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Ústav teoretické a aplikované mechaniky Akademie věd ČR

ÚTAM AV ČR, v. v. i.
Prosecká 809/76
190 00 Praha 9
tel.: +420 286 882 121
fax: +420 286 884 634
e-mail: itam@itam.cas.cz
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počet přístupů: 7051309

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Výběr podle způsobu zveřejnění:
L4: Software (12)
O: Ostatní výsledky (7)
P1: Užitný a průmyslový vzor (1)
U: Uspořádání akce (2)
Všechny ostatní výsledky (1446)

  Kytýř Daniel, Jiroušek Ondřej, Zlámal Petr, Pokorný D., Dammer J.
Sysno:  353055
ZpZverejneni:  C
AutoriVsichni:  Kytýř, D. - Jiroušek, Ondřej - Zlámal, P. - Pokorný, D. - Dammer, J.
AutoriAV:  Jiroušek, Ondřej
AutoriVsichniPocet:  5
AutoriAVPocet:  1
BiblCit:  Kytýř, D. ; Jiroušek, Ondřej ; Zlámal, P. ; Pokorný, D. ; Dammer, J. High resolution finite element modeling of cemented bone-implant interface using X-ray microtomography. In Proceedings of 9th International Symposium on Computer methods in Biomechanics and Biomedical Engineering Cardiff : ARUP, 2010. S. 467-471. ISBN 978-0-9562121-3-9. [International symposium on Computer methods in biomechanics and biomedial engineering /9./, Valencia, 24.02.2010-27.02.2010, ES].
BiblCitZdrD:  In Proceedings of 9th International Symposium on Computer methods in Biomechanics and Biomedical Engineering. Cardiff : ARUP, 2010. S. 467-471
ISBN_ISSN_ZdrDok:  978-0-9562121-3-9
ZemeZverejneni:  GB
Jazyk:  eng
PocStran:  5
ProjektyCEP:  GAP105/10/2305:GA ČR
VyzZamer:  CEZ:AV0Z20710524
OrigNazev:  High resolution finite element modeling of cemented bone-implant interface using X-ray microtomography
KlicSlova:  bone-cement interface - computed tomography - high-resolution models
AnotaceOrig:  The aim of the research was to investigate the cemented bone-implant interface behavior. To determine the degradation caused by mechanical loading both numerical and experimental approach have been used. The main problems (cement layer degradation and bone-cement interface debonding) during physiological loading conditions have been investigated using a custom hip simulator. The experimental setup was designed to allow cyclic loading of a sample of pelvic bone with implanted cemented acetabular component. The hip contact force of required direction and magnitude was applied to the implant using a spherical femoral component head. The most unfavorable activity (downstairs walking) was simulated in two million cycles with 4Hz frequency. The process of damage accumulation in cement fixation was monitored by repeated scanning using high resolution micro-focus X-ray Computed Tomography (microCT).
AnotaceCz:  
KodOborRIV:  FI
Konference:  International symposium on Computer methods in biomechanics and biomedial engineering /9./. Valencia (ES), 24.02.2010-27.02.2010
VlastnikZaznamu:  UTAM-F
OdevzdaniDoRIV:  1
RokVydani:  2010
RokSberu:  2011
PocetCitaci:  0




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