IMSEAM

Direct laser writing

Gaurav Dave

Phone: +49 6221 15725
Room: 02.361
gaurav.dave@uni-heidelberg.de
  • Fabrication of 3D scaffolds using Two-Photon Polymerization
  • Structurally adaptive scaffolds for cells to study cell-scaffold interactions
2-Photon laser printing | Meta-materials Cell-material Interaction 3D printing Biofabrication

Malin Schmidt

Phone: +49 6221 54 15725
Room: 02.361
malin.schmidt@uni-heidelberg.de
  • Biomimetic strain-stiffening structures for tissue engineering approaches
  • Fabrication and analysis of 3D cell scaffolds printed by Two-Photon Polymerization
Metamaterials | 2-Photon laser printing Mechanics 3D printing PDMS

Annabelle Sonn

Phone: +49 6221 54 15727
Room 03.362
sonn@stud.uni-heidelberg.de
 
  • Materials and surfaces for directed stem cell differentiation
Hydrogels | Polymer Chemistry | Stem Cells | Cell-material Interaction Responsive Materials

Zeynab Tavasolyzadeh

Phone: +49 6221 54 15719
Room: 02.361
z.tavasoly@uni-heidelberg.de
 
 
 
 

Dr. Sadaf Pashapour

Manager, Microfluidic Core Facility
Phone: +49 6221 54 15726
Room: 03.361
sadaf.pashapour@uni-heidelberg.de
  • Generation of Microfluidic Chips, Introduction to Microfluidic Workflows, Conducting Experiments in the Core Facility
Droplet-based Microfluidics | 3D Printing | Continuous-flow Microfluidics | Cell culture on chip | Organ-on-chip models

Dr. Barbara Schamberger

Phone: +49 6221 54 15715
Room: 01.361
barbara.schamberger@uni-heidelberg.de
  • 2-Photon polymerization for bioscience application
  • Cell migration guided by surface geometry
2-Photon laser printing | Meta-materials |3D cell culture 3D image analysis Curvature

Dr. Mohammadreza Taale

Phone: +49 6221 54 15727
Room: 03.362
reza.taale@uni-heidelberg.de
 
 
 
 

Chantal Barwig

Phone: +49 6221 54 15727
Room: 03.361
chantal.barwig@uni-heidelberg.de
  • Fabrication of soft microactuator systems based on stimuli responsive hydrogels
  • 2-Photon laser printing of hydrogel microstructures

Responsive hydrogels | 2-Photon laser printing | Soft microactuator systems | Polymer Chemistry | Stimuli responsive polymers