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Showing 1 to 4 of 4 for “"Bio Oss®"”.

  1. Knochenaugmentation im Oberkieferseitenzahnbereich mit unterschiedlichen Ersatzmaterialien und Induktoren : eine klinische histomorphometrische Studie

    … sinus augmentation using tissue-engineered bone BioSeed®-Orale Bone and bovine bone substitute material Bio-Oss® in combination with Platelet Rich Plasma (PRP) or autogenic bone by means of histologic and histomorphometric examination of biopsies. 27 patients with an average age of 58.92 years …

    aachen Repository record for Knochenaugmentation im Oberkieferseitenzahnbereich mit unterschiedlichen Ersatzmaterialien und Induktoren : eine klinische histomorphometrische Studie (opens in a new tab)

  2. Effects of Surface Characteristics of Hydroxyapatite and Substituted Hydroxyapatites on Protein Attachment and Angiogenesis

    … (HA) is one of the most widely studied bioceramics for BTE, due to its close resemblance to the mineral component of bone. As bone mineral contains various ionic substitutions that play a crucial role in bone metabolism, attempts to improve the bioactivity of HA have focussed on adding …

    cambridge Repository record for Effects of Surface Characteristics of Hydroxyapatite and Substituted Hydroxyapatites on Protein Attachment and Angiogenesis (opens in a new tab)

  3. Histomorphometric Analysis of Maxillary Sinus Grafts: A Randomized Controlled Study

    … Group A: anorganic bovine bone mineral (ABBM) [Bio-Oss®], Group B: anorganic equine bone mineral (AEBM) [Equimatrix®], or Group C: mineralized cancellous bone allograft (MCBA) [OSSIF-i sem™]. A total of 28 bone cores were obtained at a mean time of 9.1 months following MSG and used for the …

    loma-linda Repository record for Histomorphometric Analysis of Maxillary Sinus Grafts: A Randomized Controlled Study (opens in a new tab)

  4. Development and evaluation of the innovative 3D printed scaffolds for bone regeneration in vitro and in vivo /

    … need to develop and evaluate newly designed biomaterials. This work analysed the morphology, printing accuracy, and porosity of 3D scaffolds printed from industrial polylactic acid (PLA) filaments with different FDM 3D printers. Innovative topologically ordered 3D scaffolds were created using …

    vilnius Repository record for Development and evaluation of the innovative 3D printed scaffolds for bone regeneration in vitro and in vivo / (opens in a new tab)