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Institute of Medical Biotechnology
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  1. Friedrich-Alexander-Universität
  2. Technische Fakultät
  3. Department Chemie- und Bioingenieurwesen

Institute of Medical Biotechnology

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  2. Research
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  4. Optical Technologies in Life Sciences
  5. Raman Spectroscopy of Biological Tissue

Raman Spectroscopy of Biological Tissue

Bereichsnavigation: Research
  • Research Groups
    • Muscle Opto-Biomechatronics
      • The MyoRobot
      • The MechaMorph
      • The IsoStretcher
      • Virtual Laboratory
    • Malaria Biotechnology
      • RG Protein Engineering
      • Metabolic enzymes as drug targets
      • Identification of novel antimalarial compounds
      • Mitosis as drug target
      • Identification of transporters of the MGC-basic proteins
      • Characterization of drug-resistance transporters of the digestive vacuole
      • Malaria vaccine directed against blood stages
    • Tissue Engineering
      • Bone Tissue Engineering
      • Research Topic 2 (TE)
      • Research Topic 3 (TE)
    • Optical Technologies in Life Sciences
      • Label-free Multiphoton Imaging
      • Multiphoton Endomicroscopy for Life Science and Medicine
      • Raman Spectroscopy of Biological Tissue
      • PiezoGRIN: Multiphoton Imaging under high Pressures
    • High-throughput Biology & Robophotonics
      • High-throughput Biology & Functional Neurogenomics
      • Robophotonics & Rapid Prototyping
  • Collaborations
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Raman Spectroscopy of Biological Tissue

Group Leader

Sebastian Schürmann

Dr. Sebastian Schürmann, Akad. Rat, PD

Group Leader

Medical Biotechnology
Optical Technologies in Life Sciences

Raum: Room 02.042
Paul-Gordan-Str. 3
91052 Erlangen
Germany
  • Telefon: +49913185-23311
  • E-Mail: sebastian.schuermann@fau.de
  • Webseite: https://www.mbt.tf.fau.de/
  • Label-free Multiphoton Imaging
  • Advanced Endomicroscopy for Life Science and Medicine
  • Raman Spectroscopy of Biological Tissue
  • PiezoGRIN: Multiphoton Imaging under high Pressures

Raman spectroscopy is an optical method to probe the chemical composition of a sample based on the vibrational energy of molecular bonds. We investigate Raman spectra of biological tissue in order to identify characteristic changes in the molecular composition of the tissue in disease models.

Friedrich-Alexander-Universität
Erlangen-Nürnberg

Schlossplatz 4
91054 Erlangen
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