,et al. High-resolution optical imaging of functional brain architecture in the awake monkey. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[14] J. Schuman,et al. Optical coherence tomography. , 2000, Science.
[15] R. Harper,et al. Imaging of hippocampal neural activity in freely behaving animals , 1991, Behavioural Brain Research.
[16] S. Hell,et al. Properties of a 4Pi confocal fluorescence microscope , 1992 .
[17] D H Burns,et al. Orthogonal‐plane fluorescence optical sectioning: Three‐dimensional imaging of macroscopic biological specimens , 1993, Journal of microscopy.
[18] R. Harper,et al. Imaging of hippocampal and neocortical neural activity following intravenous cocaine administration in freely behaving cats , 1993, Neuroscience.
[19] Daniel L. Farkas,et al. Enhancement of axial resolution in fluorescence microscopy by standing-wave excitation , 1993, Nature.
[20] Robert J. Chichester,et al. Single Molecules Observed by Near-Field Scanning Optical Microscopy , 1993, Science.
[21] R. Tsien,et al. Fluorescence photooxidation with eosin: a method for high resolution immunolocalization and in situ hybridization detection for light and electron microscopy , 1994, The Journal of cell biology.
[22] R K Jain,et al. Vascular permeability and microcirculation of gliomas and mammary carcinomas transplanted in rat and mouse cranial windows. , 1994, Cancer research.
[23] S. Hell,et al. Breaking the diffraction resolution limit by stimulated emission: stimulated-emission-depletion fluorescence microscopy. , 1994, Optics letters.
[24] H. P. Kao,et al. Tracking of single fluorescent particles in three dimensions: use of cylindrical optics to encode particle position. , 1994, Biophysical journal.
[25] Steffen Lindek,et al. Fundamental reduction of the observation volume in far-field light microscopy by detection orthogonal to the illumination axis: confocal theta microscopy , 1994 .
[26] M. Chalfie,et al. Green fluorescent protein as a marker for gene expression. , 1994, Science.
[27] T. Poon,et al. Three-dimensional microscopy by optical scanning holography , 1995 .
[28] R. Jain,et al. Interaction of activated natural killer cells with normal and tumor vessels in cranial windows in mice. , 1995, Microvascular research.
[29] S. Hell,et al. Ground-state-depletion fluorscence microscopy: A concept for breaking the diffraction resolution limit , 1995 .
[30] R. M. Harper,et al. Hippocampal activity during transient respiratory events in the freely behaving cat , 1996, Neuroscience.
[31] B. Athey,et al. Real‐time two‐photon confocal microscopy using a femtosecond, amplified Ti:sapphire system , 1996, Journal of microscopy.
[32] B. Sakmann,et al. Ca2+ buffering and action potential-evoked Ca2+ signaling in dendrites of pyramidal neurons. , 1996, Biophysical journal.
[33] S W Hell,et al. Far‐field fluorescence microscopy with three‐dimensional resolution in the 100‐nm range , 1997, Journal of microscopy.
[34] J. Izatt,et al. In vivo bidirectional color Doppler flow imaging of picoliter blood volumes using optical coherence tomography. , 1997, Optics letters.
[35] M. V. van Gemert,et al. Noninvasive imaging of in vivo blood flow velocity using optical Doppler tomography. , 1997, Optics letters.
[36] Steffen Lindek,et al. Single‐lens theta microscopy — a new implementation of confocal theta microscopy , 1997 .
[37] P. Saggau,et al. High-speed, random-access fluorescence microscopy: I. High-resolution optical recording with voltage-sensitive dyes and ion indicators. , 1997, Biophysical journal.
[38] R Y Tsien,et al. Specific covalent labeling of recombinant protein molecules inside live cells. , 1998, Science.
[39] D. Kleinfeld,et al. Fluctuations and stimulus-induced changes in blood flow observed in individual capillaries in layers 2 through 4 of rat neocortex. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[40] Jürgen Köhler,et al. 3-Dimensional super-resolution by spectrally selective imaging , 1998 .
[41] S. Hell,et al. Multifocal multiphoton microscopy. , 1998, Optics letters.
[42] S. Weiss. Fluorescence spectroscopy of single biomolecules. , 1999, Science.
[43] Liqun Luo,et al. Mosaic Analysis with a Repressible Cell Marker for Studies of Gene Function in Neuronal Morphogenesis , 1999, Neuron.
[44] S. Hell,et al. Subdiffraction resolution in far-field fluorescence microscopy. , 1999, Optics letters.
[45] J. Fujimoto,et al. In vivo ultrahigh-resolution optical coherence tomography. , 1999, Optics letters.
[46] R. Webb,et al. Confocal microscope with large field and working distance. , 1999, Applied optics.
[47] Y. Sabharwal,et al. Slit-scanning confocal microendoscope for high-resolution in vivo imaging. , 1999, Applied optics.
[48] P. Galison. Refections on Image and Logic: A Material Culture of Microphysics , 1999, Perspectives on Science.
[49] M. Gustafsson,et al. Extended resolution fluorescence microscopy. , 1999, Current opinion in structural biology.
[50] Agard,et al. I5M: 3D widefield light microscopy with better than 100 nm axial resolution , 1999, Journal of microscopy.
[51] W. R. Wiley,et al. Three-Dimensional Vibrational Imaging by Coherent Anti-Stokes Raman Scattering , 1999 .
[52] J. Swoger,et al. Single-lens theta microscopy: Resolution, efficiency and working distance , 1999 .
[53] Y Fainman,et al. Adaptive control of a micromachined continuous-membrane deformable mirror for aberration compensation. , 1999, Applied optics.
[54] John White,et al. Long-term two-photon fluorescence imaging of mammalian embryos without compromising viability , 1999, Nature Biotechnology.
[55] D N Fittinghoff,et al. Time-decorrelated multifocal array for multiphoton microscopy and micromachining. , 2000, Optics letters.
[56] S. Hell,et al. Time multiplexing and parallelization in multifocal multiphoton microscopy , 2000, Journal of the Optical Society of America. A, Optics, image science, and vision.
[57] M. Fee,et al. Active Stabilization of Electrodes for Intracellular Recording in Awake Behaving Animals , 2000, Neuron.
[58] M. Gustafsson. Surpassing the lateral resolution limit by a factor of two using structured illumination microscopy , 2000, Journal of microscopy.
[59] G. Patterson,et al. Photobleaching in two-photon excitation microscopy. , 2000, Biophysical journal.
[60] G. Feng,et al. Imaging Neuronal Subsets in Transgenic Mice Expressing Multiple Spectral Variants of GFP , 2000, Neuron.
[61] G. Mourou,et al. Smart microscope: an adaptive optics learning system for aberration correction in multiphoton confocal microscopy. , 2000, Optics letters.
[62] S. Kawata,et al. Adaptive aberration correction in a two‐photon microscope , 2000, Journal of microscopy.
[63] S. Hell,et al. Fluorescence microscopy with diffraction resolution barrier broken by stimulated emission. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[64] J. Squier,et al. Widefield multiphoton and temporally decorrelated multifocal multiphoton microscopy. , 2000, Optics express.
[65] Andreas Volkmer,et al. An Epi-Detected Coherent Anti-Stokes Raman Scattering (E-CARS) Microscope with High Spectral Resolution and High Sensitivity , 2001 .
[66] T Nielsen,et al. High efficiency beam splitter for multifocal multiphoton microscopy , 2001, Journal of microscopy.
[67] G. Feng,et al. Asynchronous Synapse Elimination in Neonatal Motor Units Studies Using GFP Transgenic Mice , 2001, Neuron.
[68] Winfried Denk,et al. A Miniature Head-Mounted Neurotechnique Two-Photon Microscope: High-Resolution Brain Imaging in Freely Moving Animals , 2001 .
[69] T. Sejnowski,et al. Independent component analysis at the neural cocktail party , 2001, Trends in Neurosciences.
[70] Jerome Mertz,et al. Two-photon microscopy in brain tissue: parameters influencing the imaging depth , 2001, Journal of Neuroscience Methods.
[71] Christopher C. Pack,et al. Dynamic properties of neurons in cortical area MT in alert and anaesthetized macaque monkeys , 2001, Nature.
[72] S. Hell,et al. Time-multiplexed multifocal multiphoton microscope. , 2001, Optics letters.
[73] B Messerschmidt,et al. Endoscope-compatible confocal microscope using a gradient index-lens system , 2001 .
[74] E. Neher,et al. Highly nonlinear photodamage in two-photon fluorescence microscopy. , 2001, Biophysical journal.
[75] S. Shibata,et al. Gene expression: View of a mouse clock gene ticking , 2001, Nature.
[76] Andreas Volkmer,et al. Vibrational Imaging with High Sensitivity via Epidetected Coherent Anti-Stokes Raman Scattering Microscopy , 2001 .
[77] Tzu-Ming Liu,et al. Multimodal nonlinear spectral microscopy based on a femtosecond Cr:forsterite laser. , 2001, Optics letters.
[78] Jerome Mertz,et al. Ultra-deep two-photon fluorescence excitation in turbid media , 2001 .
[79] Chris J. Martin,et al. Optical imaging spectroscopy in the unanaesthetised rat , 2002, Journal of Neuroscience Methods.
[80] R. Heintzmann,et al. Saturated patterned excitation microscopy--a concept for optical resolution improvement. , 2002, Journal of the Optical Society of America. A, Optics, image science, and vision.
[81] W. E. Moerner,et al. A Dozen Years of Single-Molecule Spectroscopy in Physics, Chemistry, and Biophysics , 2002 .
[82] A. Grinvald,et al. Long-term voltage-sensitive dye imaging reveals cortical dynamics in behaving monkeys. , 2002, Journal of neurophysiology.
[83] J. Vane,et al. Optical Projection Tomography as a Tool for 3D Microscopy and Gene Expression Studies , 2002 .
[84] J. Sanes,et al. Pre-existing pathways promote precise projection patterns , 2002, Nature Neuroscience.
[85] Farooq Azam,et al. Thin laser light sheet microscope for microbial oceanography. , 2002, Optics express.
[86] I. Yaroslavsky,et al. Optical properties of selected native and coagulated human brain tissues in vitro in the visible and near infrared spectral range. , 2002, Physics in medicine and biology.
[87] O. Albert,et al. Adaptive correction of depth‐induced aberrations in multiphoton scanning microscopy using a deformable mirror , 2002, Journal of microscopy.
[88] William A Mohler,et al. Three-dimensional high-resolution second-harmonic generation imaging of endogenous structural proteins in biological tissues. , 2002, Biophysical journal.
[89] K. Svoboda,et al. Long-term in vivo imaging of experience-dependent synaptic plasticity in adult cortex , 2002, Nature.
[90] W. Webb,et al. Precise nanometer localization analysis for individual fluorescent probes. , 2002, Biophysical journal.
[91] E. Seidemann,et al. Dynamics of Depolarization and Hyperpolarization in the Frontal Cortex and Saccade Goal , 2002, Science.
[92] A. Fercher,et al. Submicrometer axial resolution optical coherence tomography. , 2002, Optics letters.
[93] Wei Zhou,et al. High-order photobleaching of green fluorescent protein inside live cells in two-photon excitation microscopy. , 2002, Biochemical and biophysical research communications.
[94] N. Kasthuri,et al. Long-term dendritic spine stability in the adult cortex , 2002, Nature.
[95] T. Wilson,et al. Adaptive aberration correction in a confocal microscope , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[96] M. Tanifuji,et al. Implementation of optical coherence tomography (OCT) in visualization of functional structures of cat visual cortex , 2002 .
[97] Thomas J Deerinck,et al. Multicolor and Electron Microscopic Imaging of Connexin Trafficking , 2002, Science.
[98] H. Kadono,et al. Novel functional imaging technique from brain surface with optical coherence tomography enabling visualization of depth resolved functional structure in vivo , 2003, Journal of Neuroscience Methods.
[99] A. Mehta,et al. Multiphoton endoscopy: optical design and application to in vivo imaging of mammalian hippocampal neurons , 2003, Conference on Lasers and Electro-Optics, 2003. CLEO '03..
[100] W. Denk,et al. Two-photon imaging to a depth of 1000 microm in living brains by use of a Ti:Al2O3 regenerative amplifier. , 2003, Optics letters.
[101] Jeff W Lichtman,et al. Synaptic dynamism measured over minutes to months: age-dependent decline in an autonomic ganglion , 2003, Nature Neuroscience.
[102] J. Lichtman,et al. In Vivo Time-Lapse Imaging of Synaptic Takeover Associated with Naturally Occurring Synapse Elimination , 2003, Neuron.
[103] S. Boppart,et al. Functional optical coherence tomography for detecting neural activity through scattering changes. , 2003, Optics letters.
[104] A. Grinvald,et al. Interaction of sensory responses with spontaneous depolarization in layer 2/3 barrel cortex , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[105] Thomas D. Wang,et al. Dual-axis confocal microscope for high-resolution in vivo imaging. , 2003, Optics letters.
[106] Teresa C. Chen,et al. In vivo dynamic human retinal blood flow imaging using ultra-high-speed spectral domain optical Doppler tomography , 2003 .
[107] C. Stosiek,et al. In vivo two-photon calcium imaging of neuronal networks , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[108] Brian Seed,et al. Dynamic imaging of collagen and its modulation in tumors in vivo using second-harmonic generation , 2003, Nature Medicine.
[109] Jerome Mertz,et al. Mechanisms of membrane potential sensing with second-harmonic generation microscopy. , 2003, Journal of biomedical optics.
[110] Paul R. Selvin,et al. Myosin V Walks Hand-Over-Hand: Single Fluorophore Imaging with 1.5-nm Localization , 2003, Science.
[111] R. Zawadzki,et al. Real-time assessment of retinal blood flow with ultrafast acquisition by color Doppler Fourier domain optical coherence tomography. , 2003, Optics express.
[112] D. Kleinfeld,et al. All-Optical Histology Using Ultrashort Laser Pulses , 2003, Neuron.
[113] J. Anthony Movshon,et al. Cortical responses to visual motion in alert and anesthetized monkeys , 2003, Nature Neuroscience.
[114] Harald Sattmann,et al. Histologic correlation of pig retina radial stratification with ultrahigh-resolution optical coherence tomography. , 2003, Investigative ophthalmology & visual science.
[115] Leslie M Loew,et al. Second-harmonic imaging microscopy for visualizing biomolecular arrays in cells, tissues and organisms , 2003, Nature Biotechnology.
[116] Rafael Yuste,et al. Second harmonic imaging of membrane potential of neurons with retinal. , 2004, Journal of biomedical optics.
[117] F. Del Bene,et al. Optical Sectioning Deep Inside Live Embryos by Selective Plane Illumination Microscopy , 2004, Science.
[118] A. Mehta,et al. In vivo mammalian brain imaging using one- and two-photon fluorescence microendoscopy. , 2004, Journal of neurophysiology.
[119] J. Sharpe. Optical projection tomography. , 2004, Annual review of biomedical engineering.
[120] Teresa C. Chen,et al. Ultrahigh-resolution high-speed retinal imaging using spectral-domain optical coherence tomography. , 2004, Optics express.
[121] J. Duker,et al. Ultrahigh-resolution, high-speed, Fourier domain optical coherence tomography and methods for dispersion compensation. , 2004, Optics express.
[122] Olav Solgaard,et al. Design and operation of a microfluidic sorter for Drosophila embryos , 2004 .
[123] Mark R. Segal,et al. Inclusion body formation reduces levels of mutant huntingtin and the risk of neuronal death , 2004, Nature.
[124] Angelika Unterhuber,et al. Ultrahigh resolution optical coherence tomography of the monkey fovea. Identification of retinal sublayers by correlation with semithin histology sections. , 2004, Experimental eye research.
[125] S. Ram,et al. Localization accuracy in single-molecule microscopy. , 2004, Biophysical journal.
[126] S. Ram,et al. Simultaneous imaging of different focal planes in fluorescence microscopy for the study of cellular dynamics in three dimensions , 2004, IEEE Transactions on NanoBioscience.
[127] H. Seung,et al. Noncontact measurement of nerve displacement during action potential with a dual-beam low-coherence interferometer. , 2004, Optics letters.
[128] Daniel A Dombeck,et al. Optical Recording of Action Potentials with Second-Harmonic Generation Microscopy , 2004, The Journal of Neuroscience.
[129] Raymond P. Molloy,et al. In vivo multiphoton microscopy of deep brain tissue. , 2004, Journal of neurophysiology.
[130] F. Helmchen,et al. Miniaturized two-photon microscope based on a flexible coherent fiber bundle and a gradient-index lens objective. , 2004, Optics letters.
[131] Jeff W. Lichtman,et al. Axon Branch Removal at Developing Synapses by Axosome Shedding , 2004, Neuron.
[132] Haw Yang,et al. Information bounds and optimal analysis of dynamic single molecule measurements. , 2004, Biophysical journal.
[133] Jaime Grutzendler,et al. Fibrillar amyloid deposition leads to local synaptic abnormalities and breakage of neuronal branches , 2004, Nature Neuroscience.
[134] H. Rylander Iii,et al. Detection of neural activity using phase-sensitive optical low-coherence reflectometry. , 2004, Optics express.
[135] Karl Georg Götz,et al. Visual control of locomotion in the walking fruitflyDrosophila , 1973, Journal of comparative physiology.
[136] P Georges,et al. Fluorescence-lifetime imaging with a multifocal two-photon microscope. , 2004, Optics letters.
[137] Hilmar Gugel,et al. Cooperative 4Pi excitation and detection yields sevenfold sharper optical sections in live-cell microscopy. , 2004, Biophysical journal.
[138] W Drexler,et al. Ultrahigh resolution Fourier domain optical coherence tomography. , 2004, Optics express.
[139] Christian Eggeling,et al. Breaking the diffraction barrier in fluorescence microscopy at low light intensities by using reversibly photoswitchable proteins. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[140] Riyi Shi,et al. Coherent anti-stokes Raman scattering imaging of axonal myelin in live spinal tissues. , 2005, Biophysical journal.
[141] Volker Westphal,et al. Nanoscale resolution in the focal plane of an optical microscope. , 2005, Physical review letters.
[142] Atsushi Miyawaki,et al. Innovations in the Imaging of Brain Functions using Fluorescent Proteins , 2005, Neuron.
[143] Mark Bates,et al. Short-range spectroscopic ruler based on a single-molecule optical switch. , 2005, Physical review letters.
[144] W. Gan,et al. Development of Long-Term Dendritic Spine Stability in Diverse Regions of Cerebral Cortex , 2005, Neuron.
[145] E. Cocker,et al. Fiber-optic fluorescence imaging , 2005, Nature Methods.
[146] Nathan C Shaner,et al. A guide to choosing fluorescent proteins , 2005, Nature Methods.
[147] N. Laing,et al. When contractile proteins go bad: the sarcomere and skeletal muscle disease , 2005, BioEssays : news and reviews in molecular, cellular and developmental biology.
[148] O. Garaschuk,et al. Cortical calcium waves in resting newborn mice , 2005, Nature Neuroscience.
[149] Y. Silberberg,et al. Improved depth resolution in video-rate line-scanning multiphoton microscopy using temporal focusing. , 2005, Optics letters.
[150] Leonardo Sacconi,et al. Optical recording of fast neuronal membrane potential transients in acute mammalian brain slices by second-harmonic generation microscopy. , 2005, Journal of neurophysiology.
[151] T. Nielsen,et al. Two-dimensional imaging without scanning by multifocal multiphoton microscopy. , 2005, Applied optics.
[152] David S. Greenberg,et al. Imaging input and output of neocortical networks in vivo. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[153] G. Shepherd,et al. Transient and Persistent Dendritic Spines in the Neocortex In Vivo , 2005, Neuron.
[154] Marc C. Johnson,et al. Visualization of retrovirus budding with correlated light and electron microscopy , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[155] C. Niell,et al. Functional Imaging Reveals Rapid Development of Visual Response Properties in the Zebrafish Tectum , 2005, Neuron.
[156] Thomas J Deerinck,et al. Correlated light and electron microscopic imaging of multiple endogenous proteins using Quantum dots , 2005, Nature Methods.
[157] W. Denk,et al. Deep tissue two-photon microscopy , 2005, Nature Methods.
[158] Yi Zuo,et al. Long-term sensory deprivation prevents dendritic spine loss in primary somatosensory cortex , 2005, Nature.
[159] Y. Silberberg,et al. Scanningless depth-resolved microscopy. , 2005, Optics express.
[160] L. Luo,et al. Mosaic Analysis with Double Markers in Mice , 2005, Cell.
[161] S. Wang,et al. In vivo calcium imaging of circuit activity in cerebellar cortex. , 2005, Journal of neurophysiology.
[162] P. Saggau,et al. Fast three-dimensional laser scanning scheme using acousto-optic deflectors. , 2005, Journal of biomedical optics.
[163] Jeff W Lichtman,et al. In vivo imaging of axonal degeneration and regeneration in the injured spinal cord , 2005, Nature Medicine.
[164] E. Cocker,et al. In vivo brain imaging using a portable 3.9 gram two-photon fluorescence microendoscope. , 2005, Optics letters.
[165] Warren R. Zipfel,et al. Simultaneous spatial and temporal focusing of femtosecond pulses , 2005 .
[166] P. T. Nguyen,et al. Dendritic Spine Abnormalities in Amyloid Precursor Protein Transgenic Mice Demonstrated by Gene Transfer and Intravital Multiphoton Microscopy , 2005, The Journal of Neuroscience.
[167] K. Svoboda,et al. Diverse Modes of Axon Elaboration in the Developing Neocortex , 2005, PLoS biology.
[168] M. Gustafsson. Nonlinear structured-illumination microscopy: wide-field fluorescence imaging with theoretically unlimited resolution. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[169] W. Gan,et al. A Model of Mini-Embolic Stroke Offers Measurements of the Neurovascular Unit Response in the Living Mouse , 2005, Stroke.
[170] Rustem F. Ismagilov,et al. Dynamics of Drosophila embryonic patterning network perturbed in space and time using microfluidics , 2005, Nature.
[171] J. George,et al. Rapid optical coherence tomography and recording functional scattering changes from activated frog retina. , 2005, Applied optics.
[172] William A Mohler,et al. Characterization of the myosin-based source for second-harmonic generation from muscle sarcomeres. , 2006, Biophysical journal.
[173] W. Denk,et al. Adaptive wavefront correction in two-photon microscopy using coherence-gated wavefront sensing , 2006, Proceedings of the National Academy of Sciences.
[174] J. Lippincott-Schwartz,et al. Imaging Intracellular Fluorescent Proteins at Nanometer Resolution , 2006, Science.
[175] Rafael Kurtz,et al. Application of multiline two-photon microscopy to functional in vivo imaging , 2006, Journal of Neuroscience Methods.
[176] E. Seidemann,et al. Optimal decoding of correlated neural population responses in the primate visual cortex , 2006, Nature Neuroscience.
[177] Chi‐Kuang Sun,et al. Multiphoton confocal microscopy using a femtosecond Cr:Forsterite laser , 2006 .
[178] R. Tsien,et al. The Fluorescent Toolbox for Assessing Protein Location and Function , 2006, Science.
[179] Karel Svoboda,et al. Experience-dependent and cell-type-specific spine growth in the neocortex , 2006, Nature.
[180] Norihiko Nishizawa,et al. Continuum generation in a novel photonic crystal fiber for ultrahigh resolution optical coherence tomography at 800 nm and 1300 nm. , 2006, Optics express.
[181] M. Kerschensteiner,et al. Neuroimaging: In vivo imaging of the diseased nervous system , 2006, Nature Reviews Neuroscience.
[182] G. Feng,et al. In vivo imaging of juxtaglomerular neuron turnover in the mouse olfactory bulb. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[183] M. Durst,et al. Simultaneous spatial and temporal focusing for axial scanning. , 2006, Optics express.
[184] Demetri Psaltis,et al. Optofluidic microscopy--a method for implementing a high resolution optical microscope on a chip. , 2006, Lab on a chip.
[185] Michael D. Mason,et al. Ultra-high resolution imaging by fluorescence photoactivation localization microscopy. , 2006, Biophysical journal.
[186] Jerome Mertz,et al. Membrane potential detection with second-harmonic generation and two-photon excited fluorescence: A theoretical comparison , 2006 .
[187] Karel Svoboda,et al. Rapid Redistribution of Synaptic PSD-95 in the Neocortex In Vivo , 2006, PLoS biology.
[188] E. Yaksi,et al. Reconstruction of firing rate changes across neuronal populations by temporally deconvolved Ca2+ imaging , 2006, Nature Methods.
[189] Thorsten Lang,et al. The SNARE motif is essential for the formation of syntaxin clusters in the plasma membrane. , 2006, Biophysical journal.
[190] Christian Eggeling,et al. Macromolecular-scale resolution in biological fluorescence microscopy. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[191] Alan Gelperin,et al. Sparse Odor Coding in Awake Behaving Mice , 2006, The Journal of Neuroscience.
[192] Michael J Rust,et al. Sub-diffraction-limit imaging by stochastic optical reconstruction microscopy (STORM) , 2006, Nature Methods.
[193] R. Tsien,et al. Golgi twins in late mitosis revealed by genetically encoded tags for live cell imaging and correlated electron microscopy , 2006, Proceedings of the National Academy of Sciences.
[194] Sooyoung Chung,et al. Highly ordered arrangement of single neurons in orientation pinwheels , 2006, Nature.
[195] Rafael Yuste,et al. Imaging membrane potential in dendritic spines. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[196] Stephan J. Sigrist,et al. Bruchpilot Promotes Active Zone Assembly, Ca2+ Channel Clustering, and Vesicle Release , 2006, Science.
[197] S. Ram,et al. Beyond Rayleigh's criterion: a resolution measure with application to single-molecule microscopy. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[198] G. Feng,et al. Dynamic Remodeling of Dendritic Arbors in GABAergic Interneurons of Adult Visual Cortex , 2005, PLoS biology.
[199] Roberto Araya,et al. The spine neck filters membrane potentials , 2006, Proceedings of the National Academy of Sciences.
[200] C. Petersen,et al. Visualizing the Cortical Representation of Whisker Touch: Voltage-Sensitive Dye Imaging in Freely Moving Mice , 2006, Neuron.
[201] S. Hell,et al. STED microscopy reveals that synaptotagmin remains clustered after synaptic vesicle exocytosis , 2006, Nature.
[202] M. Levoy,et al. Light field microscopy , 2006, SIGGRAPH 2006.
[203] L Sacconi,et al. Overcoming photodamage in second-harmonic generation microscopy: real-time optical recording of neuronal action potentials. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[204] Thomas M Bartol,et al. Hybrid reflecting objectives for functional multiphoton microscopy in turbid media. , 2006, Optics letters.
[205] K. Svoboda,et al. Cell Type-Specific Structural Plasticity of Axonal Branches and Boutons in the Adult Neocortex , 2006, Neuron.
[206] Mark J Schnitzer,et al. In Vivo Imaging of Mammalian Cochlear Blood Flow Using Fluorescence Microendoscopy , 2006, Otology & neurotology : official publication of the American Otological Society, American Neurotology Society [and] European Academy of Otology and Neurotology.
[207] J. Duker,et al. In vivo measurement of retinal physiology with high-speed ultrahigh-resolution optical coherence tomography. , 2006, Optics letters.
[208] Shimon Weiss,et al. Using photon statistics to boost microscopy resolution. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[209] Olav Solgaard,et al. Fast-scanning two-photon fluorescence imaging based on a microelectromechanical systems two- dimensional scanning mirror. , 2006, Optics letters.
[210] G. Feng,et al. Next-Generation Optical Technologies for Illuminating Genetically Targeted Brain Circuits , 2006, The Journal of Neuroscience.
[211] J. Taylor,et al. Optophysiology: depth-resolved probing of retinal physiology with functional ultrahigh-resolution optical coherence tomography. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[212] K. Svoboda,et al. Spine growth precedes synapse formation in the adult neocortex in vivo , 2006, Nature Neuroscience.
[213] J G Fujimoto,et al. Depth-resolved imaging of functional activation in the rat cerebral cortex using optical coherence tomography. , 2006, Optics letters.
[214] John E. W. Mayhew,et al. Investigating neural–hemodynamic coupling and the hemodynamic response function in the awake rat , 2006, NeuroImage.
[215] Shaoqun Zeng,et al. Simultaneous compensation for spatial and temporal dispersion of acousto-optical deflectors for two-dimensional scanning with a single prism. , 2006, Optics letters.
[216] J. R. Newton,et al. Remodeling of Synaptic Structure in Sensory Cortical Areas In Vivo , 2006, The Journal of Neuroscience.
[217] Thorsten Lang,et al. Anatomy and Dynamics of a Supramolecular Membrane Protein Cluster , 2007, Science.
[218] Amiram Grinvald,et al. Independent component analysis of high-resolution imaging data identifies distinct functional domains , 2007, NeuroImage.
[219] Mark Bates,et al. Multicolor Super-Resolution Imaging with Photo-Switchable Fluorescent Probes , 2007, Science.
[220] L. Fu,et al. Fibre‐optic nonlinear optical microscopy and endoscopy , 2007, Journal of microscopy.
[221] Christian Eggeling,et al. Fluorescence Nanoscopy in Whole Cells by Asynchronous Localization of Photoswitching Emitters , 2007, Biophysical journal.
[222] Rosa Cossart,et al. A Parturition-Associated Nonsynaptic Coherent Activity Pattern in the Developing Hippocampus , 2007, Neuron.
[223] R. Shi,et al. Coherent anti‐stokes Raman scattering imaging of myelin degradation reveals a calcium‐dependent pathway in lyso‐PtdCho‐induced demyelination , 2007, Journal of neuroscience research.
[224] James Sharpe,et al. Three-Dimensional Imaging of Drosophila melanogaster , 2007, PloS one.
[225] Jochen Herms,et al. Dendritic Pathology in Prion Disease Starts at the Synaptic Spine , 2007, The Journal of Neuroscience.
[226] Karsten Bahlmann,et al. Multifocal multiphoton microscopy (MMM) at a frame rate beyond 600 Hz. , 2007, Optics express.
[227] Adi Mizrahi,et al. Dendritic development and plasticity of adult-born neurons in the mouse olfactory bulb , 2007, Nature Neuroscience.
[228] R. W. Draft,et al. Transgenic strategies for combinatorial expression of fluorescent proteins in the nervous system , 2007, Nature.
[229] T. Deerinck,et al. Markers for correlated light and electron microscopy. , 2007, Methods in cell biology.
[230] C. Bertozzi,et al. Redirecting lipoic acid ligase for cell surface protein labeling with small-molecule probes , 2007, Nature Biotechnology.
[231] Ruikang K. Wang,et al. Three dimensional optical angiography. , 2007, Optics express.
[232] Hidde L Ploegh,et al. Sortagging: a versatile method for protein labeling. , 2007, Nature chemical biology.
[233] Rosa Cossart,et al. Synaptic Kainate Receptors Tune Oriens-Lacunosum Moleculare Interneurons to Operate at Theta Frequency , 2007, The Journal of Neuroscience.
[234] Rafael Yuste,et al. Second harmonic generation in neurons: electro-optic mechanism of membrane potential sensitivity. , 2007, Biophysical journal.
[235] A. Schierloh,et al. Ultramicroscopy: three-dimensional visualization of neuronal networks in the whole mouse brain , 2007, Nature Methods.
[236] J. Apfeld,et al. A microfabricated array of clamps for immobilizing and imaging C. elegans. , 2007, Lab on a chip.
[237] R. M. Siegel,et al. Attentional modulation of receptive field structure in area 7a of the behaving monkey. , 2007, Cerebral cortex.
[238] Ji‐Xin Cheng,et al. Increasing the imaging depth of coherent anti-Stokes Raman scattering microscopy with a miniature microscope objective. , 2007, Optics letters.
[239] X. Xie,et al. Adaptive optics for enhanced signal in CARS microscopy. , 2007, Optics express.
[240] F. Haiss,et al. Spatiotemporal Dynamics of Cortical Sensorimotor Integration in Behaving Mice , 2007, Neuron.
[241] Cori Bargmann,et al. Microfluidics for in vivo imaging of neuronal and behavioral activity in Caenorhabditis elegans , 2007, Nature Methods.
[242] Stephen T. C. Wong,et al. Chemically-selective imaging of brain structures with CARS microscopy. , 2007, Optics express.
[243] Heinrich Spiecker,et al. The power of single and multibeam two-photon microscopy for high-resolution and high-speed deep tissue and intravital imaging. , 2007, Biophysical journal.
[244] S W Hell,et al. Photochromic rhodamines provide nanoscopy with optical sectioning. , 2007, Angewandte Chemie.
[245] A. Zvyagin. Multiphoton endoscopy , 2007 .
[246] D. Tank,et al. Imaging Large-Scale Neural Activity with Cellular Resolution in Awake, Mobile Mice , 2007, Neuron.
[247] Sergio Fantini,et al. Multifocal multiphoton microscopy based on multianode photomultiplier tubes. , 2007, Optics express.
[248] S. Hell,et al. STED microscopy with continuous wave beams , 2007, Nature Methods.
[249] W. Denk,et al. Miniature random-access fiber scanner for in vivo multiphoton imaging , 2007 .
[250] Stefan Gantelius,et al. Intraoperative muscle measurements reveal a relationship between contracture formation and muscle remodeling , 2007, Muscle & nerve.
[251] Taner Akkin,et al. Depth-resolved measurement of transient structural changes during action potential propagation. , 2007, Biophysical journal.
[252] F. Helmchen,et al. Imaging cellular network dynamics in three dimensions using fast 3D laser scanning , 2007, Nature Methods.
[253] W. Gan,et al. Choice of cranial window type for in vivo imaging affects dendritic spine turnover in the cortex , 2007, Nature Neuroscience.
[254] Michael W. Davidson,et al. Dual-color superresolution imaging of genetically expressed probes within individual adhesion complexes , 2007, Proceedings of the National Academy of Sciences.
[255] Milena Raffi,et al. A Functional Architecture of Optic Flow in the Inferior Parietal Lobule of the Behaving Monkey , 2007, PloS one.
[256] R. Reid,et al. Homeostatic Regulation of Eye-Specific Responses in Visual Cortex during Ocular Dominance Plasticity , 2007, Neuron.
[257] Mark H. Ellisman,et al. Correlated three-dimensional light and electron microscopy reveals transformation of mitochondria during apoptosis , 2007, Nature Cell Biology.
[258] T. Grabowski. Anti-Aβ antibody treatment promotes the rapid recovery of amyloid-associated neuritic dystrophy in PDAPP transgenic mice , 2007 .
[259] David J Heeger,et al. Rapid and precise retinotopic mapping of the visual cortex obtained by voltage-sensitive dye imaging in the behaving monkey. , 2007, Journal of neurophysiology.
[260] F. Helmchen,et al. In vivo calcium imaging of neural network function. , 2007, Physiology.
[261] Mehmet Fatih Yanik,et al. Microfluidic system for on-chip high-throughput whole-animal sorting and screening at subcellular resolution , 2007, Proceedings of the National Academy of Sciences.
[262] K. Deisseroth,et al. Circuit-breakers: optical technologies for probing neural signals and systems , 2007, Nature Reviews Neuroscience.
[263] S. Hell,et al. Wide‐field subdiffraction RESOLFT microscopy using fluorescent protein photoswitching , 2007, Microscopy research and technique.
[264] S. Hell,et al. Nanoscale organization of nicotinic acetylcholine receptors revealed by stimulated emission depletion microscopy , 2007, Neuroscience.
[265] S. Hell,et al. Olfactory neurons expressing transient receptor potential channel M5 (TRPM5) are involved in sensing semiochemicals , 2007, Proceedings of the National Academy of Sciences.
[266] Mark Ellisman,et al. Synapse formation on neurons born in the adult hippocampus , 2007, Nature Neuroscience.
[267] Christian Eggeling,et al. Major signal increase in fluorescence microscopy through dark-state relaxation , 2007, Nature Methods.
[268] Chris Xu,et al. Simultaneous Spatial and Temporal Focusing in Nonlinear Microscopy , 2007 .
[269] Stephen J. Smith,et al. Array Tomography: A New Tool for Imaging the Molecular Architecture and Ultrastructure of Neural Circuits , 2007, Neuron.
[270] Martin Tjahjono,et al. Remote Monitoring of a Multi-Component Liquid-Phase Organic Synthesis by Infrared Emission Spectroscopy: The Recovery of Pure Component Emissivities by Band-Target Entropy Minimization , 2007, Applied spectroscopy.
[271] Uma Maheswari Rajagopalan,et al. Functional optical coherence tomography reveals localized layer-specific activations in cat primary visual cortex in vivo. , 2007, Optics letters.
[272] Peter Dedecker,et al. Subdiffraction imaging through the selective donut-mode depletion of thermally stable photoswitchable fluorophores: numerical analysis and application to the fluorescent protein Dronpa. , 2007, Journal of the American Chemical Society.
[273] A. Egner,et al. Two-color far-field fluorescence nanoscopy based on photoswitchable emitters , 2007 .
[274] Andreas Zumbusch,et al. Coherent anti-Stokes Raman scattering microscopy , 1999 .
[275] A Portable Two-photon Fluorescence Microendoscope Based on a Two-dimensional Scanning Mirror , 2007, 2007 IEEE/LEOS International Conference on Optical MEMS and Nanophotonics.
[276] Xiaojing J Zhang,et al. Microfluidic self-assembly of live Drosophila embryos for versatile high-throughput analysis of embryonic morphogenesis , 2007, Biomedical microdevices.
[277] Masanori Murayama,et al. Fiberoptic system for recording dendritic calcium signals in layer 5 neocortical pyramidal cells in freely moving rats. , 2007, Journal of neurophysiology.
[278] W E Moerner,et al. New directions in single-molecule imaging and analysis , 2007, Proceedings of the National Academy of Sciences.
[279] Stephen J Smith,et al. Circuit reconstruction tools today , 2007, Current Opinion in Neurobiology.
[280] S. Hell,et al. Two-color far-field fluorescence nanoscopy. , 2007, Biophysical journal.
[281] K. Fujita. [Two-photon laser scanning fluorescence microscopy]. , 2007, Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme.
[282] T. Sejnowski,et al. A Compact Multiphoton 3D Imaging System for Recording Fast Neuronal Activity , 2007, PloS one.
[283] Ruikang K. Wang,et al. Mapping of cerebro-vascular blood perfusion in mice with skin and skull intact by Optical Micro-AngioGraphy at 1.3 mum wavelength. , 2007, Optics express.
[284] Christian Eggeling,et al. Breaking the diffraction barrier in fluorescence microscopy by optical shelving. , 2007, Physical review letters.
[285] Leonardo Sacconi,et al. Optical recording of electrical activity in intact neuronal networks with random access second-harmonic generation microscopy. , 2008, Optics express.
[286] Scott L. Delp,et al. Minimally invasive high-speed imaging of sarcomere contractile dynamics in mice and humans , 2008, Nature.
[287] Norio Matsuki,et al. Fast and accurate detection of action potentials from somatic calcium fluctuations. , 2008, Journal of neurophysiology.
[288] Christian Eggeling,et al. Photoswitchable fluorescent proteins enable monochromatic multilabel imaging and dual color fluorescence nanoscopy , 2008, Nature Biotechnology.
[289] G. Knott,et al. Dendritic spine plasticity—Current understanding from in vivo studies , 2008, Brain Research Reviews.
[290] J. Lippincott-Schwartz,et al. High-density mapping of single-molecule trajectories with photoactivated localization microscopy , 2008, Nature Methods.
[291] S. Hell,et al. Fluorescence nanoscopy by ground-state depletion and single-molecule return , 2008, Nature Methods.
[292] S. Hell,et al. Nanoscale separation of molecular species based on their rotational mobility. , 2008, Optics express.
[293] Ji-Xin Cheng,et al. Ex vivo and in vivo imaging of myelin fibers in mouse brain by coherent anti-Stokes Raman scattering microscopy. , 2008, Optics express.
[294] Jianping Su,et al. Miniaturized probe based on a microelectromechanical system mirror for multiphoton microscopy. , 2008, Optics letters.
[295] W. Piyawattanametha,et al. Miniaturized probe for femtosecond laser microsurgery and two-photon imaging. , 2008, Optics express.
[296] Lars Meyer,et al. Dual-color STED microscopy at 30-nm focal-plane resolution. , 2008, Small.
[297] John W. Sedat,et al. A Presynaptic Giant Ankyrin Stabilizes the NMJ through Regulation of Presynaptic Microtubules and Transsynaptic Cell Adhesion , 2008, Neuron.
[298] Kristen E. Severi,et al. Control of visually guided behavior by distinct populations of spinal projection neurons , 2008, Nature Neuroscience.
[299] Samuel S-H Wang,et al. Identification and clustering of event patterns from in vivo multiphoton optical recordings of neuronal ensembles. , 2008, Journal of neurophysiology.
[300] Mortazavi,et al. Supporting Online Material Materials and Methods Figs. S1 to S13 Tables S1 to S3 References Label-free Biomedical Imaging with High Sensitivity by Stimulated Raman Scattering Microscopy , 2022 .
[301] James Sharpe,et al. In vitro whole-organ imaging: 4D quantification of growing mouse limb buds , 2008, Nature Methods.
[302] M. Gustafsson,et al. S: Widefield Light Microscopy with 100-nm-scale Resolution in Three Dimensions , 2007 .
[303] T. Holy,et al. Fast Three-Dimensional Fluorescence Imaging of Activity in Neural Populations by Objective-Coupled Planar Illumination Microscopy , 2008, Neuron.
[304] David S. Greenberg,et al. Population imaging of ongoing neuronal activity in the visual cortex of awake rats , 2008, Nature Neuroscience.
[305] W. E. Moerner,et al. A photoactivatable push-pull fluorophore for single-molecule imaging in live cells. , 2008, Journal of the American Chemical Society.
[306] Daniel T. Chiu,et al. Single-synapse ablation and long-term imaging in live C. elegans , 2008, Journal of Neuroscience Methods.
[307] S. Hell,et al. STED microscopy with a supercontinuum laser source. , 2008, Optics express.
[308] W. Moerner,et al. Cy3-Cy5 covalent heterodimers for single-molecule photoswitching. , 2008, The journal of physical chemistry. B.
[309] Yong Zhang,et al. 3D Axon Structure Extraction and Analysis in Confocal Fluorescence Microscopy Images , 2008, Neural Computation.
[310] Laurie D. Burns,et al. High-speed, miniaturized fluorescence microscopy in freely moving mice , 2008, Nature Methods.
[311] E. Seidemann,et al. Optimal temporal decoding of neural population responses in a reaction-time visual detection task. , 2008, Journal of neurophysiology.
[312] F. Helmchen,et al. Ultra-compact fiber-optic two-photon microscope for functional fluorescence imaging in vivo. , 2008, Optics express.
[313] Valentina Emiliani,et al. Patterned two-photon illumination by spatiotemporal shaping of ultrashort pulses. , 2008, Optics express.
[314] Brendon O. Watson,et al. SLM Microscopy: Scanless Two-Photon Imaging and Photostimulation with Spatial Light Modulators , 2008, Frontiers in neural circuits.
[315] Alexander Egner,et al. Isotropic 3D Nanoscopy based on single emitter switching. , 2008, Optics express.
[316] Demetri Psaltis,et al. Lensless high-resolution on-chip optofluidic microscopes for Caenorhabditis elegans and cell imaging , 2008, Proceedings of the National Academy of Sciences.
[317] M. Gustafsson,et al. Subdiffraction Multicolor Imaging of the Nuclear Periphery with 3D Structured Illumination Microscopy , 2008, Science.
[318] M. Gustafsson,et al. Three-dimensional resolution doubling in wide-field fluorescence microscopy by structured illumination. , 2008, Biophysical journal.
[319] R. Piestun,et al. Three dimensional tracking of fluorescent microparticles using a photon-limited double-helix response system. , 2008, Optics express.
[320] Mark Ellisman,et al. Stable in vivo imaging of densely populated glia, axons and blood vessels in the mouse spinal cord using two-photon microscopy , 2008, Journal of Neuroscience Methods.
[321] X. Zhuang,et al. Whole cell 3D STORM reveals interactions between cellular structures with nanometer-scale resolution , 2008, Nature Methods.
[322] T. Murphy,et al. In Vivo Calcium Imaging Reveals Functional Rewiring of Single Somatosensory Neurons after Stroke , 2008, The Journal of Neuroscience.
[323] William A Mohler,et al. Measurement of muscle disease by quantitative second-harmonic generation imaging. , 2008, Journal of biomedical optics.
[324] Hanchuan Peng,et al. Bioimage informatics: a new area of engineering biology , 2008, Bioinform..
[325] S. Ram,et al. High accuracy 3D quantum dot tracking with multifocal plane microscopy for the study of fast intracellular dynamics in live cells. , 2008, Biophysical journal.
[326] Philipp J. Keller,et al. Reconstruction of Zebrafish Early Embryonic Development by Scanned Light Sheet Microscopy , 2008, Science.
[327] Wolfgang Drexler,et al. State-of-the-art retinal optical coherence tomography , 2008, Progress in Retinal and Eye Research.
[328] Matthew M. Crane,et al. Automated on-chip rapid microscopy, phenotyping and sorting of C. elegans , 2008, Nature Methods.
[329] Christian Eggeling,et al. Generation of monomeric reversibly switchable red fluorescent proteins for far-field fluorescence nanoscopy. , 2008, Biophysical journal.
[330] Dissecting a circuit for olfactory behaviour in Caenorhabditis elegans , 2008, Nature.
[331] Andreas Schönle,et al. Resolution scaling in STED microscopy. , 2008, Optics express.
[332] S. Hell,et al. Flotillin-Dependent Clustering of the Amyloid Precursor Protein Regulates Its Endocytosis and Amyloidogenic Processing in Neurons , 2008, The Journal of Neuroscience.
[333] Judith Klumperman,et al. Correlative light-electron microscopy (CLEM) combining live-cell imaging and immunolabeling of ultrathin cryosections , 2008, Nature Methods.
[334] L. Luo,et al. Timing Neurogenesis and Differentiation: Insights from Quantitative Clonal Analyses of Cerebellar Granule Cells , 2008, The Journal of Neuroscience.
[335] Travis J Gould,et al. Nanoscale imaging of molecular positions and anisotropies , 2008, Nature Methods.
[336] A. Neogi,et al. Electric field enhanced photoluminescence of CdTe quantum dots encapsulated in poly (N-isopropylacrylamide) nano-spheres. , 2008, Optics express.
[337] W. Gan,et al. Two‐photon imaging of dendritic spine development in the mouse cortex , 2008, Developmental neurobiology.
[338] D. Holtzman,et al. Rapid appearance and local toxicity of amyloid-β plaques in a mouse model of Alzheimer’s disease , 2008, Nature.
[339] Joseph Rosen,et al. Non-scanning motionless fluorescence three-dimensional holographic microscopy , 2008 .
[340] Keith J. Kelleher,et al. Three-dimensional random access multiphoton microscopy for functional imaging of neuronal activity , 2008, Nature Neuroscience.
[341] T. Bonhoeffer,et al. Live-cell imaging of dendritic spines by STED microscopy , 2008, Proceedings of the National Academy of Sciences.
[342] J. Livet,et al. A technicolour approach to the connectome , 2008, Nature Reviews Neuroscience.
[343] Adela Ben-Yakar,et al. Femtosecond laser nanoaxotomy lab-on-a-chip for in vivo nerve regeneration studies , 2008, Nature Methods.
[344] D. Holtzman,et al. Rapid Microglial Response Around Amyloid Pathology after Systemic Anti-Aβ Antibody Administration in PDAPP Mice , 2008, The Journal of Neuroscience.
[345] Robert J Zawadzki,et al. Ultrahigh-resolution optical coherence tomography with monochromatic and chromatic aberration correction. , 2008, Optics express.
[346] Wei-Chung Allen Lee,et al. A dynamic zone defines interneuron remodeling in the adult neocortex , 2008, Proceedings of the National Academy of Sciences.
[347] D. M Ay Erich,et al. Knife-edge scanning microscopy for imaging and reconstruction of three-dimensional anatomical structures of the mouse brain , 2008 .
[348] Mike Heilemann,et al. Subdiffraction-resolution fluorescence imaging of proteins in the mitochondrial inner membrane with photoswitchable fluorophores. , 2008, Journal of structural biology.
[349] Ehud Y. Isacoff,et al. Optical Switches for Remote and Noninvasive Control of Cell Signaling , 2008, Science.
[350] Paul Young,et al. Single-neuron labeling with inducible Cre-mediated knockout in transgenic mice , 2008, Nature Neuroscience.
[351] S. Hell,et al. Spherical nanosized focal spot unravels the interior of cells , 2008, Nature Methods.
[352] Mark Bates,et al. Three-Dimensional Super-Resolution Imaging by Stochastic Optical Reconstruction Microscopy , 2008, Science.
[353] E. Betzig,et al. Live-cell photoactivated localization microscopy of nanoscale adhesion dynamics , 2008, Nature Methods.
[354] Mehmet Fatih Yanik,et al. Sub-cellular precision on-chip small-animal immobilization, multi-photon imaging and femtosecond-laser manipulation. , 2008, Lab on a chip.
[355] Stefan W. Hell,et al. Supporting Online Material Materials and Methods Figs. S1 to S9 Tables S1 and S2 References Video-rate Far-field Optical Nanoscopy Dissects Synaptic Vesicle Movement , 2022 .
[356] J. Fujimoto,et al. Ultrahigh speed spectral / Fourier domain OCT ophthalmic imaging at 70,000 to 312,500 axial scans per second. , 2008, Optics express.
[357] Eric Betzig,et al. High-speed, low-photodamage nonlinear imaging using passive pulse splitters. , 2008, Nature methods.
[358] Germán Sumbre,et al. Entrained rhythmic activities of neuronal ensembles as perceptual memory of time interval , 2008, Nature.
[359] S. Hess,et al. Three-dimensional sub–100 nm resolution fluorescence microscopy of thick samples , 2008, Nature Methods.
[360] S. Hell,et al. Stimulated emission depletion (STED) nanoscopy of a fluorescent protein-labeled organelle inside a living cell , 2008, Proceedings of the National Academy of Sciences.
[361] Christoph Lutz,et al. Holographic photolysis of caged neurotransmitters , 2008, Nature Methods.
[362] B Messerschmidt,et al. Nonlinear optical endoscope based on a compact two axes piezo scanner and a miniature objective lens. , 2008, Optics express.
[363] M. Heilemann,et al. Subdiffraction-resolution fluorescence imaging with conventional fluorescent probes. , 2008, Angewandte Chemie.
[364] Michael A Thompson,et al. Super-resolution imaging in live Caulobacter crescentus cells using photoswitchable EYFP , 2008, Nature Methods.
[365] Jianyong Tang,et al. Three-Dimensional Super-resolution Imaging of Thick Biological Samples , 2009, Microscopy and Microanalysis.
[366] David S. Greenberg,et al. Automated correction of fast motion artifacts for two-photon imaging of awake animals , 2009, Journal of Neuroscience Methods.
[367] A. Nimmerjahn. Astrocytes going live: advances and challenges , 2009, The Journal of physiology.
[368] B. Averbeck,et al. The primate cortical auditory system and neural representation of conspecific vocalizations. , 2009, Annual review of neuroscience.
[369] T. Bonhoeffer,et al. Experience leaves a lasting structural trace in cortical circuits , 2008, Nature.
[370] Mochtar Pribadi,et al. Laminar and compartmental regulation of dendritic growth in mature cortex , 2009, Nature Neuroscience.
[371] C. Petersen. Genetic manipulation, whole‐cell recordings and functional imaging of the sensorimotor cortex of behaving mice , 2009, Acta physiologica.
[372] Christian Eggeling,et al. STED microscopy reveals crystal colour centres with nanometric resolution. , 2009 .
[373] W. Senn,et al. Dendritic encoding of sensory stimuli controlled by deep cortical interneurons , 2009, Nature.
[374] Anna Devor,et al. Optical coherence tomography (OCT) reveals depth-resolved dynamics during functional brain activation , 2009, Journal of Neuroscience Methods.
[375] J. Lippincott-Schwartz,et al. Interferometric fluorescent super-resolution microscopy resolves 3D cellular ultrastructure , 2009, Proceedings of the National Academy of Sciences.
[376] Suliana Manley,et al. Photoactivatable mCherry for high-resolution two-color fluorescence microscopy , 2009, Nature Methods.
[377] Samuel J. Lord,et al. Three-dimensional, single-molecule fluorescence imaging beyond the diffraction limit by using a double-helix point spread function , 2009, Proceedings of the National Academy of Sciences.
[378] K. Svoboda,et al. Long-term, high-resolution imaging in the mouse neocortex through a chronic cranial window , 2009, Nature Protocols.
[379] Kristin L. Hazelwood,et al. A bright and photostable photoconvertible fluorescent protein for fusion tags , 2009, Nature Methods.
[380] S. Hell,et al. Direct observation of the nanoscale dynamics of membrane lipids in a living cell , 2009, Nature.
[381] M. Levoy,et al. Recording and controlling the 4D light field in a microscope using microlens arrays , 2009, Journal of microscopy.
[382] Broome,et al. Literature cited , 1924, A Guide to the Carnivores of Central America.
[383] A. Nimmerjahn,et al. Motor Behavior Activates Bergmann Glial Networks , 2009, Neuron.
[384] J G Fujimoto,et al. In vivo functional imaging of intrinsic scattering changes in the human retina with high-speed ultrahigh resolution OCT. , 2009, Optics express.
[385] P. Fries. Neuronal gamma-band synchronization as a fundamental process in cortical computation. , 2009, Annual review of neuroscience.
[386] S. Hell. Far-field optical nanoscopy , 2010 .