Objective: To determine optimal settings for use of diode lasers to treat vascular malformations in the head and neck. Background: Diode lasers are generally accepted as effective tools to treat vascular malformations in the head and neck, yet there are no standardized treatment protocols for this treatment approach. Settings for these lasers, in addition to laser type and size and lesion depth are important variables for designing appropriate treatments for vascular malformations. Materials and methods: Vascular venous malformations (VeMs) were classified into five groups according to high-definition ultrasound measurements of superficial dimensions (<1, 1-3, and >3 cm) and lesion extension depth (≤5, and >5 mm). Using a 800 ± 10 ...
Background: Diode laser technology with a similar wavelength to 1,064 nm Nd:YAG solid-state lasers h...
Purpose This study aims to evaluate the efficacy and safety of intralesional diode laser pretreatmen...
Photoangiolytic lasers such as the 532-nm potassium-titanyl-phosphate (KTP) and the novel 445-nm blu...
Objective: To determine optimal settings for use of diode lasers to treat vascular malformations in ...
The current work examined a consecutive series of patients presenting vascular malformations (VMs) a...
BACKGROUND: About 50% of vascular malformations are located at the head and neck region where they c...
We report two treatment strategies using intralesional laser photocoagulation (ILP) for large venous...
Objective: To evaluate the effectiveness of photocoagulation with high-intensity diode laser in the ...
Vascular malformations are a very heterogeneous group of circulatory system’s diseases that can invo...
BACKGROUND. Laser treatment of venous malformations is a major challenge because of the large variat...
Objective/BackgroundOver the short term, endovenous laser ablation (EVLA) has been found to be safe ...
Introduction: The appearance of vascular anomalies in the orofacial area is a common condition, whic...
BackgroundVenous malformations (VMs) are the commonest vascular anomalies. Treatment of extratruncul...
AbstractVascular anomalies are disorders of the endothelium and related tissue resulting in an aberr...
A wide range of therapeutic options is available to treat vascular anomalies, arising from the syste...
Background: Diode laser technology with a similar wavelength to 1,064 nm Nd:YAG solid-state lasers h...
Purpose This study aims to evaluate the efficacy and safety of intralesional diode laser pretreatmen...
Photoangiolytic lasers such as the 532-nm potassium-titanyl-phosphate (KTP) and the novel 445-nm blu...
Objective: To determine optimal settings for use of diode lasers to treat vascular malformations in ...
The current work examined a consecutive series of patients presenting vascular malformations (VMs) a...
BACKGROUND: About 50% of vascular malformations are located at the head and neck region where they c...
We report two treatment strategies using intralesional laser photocoagulation (ILP) for large venous...
Objective: To evaluate the effectiveness of photocoagulation with high-intensity diode laser in the ...
Vascular malformations are a very heterogeneous group of circulatory system’s diseases that can invo...
BACKGROUND. Laser treatment of venous malformations is a major challenge because of the large variat...
Objective/BackgroundOver the short term, endovenous laser ablation (EVLA) has been found to be safe ...
Introduction: The appearance of vascular anomalies in the orofacial area is a common condition, whic...
BackgroundVenous malformations (VMs) are the commonest vascular anomalies. Treatment of extratruncul...
AbstractVascular anomalies are disorders of the endothelium and related tissue resulting in an aberr...
A wide range of therapeutic options is available to treat vascular anomalies, arising from the syste...
Background: Diode laser technology with a similar wavelength to 1,064 nm Nd:YAG solid-state lasers h...
Purpose This study aims to evaluate the efficacy and safety of intralesional diode laser pretreatmen...
Photoangiolytic lasers such as the 532-nm potassium-titanyl-phosphate (KTP) and the novel 445-nm blu...