16 research outputs found

    All-optical interrogation of neural circuits in behaving mice

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    Recent advances combining two-photon calcium imaging and two-photon optogenetics with computer-generated holography now allow us to read and write the activity of large populations of neurons in vivo at cellular resolution and with high temporal resolution. Such 'all-optical' techniques enable experimenters to probe the effects of functionally defined neurons on neural circuit function and behavioral output with new levels of precision. This greatly increases flexibility, resolution, targeting specificity and throughput compared with alternative approaches based on electrophysiology and/or one-photon optogenetics and can interrogate larger and more densely labeled populations of neurons than current voltage imaging-based implementations. This protocol describes the experimental workflow for all-optical interrogation experiments in awake, behaving head-fixed mice. We describe modular procedures for the setup and calibration of an all-optical system (~3 h), the preparation of an indicator and opsin-expressing and task-performing animal (~3-6 weeks), the characterization of functional and photostimulation responses (~2 h per field of view) and the design and implementation of an all-optical experiment (achievable within the timescale of a normal behavioral experiment; ~3-5 h per field of view). We discuss optimizations for efficiently selecting and targeting neuronal ensembles for photostimulation sequences, as well as generating photostimulation response maps from the imaging data that can be used to examine the impact of photostimulation on the local circuit. We demonstrate the utility of this strategy in three brain areas by using different experimental setups. This approach can in principle be adapted to any brain area to probe functional connectivity in neural circuits and investigate the relationship between neural circuit activity and behavior

    Closed-loop all-optical interrogation of neural circuits in vivo

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    Understanding the causal relationship between neural activity and behavior requires the ability to perform rapid and targeted interventions in ongoing activity. Here we describe a closed-loop all-optical strategy for dynamically controlling neuronal activity patterns in awake mice. We rapidly tailored and delivered two-photon optogenetic stimulation based on online readout of activity using simultaneous two-photon imaging, thus enabling the manipulation of neural circuit activity ‘on the fly’ during behavior

    B-cell anergy: from transgenic models to naturally occurring anergic B cells?

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    Anergy, a condition in which cells persist in the periphery but are unresponsive to antigen, is responsible for silencing many self-reactive B cells. Loss of anergy is known to contribute to the development of autoimmune diseases, including systemic lupus erythematosus and type 1 diabetes. Multiple transgenic mouse models have enabled the dissection of mechanisms that underlie anergy, and recently, anergic B cells have been identified in the periphery of wild-type mice. Heterogeneity of mechanistic concepts developed using model systems has complicated our understanding of anergy and its biological features. In this Review, we compare and contrast the salient features of anergic B cells with a view to developing unifying mechanistic hypotheses that explain their lifestyles

    Thoughts and spirits by wireless: imagining and building psychic telegraphs in America and Britain, circa 1900-1930

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    This is the author accepted manuscript. The final version is available from Taylor & Francis via the DOI in this record.This paper revises current understandings of the connections between electrical and psychic forms of communication in the early twentieth century. It builds on and moves beyond scholarly studies that explore the metaphorical and analogical uses of electrical communication in understanding telepathy, spiritualism and other psychic phenomena. I argue that in American and British cultures of wireless telegraphy, electrical experimentation, psychical research and spiritualism, there were sincere attempts to extend electrical-psychic analogies into technological thinking and realisation. Inspired by debates about telepathy, brain waves and other psychic effects, members of these cultures imagined and constructed electrical communication technologies that would address a range of psychic puzzles. Although the technological solutions to psychic puzzles ultimately proved inconclusive, they provide historians with striking insights into the role of ‘irrational’ topics in shaping imagined and actual technological development

    Thoughts and spirits by wireless: imagining and building psychic telegraphs in America and Britain, circa 1900–1930

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    Probing particle physics with IceCube

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    Regulation of expression and functional activity of G-protein-coupled receptors. Alterations of these processes in diseases

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