Objective: To analyze the forces released by four types of passive stainless steel self-ligating brackets (SLBs), and by two nonconventional elastomeric ligature-bracket systems when compared with conventional elastomeric ligatures on conventional stainless steel brackets during the alignment of apically displaced teeth at the maxillary arch. Materials and Methods: An experimental model consisting of five brackets was used to assess the forces released by the seven different ligature-bracket systems with 0.012" or 0.014" super- elastic nickel titanium wire in the presence of different amounts of apical displacement of the canine (ranging from 1.5 mm to 6 mm). Comparisons between the different types of bracket/wire/ ligature systems were car...
evaluate the frictional force between the archwire and orthodontic bracket generated by elastomeric ...
Objective: To compare the influence of archwire material (NiTi, beta-Ti and stainless steel) and bra...
Introduction: The purpose of this study was to compare the frictional force (FF) generated by variou...
Aim: This in vitro study was done to evaluate and compare the frictional forces produced by a passiv...
ABSTRACT Introduction: The aim of the study was to evaluate deflection forces of rectangular ortho...
Aims. To measure the friction force generated during sliding mechanics with conventional, self-ligat...
Aims. To measure the friction force generated during sliding mechanics with conventional, self-ligat...
<p>The purpose of this study was to evaluate the effects of tooth displacement on frictional force w...
AIMS: To measure the friction force generated during sliding mechanics with conventional, self-l...
Aim: The aim of this study was to verify the frictional force during sliding mechanics in orthodonti...
Abstract\ud \ud Background\ud The aim of this study wa...
Aim: To evaluate the frictional force between the archwire and orthodontic bracket generated by elas...
The aims of this study were to determine the mean tensile force of four different elastomeric module...
ABSTRACT Objective: To evaluate stainless steel archwire static friction in active and passive sel...
OBJECTIVE: To compare the frictional resistance between self-ligating and conventional brackets tied...
evaluate the frictional force between the archwire and orthodontic bracket generated by elastomeric ...
Objective: To compare the influence of archwire material (NiTi, beta-Ti and stainless steel) and bra...
Introduction: The purpose of this study was to compare the frictional force (FF) generated by variou...
Aim: This in vitro study was done to evaluate and compare the frictional forces produced by a passiv...
ABSTRACT Introduction: The aim of the study was to evaluate deflection forces of rectangular ortho...
Aims. To measure the friction force generated during sliding mechanics with conventional, self-ligat...
Aims. To measure the friction force generated during sliding mechanics with conventional, self-ligat...
<p>The purpose of this study was to evaluate the effects of tooth displacement on frictional force w...
AIMS: To measure the friction force generated during sliding mechanics with conventional, self-l...
Aim: The aim of this study was to verify the frictional force during sliding mechanics in orthodonti...
Abstract\ud \ud Background\ud The aim of this study wa...
Aim: To evaluate the frictional force between the archwire and orthodontic bracket generated by elas...
The aims of this study were to determine the mean tensile force of four different elastomeric module...
ABSTRACT Objective: To evaluate stainless steel archwire static friction in active and passive sel...
OBJECTIVE: To compare the frictional resistance between self-ligating and conventional brackets tied...
evaluate the frictional force between the archwire and orthodontic bracket generated by elastomeric ...
Objective: To compare the influence of archwire material (NiTi, beta-Ti and stainless steel) and bra...
Introduction: The purpose of this study was to compare the frictional force (FF) generated by variou...