Detailseite
Entwicklung einer kombinierten in-vivo Diagnostik und Stimulation der frühen Kallusbildung mit quantitativem fokussiertem Ultraschall
Antragsteller
Professor Dr. Kay Raum
Fachliche Zuordnung
Orthopädie, Unfallchirurgie, rekonstruktive Chirurgie
Förderung
Förderung von 2012 bis 2015
Projektkennung
Deutsche Forschungsgemeinschaft (DFG) - Projektnummer 213425253
Erstellungsjahr
2015
Zusammenfassung der Projektergebnisse
Keine Zusammenfassung vorhanden
Projektbezogene Publikationen (Auswahl)
-
Age affects the bone healing kinetics in a rat osteotomy model, 4th European Symposium on Ultrasonic Characterization of Bone, Jyväskylä, Finnland, 2011,
Sauer,K., Rohrbach,D., Strube,P., Preininger,B., Raum, K.
-
Non-invasive monitoring of callus formation by quantitative focused ultrasound (QUS), The Baltic Bone and Cartilage Conference: Malmö, Sweden, October 12-14, 2011: Program & Abstracts. 2011
Preininger,B., Hesse,B., Rohrbach,D., Perka.C., Raum,K.
-
Non-invasive monitoring of callus formation by quantitative focused ultrasound (QUS): Fundamentals by numerical sound propagation simulations in phantoms and rat femora, Osteologie 20 (Suppl. 1), 2011, 7
Rohrbach,D., Hesse,B., Preininger,B., Raum,K., Perka,C.
-
Noninvasive functional assessment of a rat femur model and phantoms using quantitative focused ultrasound (QUS): A pilot study. 4th European Symposium on Ultrasonic Characterization of Bone, Jyväskylä, Finnland, 2011
Rohrbach,D., Hesse,B., Preininger,B., Raum K.
-
Towards non-invasive monitoring of callus formation in small animals by quantitative focused ultrasound (QUS): Assessment of soft and mineralized tissue formation in a rat bone healing model, Osteologie 20 (Suppl. 1), 2011, 8
Hesse,B., Rohrbach,D., Raum,K., Preininger,B., Perka,C.
-
Assessment of soft and mineralized tissue formation in a rat bone healing model using quantitative ultrasound (QUS). The Journal of the Acoustical Society of America 04/2012; 131(4):3458
Rohrbach,D., Hesse,B., Preininger,B., Perka,C., Raum K.
-
Histogram feature-based classification improves differentiability of early bone healing stages from micro-computed tomographic data, J Comput. Assist. Tomogr. 36 (4), 2012, 469-476
Preininger,B., Hesse,B., Rohrbach,D., Varga,P., Gerigk,H., Langer,M., Peyrin,F., Perka,C., Raum,K.
-
Nicht-invasives Kallusmonitoring mittels quantitativem Ultraschall, Deutscher Kongress für Orthopädie und Unfallchirurgie
Preininger,B., Rohrbach,D., Hesse,B., Gerigk,H., Perka,C., Raum,K.
-
On the role of quantitative ultrasound (QUS) in fracture healing monitoring: what is next?, 5th European Symposium on Ultrasonic Characterization of Bone, Granada, Spain, 2013
Machado,C.B., Rohrbach,D., Pereira,W.C.A., Laugier,P., Raum,K.
-
The early phases of bone healing can be differentiated in a rat osteotomy model by focused transversetransmission ultrasound, Ultrasound Med. Biol. 39 (9), 2013, 1642-1653
Rohrbach,D., Preininger,B., Hesse,B., Gerigk,H., Perka,C., Raum,K.
-
Priors for X-ray in-line phase tomography of heterogeneous objects, Philos. Trans. A Math. Phys. Eng Sci. 372, 2014, 20130129
Langer,M., Cloetens,P., Hesse,B., Suhonen,H., Pacureanu,A., Raum,K., Peyrin,F.
-
Stimulation of bone repair with ultrasound: a review of the possible mechanic effects, Ultrasonics 54 (5), 2014, 1125-1145
Padilla,F., Puts,R., Vico,L., Raum,K.
-
(2016) Stimulation of Bone Repair with Ultrasound. In: Escoffre JM., Bouakaz A. (eds) Therapeutic Ultrasound. Advances in Experimental Medicine and Biology, vol 880. Springer, Cham. Chapter 21, pp 385-427. - 978-3-319-22535-7
Padilla F., Puts R., Vico L., Guignandon A., Raum K.