Published September 17, 2019
| Version v1
Dataset
Open
Injectable, Scalable 3D Tissue-Engineered Model of Marrow Hematopoiesis
Authors/Creators
- 1. EPFL
- 2. UNIGE
- 3. Volumina-Medical
Description
Raw data associated with the publication "Injectable, Scalable 3D Tissue-Engineered Model of Marrow Hematopoiesis"
Files
Figure-1.zip
Files
(1.4 GB)
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md5:f39b9f4719673217035ed4bb9a09018c
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md5:5bff67baea32c7d011049770cabbf390
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787.6 MB | Preview Download |
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md5:23ffaae58d844fe91513de78a409263a
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md5:f31d124fb5d8fd7fa0a89f98703f5541
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md5:da30a5ef539ecc5ef8fe8f02dc990bf2
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604.5 MB | Preview Download |
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md5:027b7817230c9e70fd4fee6bdc850876
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389.9 kB | Preview Download |
Additional details
Funding
- Swiss National Science Foundation
- In vivo perfused and stimulated scaffolds for neural cell therapy PZ00P2_161347
- Swiss National Science Foundation
- Mesenchymal and metabolic manipulation of yellow to red bone marrow transitions: clinical implications for benign and malignant hematology PP00P3_176990
- Swiss National Science Foundation
- Mesenchymal and metabolic manipulation of yellow to red bone marrow transitions: clinical implications for benign and malignant hematology PP00P3_183725
- Swiss National Science Foundation
- Brain Patch Technology PP00P2_163684