Embedded 3D printing in self‐healing annealable composites for precise patterning of functionally mature human neural constructs

J Kajtez, MF Wesseler, M Birtele… - Advanced …, 2022 - Wiley Online Library
Human in vitro models of neural tissue with tunable microenvironment and defined spatial
arrangement are needed to facilitate studies of brain development and disease. Towards …

[HTML][HTML] Embedded 3D Printing in Self‐Healing Annealable Composites for Precise Patterning of Functionally Mature Human Neural Constructs

J Kajtez, MF Wesseler, M Birtele, FR Khorasgani… - Advanced …, 2022 - ncbi.nlm.nih.gov
Human in vitro models of neural tissue with tunable microenvironment and defined spatial
arrangement are needed to facilitate studies of brain development and disease. Towards …

Embedded 3D Printing in Self-Healing Annealable Composites for Precise Patterning of Functionally Mature Human Neural Constructs

J Kajtez, MF Wesseler, M Birtele… - Advanced science …, 2022 - portal.research.lu.se
Human in vitro models of neural tissue with tunable microenvironment and defined spatial
arrangement are needed to facilitate studies of brain development and disease. Towards …

[PDF][PDF] Embedded 3D Printing in Self-Healing Annealable Composites for Precise Patterning of Functionally Mature Human Neural Constructs

J Kajtez, MF Wesseler, M Birtele, FR Khorasgani… - Adv. Sci, 2022 - mae.ufl.edu
Astonishing architectural and operational intricacies of the human brain span multiple length
scales to allow precise control of our cognitive and motor functions. Most of our …

Embedded 3D Printing in Self-Healing Annealable Composites for Precise Patterning of Functionally Mature Human Neural Constructs

J Kajtez, MF Wesseler, M Birtele… - Advanced science …, 2022 - pubmed.ncbi.nlm.nih.gov
Human in vitro models of neural tissue with tunable microenvironment and defined spatial
arrangement are needed to facilitate studies of brain development and disease. Towards …

Embedded 3D printing in self-healing annealable composites for precise patterning of functionally mature human neural constructs

J Kajtez, MF Wesseler, M Birtele, FR Khorasgani… - bioRxiv, 2021 - biorxiv.org
Human in vitro models of neural tissue with controllable cellular identity, tunable
microenvironment, and defined spatial arrangement are needed to facilitate studies of brain …

Embedded 3D Printing in Self-Healing Annealable Composites for Precise Patterning of Functionally Mature Human Neural Constructs

J Kajtez, MF Wesseler, M Birtele… - Advanced …, 2022 - research.utwente.nl
Human in vitro models of neural tissue with tunable microenvironment and defined spatial
arrangement are needed to facilitate studies of brain development and disease. Towards …

Embedded 3D Printing in Self-Healing Annealable Composites for Precise Patterning of Functionally Mature Human Neural Constructs

J Kajtez, MF Wesseler, M Birtele, FR Khorasgani… - Advanced …, 2022 - orbit.dtu.dk
Human in vitro models of neural tissue with tunable microenvironment and defined spatial
arrangement are needed to facilitate studies of brain development and disease. Towards …

[PDF][PDF] Embedded 3D Printing in Self-Healing Annealable Composites for Precise Patterning of Functionally Mature Human Neural Constructs

J Kajtez, MF Wesseler, M Birtele, FR Khorasgani… - Adv. Sci, 2022 - ris.utwente.nl
Astonishing architectural and operational intricacies of the human brain span multiple length
scales to allow precise control of our cognitive and motor functions. Most of our …

[PDF][PDF] Embedded 3D Printing in Self-Healing Annealable Composites for Precise Patterning of Functionally Mature Human Neural Constructs

J Kajtez, MF Wesseler, M Birtele… - Adv …, 2022 - regenerative-neurobiology.lu.se
Astonishing architectural and operational intricacies of the human brain span multiple length
scales to allow precise control of our cognitive and motor functions. Most of our …