SPEED Q&A - page 38

w w w . s p e e d s y s t e m . c o m
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Weiterführende Literatur
Die am häufigsten klinisch untersuchte selbstligierende Apparatur
Eine Auswahl unabhängiger Publikationen
Behandlungseffizienz
Biju S.
Alignment efficiency of superelastic coaxial nickel-titanium vs superelastic single-stranded nickel-titanium in relieving mandibular
anterior crowding
Angle Orthodontist; 82:(4):703-708
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Design aktiver selbstligierender Apparaturen
Pandis N., et al
Changes in the stiffness of the ligating mechanism in retrieved active self-ligating brackets
Am. J. Orthod. Dentofacial. Orthop. 2007; 132:(6):834-837
Hanson G.H.
Superelastic Nickel Titanium Spring Clips for the SPEED Appliance
J. Clin. Orthod. 2002; 36:(9):520-523
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Klinische Effizienz
Berger J.L., Byloff F.K.
The Clinical Efficiency of Self-Ligated Brackets
J. Clin. Orthod. 2001; 35:(5):304-308
Shivapuja P.K., Berger J.L.
A comparative study of conventional ligation and self-ligation bracket systems.
Am. J. Orthod. Dentofacial. Orthop. 1994; 106:(5):472-480
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Klinische Effizienz
Berger J.L.
The influence of the SPEED bracket’s self-ligated design on force levels in tooth movement: A comparative in vitro study.
Am. J. Orthod. Dentofacial. Orthop. 1990; 97:(3):219-228.
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Klinische Effizienz
Berger J.L., Waram T.
Force Levels of Nickel Titanium Initial Archwires
J. Clin. Orthod. 2007; 41:(5): 286-292
Berger J.L., Byloff F.K., Waram T.
Supercable and the SPEED System
J. Clin. Orthod. 1998; 32:(4):246-253
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Klebefestigkeit
Ewing M.
Bond Failure in Clinical Practice
Australian Orthod. J, 2009; 25:(2): 128-135
Sharma-Sayal S.K., Rossouw P.E. et al
The influence of Orthodontic Bracket Base Design on Shear Bond Strength
Am. J. Orthod. Dentofacial. Orthop. 2003; 124:(1):74-82.
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