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Bioceramics Development and Applications

ISSN: 2090-5025

Open Access

Citations Report

Bioceramics Development and Applications : Citations & Metrics Report

Articles published in Bioceramics Development and Applications have been cited by esteemed scholars and scientists all around the world.

Bioceramics Development and Applications has got h-index 18, which means every article in Bioceramics Development and Applications has got 18 average citations.

Following are the list of articles that have cited the articles published in Bioceramics Development and Applications.

  2022 2021 2020 2019 2018

Year wise published articles

30 31 5 2 8

Year wise citations received

89 113 101 106 101
Journal total citations count 1050
Journal impact factor 2.96
Journal 5 years impact factor 4.06
Journal cite score 3.48
Journal h-index 18
Journal h-index since 2018 12
Important citations

Yousefi AM, Oudadesse H, Akbarzadeh R, Wers E, Lucas-Girot A. Physical and biological characteristics of nanohydroxyapatite and bioactive glasses used for bone tissue engineering. Nanotechnology Reviews. 2014 Dec 1;3(6):527-52.

Sharifi E, Azami M, Kajbafzadeh AM, Moztarzadeh F, Faridi-Majidi R, Shamousi A, Karimi R, Ai J. Preparation of a biomimetic composite scaffold from gelatin/collagen and bioactive glass fibers for bone tissue engineering. Materials Science and Engineering: C. 2016 Feb 1;59:533-41.

Wers E, Oudadesse H, Lefeuvre B, Bureau B, Merdrignac-Conanec O. Thermal investigations of Ti and Ag-doped bioactive glasses. Thermochimica Acta. 2014 Mar 20;580:79-84.

Bejarano J, Caviedes P, Palza H. Sol–gel synthesis and in vitro bioactivity of copper and zinc-doped silicate bioactive glasses and glass-ceramics. Biomedical Materials. 2015 Mar 11;10(2):025001.

Suwanprateeb J, Thammarakcharoen F, Hobang N. Enhancement of mechanical properties of 3D printed hydroxyapatite by combined low and high molecular weight polycaprolactone sequential infiltration. Journal of Materials Science: Materials in Medicine. 2016 Nov 1;27(11):171.

Yahamed A, Joyce M, Fleming PD, Pekarovicova A. Biopolymers for 3D printed bone structure. InNIP & Digital Fabrication Conference 2015 Jan 1 (Vol. 2015, No. 1, pp. 406-410). Society for Imaging Science and Technology.

Toyama T, Kameda S, Nishimiya N. Synthesis of sulfate-ion substitute d hydroxyapatite from amorphous calcium phosphate. Bioceram Dev Appl S. 2013;1:2.

El Gohary MI, El-Din SM, Awad SM, El-Tohamy AM, Soliman IE. Influence of Li 2 Content on Formation of Apatite Layer on Surface of SiO2-CaO-K2O-P2O5 Bioglass System.

Boulila S, Oudadesse H, Kallel R, Lefeuvre B, Mabrouk M, Chaabouni K, Makni-Ayedi F, Boudawara T, Elfeki A, Elfeki H. In vivo study of hybrid biomaterial scaffold bioactive glass–chitosan after incorporation of Ciprofloxacin. Polymer Bulletin.:1-21.

Araújo M, Viveiros R, Philippart A, Miola M, Doumett S, Baldi G, Perez J, Boccaccini AR, Aguiar-Ricardo A, Verné E. Bioactivity, mechanical properties and drug delivery ability of bioactive glass-ceramic scaffolds coated with a natural-derived polymer. Materials Science and Engineering: C. 2017 Mar 22.

Yodkhum MK. CHITOSAN-ALUMINUM MONOSTEARATE COMPOSITE SPONGES CONTAINING ASIATICOSIDE FOR PROMOTING ANGIOGENESIS IN CHRONIC WOUND (Doctoral dissertation, Silpakorn University).

Abdelfattah MI, Nasry SA, Mostafa AA. Characterization and Cytotoxicity Analysis of a Ciprofloxacin Loaded Chitosan/Bioglass Scaffold on Cultured Human Periodontal Ligament Stem Cells: a Preliminary Report. Open Access Macedonian Journal of Medical Sciences. 2016 Sep 15;4(3):461.

Mabrouk M, Choonara YE, Kumar P, du Toit LC, Pillay V. The Influence of Lyophilized EmuGel Silica Microspheres on the Physicomechanical Properties, In Vitro Bioactivity and Biodegradation of a Novel Ciprofloxacin-Loaded PCL/PAA Scaffold. Polymers. 2016 Jun 15;8(6):232.

Boulila S, Oudadesse H, Badraoui R, Lefeuvre B, Mabrouk M, Chaabouni K, Mostafa A, Makni-Ayedi F, Barroug A, Rebai T, Elfeki A. Antioxidative/oxidative effects and retarding osteoconductivity of ciprofloxacin-loaded porous polyvinyl alcohol/bioactive glass hybrid. Medical & biological engineering & computing. 2017 Jan 1;55(1):17-32.

Mabrouk M, Bijukumar D, Mulla JA, Chejara DR, Badhe RV, Choonara YE, Kumar P, du Toit LC, Pillay V. Enhancement of the biomineralization and cellular adhesivity of polycaprolactone-based hollow porous microspheres via dopamine bio-activation for tissue engineering applications. Materials Letters. 2015 Dec 15;161:503-7.

Mabrouk M, Chejara DR, Mulla JA, Badhe RV, Choonara YE, Kumar P, du Toit LC, Pillay V. Design of a novel crosslinked HEC-PAA porous hydrogel composite for dissolution rate and solubility enhancement of efavirenz. International journal of pharmaceutics. 2015 Jul 25;490(1):429-37.

Lang SB. Hydroxyapatite: Past, Present, and Future. InElectrically Active Materials for Medical Devices 2016 (pp. 29-50). World Scientific.

Lang SB. Review of ferroelectric hydroxyapatite and its application to biomedicine. Phase Transitions. 2016 Aug 2;89(7-8):678-94.

Nishigaki T, Hontsu S. Effect of Poling Treatment on Piezoelectric Constant of Pulsed Laser Deposited Hydroxyapatite Thin Films. Key Engineering Materials. 2014 Sep 1;631.

Kato N, Hatoko Y, Yamamoto E, Furuzono T, Hontsu S. Preparation and Application of a Potassium-Substituted Calcium Phosphate Sheet as a Dental Material for Treating Dentin Hypersensitivity. InKey Engineering Materials 2017 (Vol. 720, pp. 102-107). Trans Tech Publications.

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