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Ewing M.
Bond Failure in Clinical Practice
Australian Orthod. J, 2009; 25:(2): 128-135
Berger J.L., Waram T.
Force Levels of Nickel Titanium Initial Archwires
J. Clin. Orthod. 2007; 41:(5): 286-292
Woodside, D.G., Berger, J.L., Hanson, G.H.
2005 'Chapter 17: Self-Ligation Orthodontics with the SPEED Appliance' in
T.M. Graber, R.L. Vanarsdall, K.W.L. Vig (Editors) Orthodontics: Current Principles & Techniques St. Louis: Elsevier Mosby p. 717-752
Garino F., Garino B.
Distalization of Maxillary Molars Using The SPEED System
A Clinical and Radiological Evaluation
World J Orthod. 2004; 5:(4): 317-323
Byloff F.K.
Das Speed System - eine Behandlungsphilosophie mit selbstligierenden Brackets
Inf Orthod Kieferorthop 2003; 35:45-53
Hanson G.H.
Superelastic Nickel Titanium Spring Clips for the SPEED Appliance
J. Clin. Orthod. 2002; 36:(9):520-523
Berger J.L., Byloff F.K.
The Clinical Efficiency of Self-Ligated Brackets
J. Clin. Orthod. 2001; 35:(5):304-308
Berger J.L.
Self-Ligation in the Year 2000
J. Clin. Orthod. 2000; 34:(2):74-81
Hanson G.H.
The SPEED Bracket Auxiliary Slot
J. Clin. Orthod. 1999; 33:(6):318-321
Berger J.L., Byloff F.K., Waram T.
Supercable and the SPEED System
J. Clin. Orthod. 1998; 32:(4):246-253
Blake M., Garvey M.T.
Use of SPEED Supercable with Sectional Mechanics
J. Clin. Orthod. 1998; 32:(4):227-229
Berger J.L.
Archwire Hooks for the SPEED System
J. Clin. Orthod. 1997; 31:(6):354-357
Kleeman P., Janssen C.
The SPEED Positioner
J. Clin. Orthod. 1996; 30:(12):673-680
Blake M., Woodside D.G., Pharoah M.J.
A radiographic comparison of apical root resorption after orthodontic treatment
with the edgewise and SPEED Appliances
Am. J. Orthod. Dentofacial Orthop 1995; 108:(1):76-84
Berger J.L.
The SPEED Appliance: A 14-year update on this unique self-ligating orthodontic mechanism.
Am. J. Orthod. Dentofacial Orthop 1994; 105:(3):217-223
Berger J.L.
Replacement of the Spring Clip in the SPEED Appliance
J. Clin. Orthod. 1994; 28:(10):583-586
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
Bednar J.R., Gruendeman G.W.
The influence of bracket design on moment production during axial rotation.
Am. J. Orthod. Dentofacial Orthop 1993; 104:(3):254-261
Sims A.P.T., Waters N.E., Birne D.J., Pethybridge R.J.
A comparison of the forces required to produce tooth movement in vitro using two
self-ligating brackets and a pre-adjusted bracket employing two types of ligation.
Eur. J. Orthod. 1993; 15:(5):377-385
Berger J.L.
(Up) Righting misconceptions concerning the SPEED bracket system.
Am. J. Orthod. Dentofacial. Orthop. 1992; 102:(6):17A-21A
Williams B.J.
Modified orthodontic treatment goals in a patient with multiple complicating factors.
Special Care in Dent. 1992; 12:(6):251-254
Shivapuja P.K., Berger J.L.
A comparative study of frictional forces between orthodontic brackets and arch wires.
Am. J. Orthod. Dentofacial Orthop 1991; 100:(4):513-522
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.
Hanson G.H.
J.C.O. interviews Dr. G. Herbert Hanson on the SPEED bracket.
J. Clin. Orthod. 1986; 20:(3):183-189
Hanson G.H.
The SPEED System: a report on the development of a new edgewise appliance.
Am. J. Orthod. 1980; 78:(3):243-265