000 01743 a2200505 4500
005 20250516115835.0
264 0 _c20140326
008 201403s 0 0 eng d
022 _a1365-2591
024 7 _a10.1111/iej.12008
_2doi
040 _aNLM
_beng
_cNLM
100 1 _aCauwels, R G E C
245 0 0 _aFracture resistance of bone samples filled with fibre-reinforced composite posts: an ex vivo model.
_h[electronic resource]
260 _bInternational endodontic journal
_cMay 2013
300 _a434-41 p.
_bdigital
500 _aPublication Type: Comparative Study; Journal Article
650 0 4 _aAdhesiveness
650 0 4 _aAnimals
650 0 4 _aBisphenol A-Glycidyl Methacrylate
_xchemistry
650 0 4 _aCattle
650 0 4 _aComposite Resins
_xchemistry
650 0 4 _aDental Bonding
650 0 4 _aDental Materials
_xchemistry
650 0 4 _aDental Prosthesis Design
650 0 4 _aEpoxy Resins
_xchemistry
650 0 4 _aFemur
_xphysiopathology
650 0 4 _aFractures, Bone
_xphysiopathology
650 0 4 _aGlass
_xchemistry
650 0 4 _aHumidity
650 0 4 _aLight-Curing of Dental Adhesives
650 0 4 _aMaterials Testing
650 0 4 _aPolymers
_xchemistry
650 0 4 _aPolymethyl Methacrylate
_xchemistry
650 0 4 _aPost and Core Technique
_xinstrumentation
650 0 4 _aRandom Allocation
650 0 4 _aResin Cements
_xchemistry
650 0 4 _aSelf-Curing of Dental Resins
650 0 4 _aStress, Mechanical
650 0 4 _aTemperature
650 0 4 _aTime Factors
700 1 _aMartens, L C
700 1 _aVerbeeck, R M H
773 0 _tInternational endodontic journal
_gvol. 46
_gno. 5
_gp. 434-41
856 4 0 _uhttps://doi.org/10.1111/iej.12008
_zAvailable from publisher's website
999 _c22209470
_d22209470