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Siv Eggen

Guest Researcher
  • E-mailsiv.eggen@uib.no
  • Visitor Address
    Haukeland Universitetssykehus Laboratoriebygget, 7. etg. Heis øst
    5009 Bergen
  • Postal Address
    Postboks 7804
    5020 Bergen
Academic article
  • Show author(s) (2022). A multi-pulse ultrasound technique for imaging of thick-shelled microbubbles demonstrated in vitro and in vivo. PLOS ONE. 19 pages.
  • Show author(s) (2015). Nanoparticle-stabilized microbubbles for multimodal imaging and drug delivery. Contrast Media & Molecular Imaging. 356-366.
  • Show author(s) (2014). Ultrasound-enhanced drug delivery in prostate cancer xenografts by nanoparticles stabilizing microbubbles. Journal of Controlled Release. 39-49.
  • Show author(s) (2013). ULTRASOUND IMPROVES THE UPTAKE AND DISTRIBUTION OF LIPOSOMAL DOXORUBICIN IN PROSTATE CANCER XENOGRAFTS. Ultrasound in Medicine and Biology. 1255-1266.
  • Show author(s) (2012). Ultrasound Mediated Delivery of Liposomal Doxorubicin in Prostate Tumor Tissue. IEEE International Ultrasonics Symposium Proceedings. 436-439.
  • Show author(s) (2012). Multifunctional Nanoparticles for Drug Delivery and Imaging: Effect of Ultrasound on Cellular Uptake and Tumor Tissue Distribution. IEEE International Ultrasonics Symposium Proceedings. 421-424.
Lecture
  • Show author(s) (2013). Characterization of nanoparticles and microbubbles.
Academic lecture
  • Show author(s) (2014). Ultrasound-mediated delivery of nanoparticles to tumour tissue.
  • Show author(s) (2014). Ultrasound-mediated delivery of nanoparticles to tumour cells.
  • Show author(s) (2014). Ultrasound-mediated delivery of nanomedicine to tumour tissue.
  • Show author(s) (2014). Characterization of a novel drug delivery platform based on PACA nanoparticles and nanoparticle stabilized microbubbles.
  • Show author(s) (2013). Multifunctional Nanoparticles for Ultrasound-mediated Diagnosis and Therapy.
  • Show author(s) (2012). Ultrasound-mediated delivery of nanoparticles in cancer tissue.
  • Show author(s) (2012). Combining Multifunctional Nanoparticles and Ultrasoundin Cancer Theranostics – First Outlook Towards in vivo Results.
Interview
  • Show author(s) (2013). Ultralyd og cellegift kan erstatte kirurgi.
Poster
  • Show author(s) (2014). Ultrasound-mediated delivery of nanoparticles to tumour tissue.
  • Show author(s) (2014). Optimization and Characterization of PACA Nanoparticles for Drug Delivery and Imaging.
  • Show author(s) (2014). Multifunctional RGD targeted nanoparticles for drug delivery and diagnostic purposes.
  • Show author(s) (2014). Improved delivery of nanomedicine in cancer tissue using ultrasound and novel nanoparticle-microbubble platform.
  • Show author(s) (2013). Ultrasound-mediated delivery of a novel nanoparticle-microbubble platform.
  • Show author(s) (2013). Ultrasound-mediated delivery of a novel nanoparticle-microbubble platform.
  • Show author(s) (2013). Ultrasound-enhanced accumulation in fat and efficient cellular uptake of hydrophobic drugs using a novel nanoparticle- microbubble platform.
  • Show author(s) (2013). Improving the delivery of nanomedicine in cancer tissue by ultrasound.
  • Show author(s) (2013). Gas Bubbles Stabilized by Multifunctional Nanoparticles for Ultrasound-Mediated Drug-Delivery.
  • Show author(s) (2012). Ultrasound-Mediated Delivery of Liposomal Doxorubicin in Tumor Tissue.
  • Show author(s) (2012). Ultrasound improved distribution of liposomal drug in tumour tissue and enhanced uptake in cells.
  • Show author(s) (2012). Multifunctional nanoparticles for drug delivery and imaging: In vitro and in vivo studies.

More information in national current research information system (CRIStin)