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1.
Nat Methods ; 17(7): 741-748, 2020 07.
Artículo en Inglés | MEDLINE | ID: mdl-32483335

RESUMEN

Two-photon microscopy is widely used to investigate brain function across multiple spatial scales. However, measurements of neural activity are compromised by brain movement in behaving animals. Brain motion-induced artifacts are typically corrected using post hoc processing of two-dimensional images, but this approach is slow and does not correct for axial movements. Moreover, the deleterious effects of brain movement on high-speed imaging of small regions of interest and photostimulation cannot be corrected post hoc. To address this problem, we combined random-access three-dimensional (3D) laser scanning using an acousto-optic lens and rapid closed-loop field programmable gate array processing to track 3D brain movement and correct motion artifacts in real time at up to 1 kHz. Our recordings from synapses, dendrites and large neuronal populations in behaving mice and zebrafish demonstrate real-time movement-corrected 3D two-photon imaging with submicrometer precision.


Asunto(s)
Imagenología Tridimensional/métodos , Microscopía de Fluorescencia por Excitación Multifotónica/métodos , Animales , Femenino , Masculino , Ratones , Ratones Endogámicos C57BL , Movimiento , Pez Cebra
2.
Nat Methods ; 13(12): 1001-1004, 2016 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-27749836

RESUMEN

Understanding how neural circuits process information requires rapid measurements of activity from identified neurons distributed in 3D space. Here we describe an acousto-optic lens two-photon microscope that performs high-speed focusing and line scanning within a volume spanning hundreds of micrometers. We demonstrate its random-access functionality by selectively imaging cerebellar interneurons sparsely distributed in 3D space and by simultaneously recording from the soma, proximal and distal dendrites of neocortical pyramidal cells in awake behaving mice.


Asunto(s)
Conducta Animal/fisiología , Imagenología Tridimensional/métodos , Microscopía de Fluorescencia por Excitación Multifotónica/métodos , Actividad Motora/fisiología , Neuronas/fisiología , Imagen de Colorante Sensible al Voltaje/métodos , Potenciales de Acción/fisiología , Animales , Corteza Cerebelosa/citología , Corteza Cerebelosa/fisiología , Dendritas/fisiología , Proteínas Fluorescentes Verdes/química , Proteínas Fluorescentes Verdes/genética , Interneuronas/fisiología , Ratones , Ratones Transgénicos , Técnicas de Placa-Clamp , Células Piramidales/fisiología , Corteza Visual/citología , Corteza Visual/fisiología
3.
Neurophotonics ; 9(Suppl 1): 013001, 2022 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-35493335

RESUMEN

Neurophotonics was launched in 2014 coinciding with the launch of the BRAIN Initiative focused on development of technologies for advancement of neuroscience. For the last seven years, Neurophotonics' agenda has been well aligned with this focus on neurotechnologies featuring new optical methods and tools applicable to brain studies. While the BRAIN Initiative 2.0 is pivoting towards applications of these novel tools in the quest to understand the brain, this status report reviews an extensive and diverse toolkit of novel methods to explore brain function that have emerged from the BRAIN Initiative and related large-scale efforts for measurement and manipulation of brain structure and function. Here, we focus on neurophotonic tools mostly applicable to animal studies. A companion report, scheduled to appear later this year, will cover diffuse optical imaging methods applicable to noninvasive human studies. For each domain, we outline the current state-of-the-art of the respective technologies, identify the areas where innovation is needed, and provide an outlook for the future directions.

4.
J Neurosci Methods ; 222: 69-81, 2014 Jan 30.
Artículo en Inglés | MEDLINE | ID: mdl-24200507

RESUMEN

BACKGROUND: Two-photon microscopy is widely used to study brain function, but conventional microscopes are too slow to capture the timing of neuronal signalling and imaging is restricted to one plane. Recent development of acousto-optic-deflector-based random access functional imaging has improved the temporal resolution, but the utility of these technologies for mapping 3D synaptic activity patterns and their performance at the excitation wavelengths required to image genetically encoded indicators have not been investigated. NEW METHOD: Here, we have used a compact acousto-optic lens (AOL) two-photon microscope to make high speed [Ca(2+)] measurements from spines and dendrites distributed in 3D with different excitation wavelengths (800-920 nm). RESULTS: We show simultaneous monitoring of activity from many synaptic inputs distributed over the 3D arborisation of a neuronal dendrite using both synthetic as well as genetically encoded indicators. We confirm the utility of AOL-based imaging for fast in vivo recordings by measuring, simultaneously, visually evoked responses in 100 neurons distributed over a 150 µm focal depth range. Moreover, we explore ways to improve the measurement of timing of neuronal activation by choosing specific regions within the cell soma. COMPARISON WITH EXISTING METHODS: These results establish that AOL-based 3D random access two-photon microscopy has a wider range of neuroscience applications than previously shown. CONCLUSIONS: Our findings show that the compact AOL microscope design has the speed, spatial resolution, sensitivity and wavelength flexibility to measure 3D patterns of synaptic and neuronal activity on individual trials.


Asunto(s)
Imagenología Tridimensional/instrumentación , Imagenología Tridimensional/métodos , Microscopía de Fluorescencia por Excitación Multifotónica , Neuronas/fisiología , Sinapsis/fisiología , Potenciales de Acción , Animales , Calcio/metabolismo , Corteza Cerebral/fisiología , Dendritas/fisiología , Espinas Dendríticas/fisiología , Electroporación , Técnicas In Vitro , Ratones , Ratones Endogámicos C57BL , Microscopía de Fluorescencia por Excitación Multifotónica/instrumentación , Microscopía de Fluorescencia por Excitación Multifotónica/métodos , Técnicas de Placa-Clamp , Células Piramidales/fisiología , Transmisión Sináptica/fisiología , Tiempo , Percepción Visual/fisiología , Imagen de Colorante Sensible al Voltaje/instrumentación , Imagen de Colorante Sensible al Voltaje/métodos
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