Staffan Strömblad

Staffan Strömblad

Professor
Telefon: +46852481122
Besöksadress: Blickagången 16, 14152 Flemingsberg
Postadress: H7 Medicin, Huddinge, H7 ICCA Strömblad, 171 77 Stockholm

Om mig

  • Staffan Strömblad är professor och gruppledare vid Institutionen för Medicin Huddinge.

Artiklar

Alla övriga publikationer

Forskningsbidrag

  • Cell-matrixinteraktioner i cancer
    Vetenskapsrådet
    1 January 2026 - 1 January 2029
  • Vilka pre-invasiva tumörer ska behandlas eller följas upp?
    Radiumhemmets forskningsfonder
    1 January 2025 - 1 January 2027
  • Cell-matrixinteraktioner i cancer
    Cancerfonden
    1 January 2024 - 1 January 2026
  • European Commission
    1 December 2023 - 31 August 2027
    Swept lasers have enabled paradigm-shifts in biomedical imaging and diagnostics. The SWEEPICS project will research and develop the next generation of swept source lasers with flexible pulse modulation capability, high power output, multi-wavelength coherent output and multi-application potential. SWEEPICS will develop new laser-based systems: a high-speed, high resolution multiphoton high content screening system, a multimodal non-invasive imaging system based on high-speed photoacoustics and multiphoton microscopy, and a smart microscope for accelerated acquisition&diagnostics. The inter-disciplinary consortium of European partners will showcase the SWEEPICS technology in cutting-edge use cases based on novel vascular organoids for animal-free drug-testing and infection studies. This disruptive SWEEPICS technology will rapidly generate high-resolution diagnostic imaging in three-dimension, where the high imaging depth permits penetrating millimeter deep into tissue-like organoids and imaging at high temporal and spatial resolution in order to allow for a drastic reduction of animal testing and increased speed of diagnostic results. It will allow the study of dynamic processes in real-time and at multiple length scales, enabling researchers to observe how cells and tissues respond to viral infections or pathogen-induced inflammation, while also permitting a high-throughput enabled discovery of novel diagnostic biomarkers. Overall, this technology represents a major breakthrough in capable laser technology for high accuracy and throughput medical diagnostics and is poised to make significant contributions to the European laser and biomedical technology landscape.

Anställningar

  • Professor, Medicin, Huddinge, Karolinska Institutet, 2024-
  • Professor, Biovetenskaper och näringslära, Karolinska Institutet, 2009-2024

Examina och utbildning

  • Docent, Experimentell patologi, Karolinska Institutet, 2000

Nyheter från KI

Kalenderhändelser från KI