Cellular & Molecular Imaging

Light/fluorescence microscopy of cells & tissues, and electron/cryo-EM imaging of macromolecular structures — a metadata catalog with a durable link back to the source archive, not a hosted image gallery. These are primary research datasets (often multi-GB to multi-TB), so this platform never downloads or stores the underlying imaging data itself. Datasets already in either source archive are ingested via accession paste/CSV at /mirroring by a Continental Admin (no automated harvesting — neither source archive supports geography-filterable search); a dataset not yet in either archive can instead be submitted directly below by any node operator, for Continental Admin review. Either way, whoever submits an accession or a self-submitted dataset is the one asserting African origin — this platform does not verify it.

curl "https://<hub-domain>/api/v1/cellular-imaging"

BioImage Archive:S-BIAD546 · Kristian Franze (University of Cambridge) · Drosophila burlai

Live cell imaging movies and IHC data from Drosophila Neurons together with computer simulation results.

Fluorescence microscopy

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Drosophila Alms1 proteins regulate centriolar cartwheel assembly by enabling Plk4-Ana2 amplification

BioImage Archive:S-BIAD1481 · Veronique Morel (Centre National de la Recherche Scientifique) · Drosophila burlai

raw data of manuscript

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BioImage Archive:S-BIAD843 · Giulia Paci · Drosophila burlai

Individual 3D cell shapes of Drosophila Wing Disc

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Agrotoxin - Drosophila melanogaster screen

BioImage Archive:S-BIAD970 · Justin Crocker (European Molecular Biology Laboratory) · Drosophila burlai

A library of 1024 pesticides was screened at sublethal doses for effects on the behaviour of Drosophila third instar larvae.

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Drosophila SOP cells treated with RNAi

BioImage Archive:S-BIAD1473 · Vicente Jose Planelles Herrero (MRC Laboratory of Molecular Biology) · Drosophila burlai

Drosophila notum containing SOP cells (labelled with RFP-Pon). Stained for total tubulin and poly-glutamylated tubulin.

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BioImage Archive:S-BIAD283 · Mainak Bose (European Molecular Biology Laboratory (EMBL)) · Drosophila burlai

Asymmetric localization of oskar RNP granules to the oocyte posterior is crucial for abdominal patterning and germline formation in the Drosophila embryo. We show that oskar RNP granules in the oocyte are condensates with solid-like physical properties. Using purified oskar RNA and scaffold proteins Bruno and Hrp48, we confirm in vitro that oskar granules undergo a liquid-to-solid phase transition. Whereas the liquid phase allows RNA incorporation, the solid phase precludes incorporation of additional RNA while allowing RNA-dependent partitioning of client proteins. Genetic modification of scaffold granule proteins, or tethering the intrinsically disordered region of human Fused in Sarcoma (FUS) to oskar mRNA, allowed modulation of granule material properties in vivo. The resulting liquid-like properties impaired oskar localization and translation with severe consequences on embryonic development. Our study reflects how physiological phase transitions shape RNA-protein condensates to regulate localization and expression of a maternal RNA that instructs germline formation.

Fluorescence microscopy

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Data repository for "Curvature gradient drives polarized tissue flow in the Drosophila embryo"

BioImage Archive:S-BIAD602 · Emily Gehrels (Developmental Biology Institute of Marseille) · Drosophila burlai

Two photon microscopy time series and lightsheet microscopy z-stack and time series of early Drosophila embryogenesis during posterior midgut invagination.

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[Heterochronic scaling of neurogenesis for species-specific dosing of cortical excitatory subtypes] Yamauchi_et_al_source_data_EMBOJ-2026-123747-T

BioImage Archive:S-BIAD3170 · (University of Tokyo) · Anopheles funestus-like sensu Spillings et al. (2009)

Source data of Mouse and Rat cortical development comparison.

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An integrated anatomical, functional and evolutionary view of the Drosophila olfactory system

BioImage Archive:S-BIAD1758 · Jérôme Mermet (University of Lausanne) · Drosophila burlai

The Drosophila melanogaster olfactory system is one of the most intensively studied parts of the nervous system in any animal. Composed of ~50 independent olfactory neuron classes, with several associated hygrosensory and thermosensory pathways, it has been subject to diverse types of experimental analyses. However, synthesizing the available information is limited by the incomplete data and inconsistent nomenclature found in the literature. In this work, we first “complete” the peripheral sensory map through the identification of a previously uncharacterized antennal sensory neuron population expressing Or46aB, and the definition of an exceptional “hybrid” olfactory neuron class comprising functional Or and Ir receptors. Second, we survey developmental, anatomical, connectomic, functional and evolutionary studies to generate an integrated dataset and associated visualisations of these sensory neuron pathways, creating an unprecedented resource. Third, we illustrate the utility of the dataset to reveal relationships between different organizational properties of this sensory system, and the new questions these stimulate. Such examples emphasize the power of this resource to promote further understanding of the construction, function and evolution of these neural circuits.

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An integrated anatomical, functional and evolutionary view of the Drosophila olfactory system

BioImage Archive:S-BIAD1758 · Jérôme Mermet (University of Lausanne) · Drosophila pruinosa

The Drosophila melanogaster olfactory system is one of the most intensively studied parts of the nervous system in any animal. Composed of ~50 independent olfactory neuron classes, with several associated hygrosensory and thermosensory pathways, it has been subject to diverse types of experimental analyses. However, synthesizing the available information is limited by the incomplete data and inconsistent nomenclature found in the literature. In this work, we first “complete” the peripheral sensory map through the identification of a previously uncharacterized antennal sensory neuron population expressing Or46aB, and the definition of an exceptional “hybrid” olfactory neuron class comprising functional Or and Ir receptors. Second, we survey developmental, anatomical, connectomic, functional and evolutionary studies to generate an integrated dataset and associated visualisations of these sensory neuron pathways, creating an unprecedented resource. Third, we illustrate the utility of the dataset to reveal relationships between different organizational properties of this sensory system, and the new questions these stimulate. Such examples emphasize the power of this resource to promote further understanding of the construction, function and evolution of these neural circuits.

View on source archive ↗

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