Thomas Distler

About Thomas Distler

Thomas Distler, With an exceptional h-index of 16 and a recent h-index of 16 (since 2020), a distinguished researcher at Friedrich-Alexander-Universität Erlangen-Nürnberg, specializes in the field of Biomaterials, Hydrogels, 3D Bioprinting, Tissue Engineering, Neuronal Regeneration.

His recent articles reflect a diverse array of research interests and contributions to the field:

3D bioprinting of mouse pre-osteoblasts and human MSCs using bioinks consisting of gelatin and decellularized bone particles

Piezoelectric and bioactive composites: Functional materials for bone tissue engineering

3D printing of piezoelectric and bioactive barium titanate-bioactive glass scaffolds for bone tissue engineering

Fish scale containing alginate dialdehyde-gelatin bioink for bone tissue engineering

Time-dependent hyper-viscoelastic parameter identification of human articular cartilage and substitute materials

Biodegradable Polylactide Supraparticle Powders with Functional Additives for Biomedical Additive Manufacturing (Adv. Funct. Mater. 39/2022).

Hyperelastic parameter identification of human articular cartilage and substitute materials

Alginate dialdehyde-collagen hydrogels and their use in 3d cell culture

Thomas Distler Information

University

Position

Institute of Biomaterials

Citations(all)

1079

Citations(since 2020)

1071

Cited By

171

hIndex(all)

16

hIndex(since 2020)

16

i10Index(all)

16

i10Index(since 2020)

16

Email

University Profile Page

Google Scholar

Thomas Distler Skills & Research Interests

Biomaterials

Hydrogels

3D Bioprinting

Tissue Engineering

Neuronal Regeneration

Top articles of Thomas Distler

3D bioprinting of mouse pre-osteoblasts and human MSCs using bioinks consisting of gelatin and decellularized bone particles

Biofabrication

2024/2/23

Thomas Distler
Thomas Distler

H-Index: 8

Michael Gelinsky
Michael Gelinsky

H-Index: 41

Piezoelectric and bioactive composites: Functional materials for bone tissue engineering

Transactions on Additive Manufacturing Meets Medicine

2023/9/11

3D printing of piezoelectric and bioactive barium titanate-bioactive glass scaffolds for bone tissue engineering

Materials Today Bio

2023/8/1

Fish scale containing alginate dialdehyde-gelatin bioink for bone tissue engineering

Biofabrication

2023/2/15

Thomas Distler
Thomas Distler

H-Index: 8

Time-dependent hyper-viscoelastic parameter identification of human articular cartilage and substitute materials

Journal of the Mechanical Behavior of Biomedical Materials

2023/2/1

Biodegradable Polylactide Supraparticle Powders with Functional Additives for Biomedical Additive Manufacturing (Adv. Funct. Mater. 39/2022).

Advanced Functional Materials

2022/9/26

Hyperelastic parameter identification of human articular cartilage and substitute materials

Journal of the Mechanical Behavior of Biomedical Materials

2022/9/1

Alginate dialdehyde-collagen hydrogels and their use in 3d cell culture

2022/7/14

3D printed gelatin/decellularized bone composite scaffolds for bone tissue engineering: Fabrication, characterization and cytocompatibility study

Materials Today Bio

2022/6/1

3D Bioprinting of Multifunctional Dynamic Nanocomposite Bioinks Incorporating Cu‐Doped Mesoporous Bioactive Glass Nanoparticles for Bone Tissue Engineering

Small

2022/3

Propagation‐Based Phase Contrast Computed Tomography as a Suitable Tool for the Characterization of Spatial 3D Cell Distribution in Biomaterials

Advanced Engineering Materials

2021/11

Physico-chemical modification of gelatine for the improvement of 3D printability of oxidized alginate-gelatine hydrogels towards cartilage tissue engineering

Materials & Design

2021/10/1

Human Induced Pluripotent Stem Cell‐Derived Neural Progenitor Cells Produce Distinct Neural 3D In Vitro Models Depending on Alginate/Gellan Gum/Laminin Hydrogel Blend Properties

Advanced Healthcare Materials

2021/8

Thomas Distler
Thomas Distler

H-Index: 8

Neuronal differentiation from induced pluripotent stem cell-derived neurospheres by the application of oxidized alginate-gelatin-laminin hydrogels

Biomedicines

2021/3/5

Thomas Distler
Thomas Distler

H-Index: 8

Rainer Detsch
Rainer Detsch

H-Index: 35

Development and Characterization of a 3D-Printable and Electroconductive Hydrogel for Tissue Engineering

2021

Thomas Distler
Thomas Distler

H-Index: 8

Additive manufacturing of piezoelectric barium titanate-bioactive glass composite scaffolds

Biomed. Eng

2021

Electrically Conductive and 3D-Printable Oxidized Alginate-Gelatin Polypyrrole: PSS Hydrogels for Tissue Engineering

Advanced healthcare materials

2021

Mechanical properties of cell-and microgel bead-laden oxidized alginate-gelatin hydrogels

Biomaterials Science

2021

Identification of mechanical models and parameters for alginate‐based hydrogels as proxy materials for brain tissue

PAMM

2021/1

Ionically and enzymatically dual cross-linked oxidized alginate gelatin hydrogels with tunable stiffness and degradation behavior for tissue engineering

ACS Biomaterials Science & Engineering

2020/5/20

Thomas Distler
Thomas Distler

H-Index: 8

Rainer Detsch
Rainer Detsch

H-Index: 35

See List of Professors in Thomas Distler University(Friedrich-Alexander-Universität Erlangen-Nürnberg)