Dataset Open Access
Müller, Johannes;
Suckert, Theresa;
Beyreuther, Elke;
Schneider, Moritz;
Boucsein, Marc;
Bodenstein, Elisabeth;
Stolz-Kieslich, Liane;
Krause, Mechthild;
Neubeck, Cläre Von;
Haase, Robert;
Lühr, Armin;
Dietrich, Antje;
Nexhipi, Sindi
{
"abstract": "<p>The dataset contains comprehensive image data for a total of nine mice, which underwent normal tissue brain irradiation with 90 MeV protons. <br>\nIn particular, the image data comprise cone-bem computed tomographies (CBCT), Monte Carlo beam transport simulations based on those CTs, regular magnetic resonance imaging (MRI) follow-up (≥ 26 weeks), a co-aligned DSURQE mouse brain atlas and scanned whole-brain tissue sections with histochemical and immunofluorescent markers for morphology (H&E), cell nuclei (DAPI), astrocytes (GFAP), microglia (Iba1), the intermediate filament protein Nestin, proliferation (Ki67), neurons (NeuN) and oligodendrocytes (OSP). <br>\nThe volumetric image data (i.e. CBCT, MRI and brain atlas) were co-aligned using the ImageJ plugin Big Warp. The CBCT data was used as spatial reference to allow for mask-based, slice-wise alignment of CBCT and light microscopy image data in 3D with the scriptable registration tool Elastix. </p>\n\n<p> </p>\n\n<p>We provide the data in raw format and as aligned data sets, as well as their spatial transformations.</p>",
"language": "eng",
"DOI": "10.14278/rodare.3131",
"type": "dataset",
"id": "3131",
"issued": {
"date-parts": [
[
2022,
9,
21
]
]
},
"author": [
{
"family": "M\u00fcller, Johannes"
},
{
"family": "Suckert, Theresa"
},
{
"family": "Beyreuther, Elke"
},
{
"family": "Schneider, Moritz"
},
{
"family": "Boucsein, Marc"
},
{
"family": "Bodenstein, Elisabeth"
},
{
"family": "Stolz-Kieslich, Liane"
},
{
"family": "Krause, Mechthild"
},
{
"family": "Neubeck, Cl\u00e4re Von"
},
{
"family": "Haase, Robert"
},
{
"family": "L\u00fchr, Armin"
},
{
"family": "Dietrich, Antje"
},
{
"family": "Nexhipi, Sindi"
}
],
"version": "0.4.0",
"title": "Slice2Volume: Fusion of multimodal medical imaging and light microscopy data of irradiation-injured brain tissue in 3D.",
"publisher": "Rodare"
}
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