<p>(A) Diagram showing an embryo (left) and a cross-section view of the ventral nerve cord (VNC, right). The red box indicates an example of a region of interest (ROI) comprising the VNC and excluding the epidermis; any ROI of choice can be used. (B) Characteristic embryonic VNCs labelled with the mitotic marker pH3 and the glial marker Repo. (C) Higher magnification views of details from specimens in (B) to show the properties of the images. (D) Interactive window to enable users to change the parameters to apply the programme to other markers or sample types.</p
II. Embryos were imaged for 20 hours and still pictures are shown at intervals of 2.5 hours. (D, E, ...
360°-view of a single ventrally positioned astrocyte (alrm>MCFO) clone at 0 h after larval hatching....
<p>Schematic Venn diagram illustrating different possible regions considered for a detected region a...
(A) Schematics of the embryonic CNS along different axes with the 5 glial classes indicated. Cortex ...
(A) UMAP of the 11 embryonic glial clusters labelled with both the cluster number (left) and our ann...
(A) Schematic of the cross-section of the embryonic VNC showing the different astrocyte positions an...
The Drosophila embryonic ventral nerve cord (VNC) is a powerful model system for addressing the basi...
<p>(A) A Drosophila embryonic VNC. The Region Of Interest (ROI) box in red indicates the areas analy...
For each experimental condition, 23 to 48 sections from 2 to 3 electroporated embryos were analyzed ...
(A) 3D representation of cell identity in 8C, 16C and 32C-stage embryos adapted from cytological tra...
<p>(A) Morphogenetic transformation of the rotationally symmetric spiralian embryo to a dorsoventral...
Understanding the ongoing signaling between neurons and glial cells requires a detailed analysis of ...
The embryonic spinal cord consists of cycling neural progenitor cells that give rise to a large perc...
(A) Lateral view of the VNC at 0 h after larval hatching showing channel-associated perineurial glia...
<p>Epidermal and neural fates are indicated in the right halves by yellow and pink circles, respecti...
II. Embryos were imaged for 20 hours and still pictures are shown at intervals of 2.5 hours. (D, E, ...
360°-view of a single ventrally positioned astrocyte (alrm>MCFO) clone at 0 h after larval hatching....
<p>Schematic Venn diagram illustrating different possible regions considered for a detected region a...
(A) Schematics of the embryonic CNS along different axes with the 5 glial classes indicated. Cortex ...
(A) UMAP of the 11 embryonic glial clusters labelled with both the cluster number (left) and our ann...
(A) Schematic of the cross-section of the embryonic VNC showing the different astrocyte positions an...
The Drosophila embryonic ventral nerve cord (VNC) is a powerful model system for addressing the basi...
<p>(A) A Drosophila embryonic VNC. The Region Of Interest (ROI) box in red indicates the areas analy...
For each experimental condition, 23 to 48 sections from 2 to 3 electroporated embryos were analyzed ...
(A) 3D representation of cell identity in 8C, 16C and 32C-stage embryos adapted from cytological tra...
<p>(A) Morphogenetic transformation of the rotationally symmetric spiralian embryo to a dorsoventral...
Understanding the ongoing signaling between neurons and glial cells requires a detailed analysis of ...
The embryonic spinal cord consists of cycling neural progenitor cells that give rise to a large perc...
(A) Lateral view of the VNC at 0 h after larval hatching showing channel-associated perineurial glia...
<p>Epidermal and neural fates are indicated in the right halves by yellow and pink circles, respecti...
II. Embryos were imaged for 20 hours and still pictures are shown at intervals of 2.5 hours. (D, E, ...
360°-view of a single ventrally positioned astrocyte (alrm>MCFO) clone at 0 h after larval hatching....
<p>Schematic Venn diagram illustrating different possible regions considered for a detected region a...