Last modified by rbakker on 2022/05/23 22:23
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... ... @@ -23,9 +23,9 @@ 23 23 24 24 - projection of neuron-points into pixel coordinates in the associated experimental slice; 25 25 26 -- QuickNII ([[https:~~/~~/ebrains.eu/service/quicknii-and-visualign/>>https://ebrains.eu/service/quicknii-and-visualign/]])mapping between the atlas and the experimental slice;26 +- QuickNII mapping between the atlas and the experimental slice; 27 27 28 -- Elastix ([[https:~~/~~/simpleelastix.github.io/>>https://simpleelastix.github.io/]])coregistration of images and, consequently, neuron-points;28 +- Elastix coregistration of images and, consequently, neuron-points; 29 29 30 30 - linear mapping of the reconstructed neuron into the original shape; 31 31 ... ... @@ -35,7 +35,7 @@ 35 35 36 36 = For whom is this interesting? = 37 37 38 -Neuroscientists and neuroanatomists working with neuronal morphologiesand who would liketo register theirdatato an atlas. In particular the Allenmouse atlas is very interesting because large numbers of neurons are already available in that space from two large initiatives: Mouselight ([[https:~~/~~/www.janelia.org/project-team/mouselight>>https://www.janelia.org/project-team/mouselight]]) and Braintell ([[https:~~/~~/doi.org/10.35077/g.25>>https://doi.org/10.35077/g.25]]).38 +Neuroscientists and neuroanatomists interested in ... 39 39 ))) 40 40 41 41
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