Objective: The aim of this study was to investigate the effects of 670-nm, 780-nm, and 830-nm laser irradiation on cell proliferation of normal primary osteoblast ( MC3T3) and malignant osteosarcoma ( MG63) cell lines in vitro. Background: Some studies have shown that laser phototherapy is able to stimulate the osteogenesis of bone tissue, increasing osteoblast proliferation and accelerating fracture consolidation. It has been suggested that laser light may have a biostimulatory effect on tumor cells. However, the mechanism by which the laser acts on cells is not fully understood. Materials and Methods: Neonatal, murine, calvarial, osteoblastic, and human osteosarcoma cell lines were studied. A single laser irradiation was performed at thre...
PubMed ID: 22235971Objective: It was the aim of the present study to evaluate whether the laser irra...
The present in vitro study evaluated parameters of osteogenesis under the influence of low-level las...
Low-level laser therapy (LLLT) is widely used in regenerative medicine and in dental therapy by virt...
The objective of this study was to examine the in vitro effect of a single or a multiple doses of lo...
International audienceBACKGROUND AND OBJECTIVE: Low-Level Laser Therapy (LLLT) has been suggested to...
Applications of laser therapy in biostimulation and healing injured tissues are widely described in ...
Applications of laser therapy in biostimulation and healing injured tissues are widely described in ...
Several studies have shown that low-level laser irradiation (LLLI) has beneficial effects on bone re...
Several studies have shown that low-level laser irradiation (LLLI) has beneficial effects on bone re...
Objective: The purpose of this study was (i) to develop a method for successfully seeding osteoblast...
Abstract Purpose: To analyze aspects of the biomodulating effect of light in biological tissues, b...
Introduction: Photomodulation is a promising strategy for optimizing tissue healing, but its photomo...
Objective: the purpose of this study was (i) to develop a method for successfully seeding osteoblast...
Introduction: Low level laser therapy (LLLT) also known as photobiomodulation, is a treatment that u...
Background and Objective: High-power laser has recently become a physical stimulus for bone regenera...
PubMed ID: 22235971Objective: It was the aim of the present study to evaluate whether the laser irra...
The present in vitro study evaluated parameters of osteogenesis under the influence of low-level las...
Low-level laser therapy (LLLT) is widely used in regenerative medicine and in dental therapy by virt...
The objective of this study was to examine the in vitro effect of a single or a multiple doses of lo...
International audienceBACKGROUND AND OBJECTIVE: Low-Level Laser Therapy (LLLT) has been suggested to...
Applications of laser therapy in biostimulation and healing injured tissues are widely described in ...
Applications of laser therapy in biostimulation and healing injured tissues are widely described in ...
Several studies have shown that low-level laser irradiation (LLLI) has beneficial effects on bone re...
Several studies have shown that low-level laser irradiation (LLLI) has beneficial effects on bone re...
Objective: The purpose of this study was (i) to develop a method for successfully seeding osteoblast...
Abstract Purpose: To analyze aspects of the biomodulating effect of light in biological tissues, b...
Introduction: Photomodulation is a promising strategy for optimizing tissue healing, but its photomo...
Objective: the purpose of this study was (i) to develop a method for successfully seeding osteoblast...
Introduction: Low level laser therapy (LLLT) also known as photobiomodulation, is a treatment that u...
Background and Objective: High-power laser has recently become a physical stimulus for bone regenera...
PubMed ID: 22235971Objective: It was the aim of the present study to evaluate whether the laser irra...
The present in vitro study evaluated parameters of osteogenesis under the influence of low-level las...
Low-level laser therapy (LLLT) is widely used in regenerative medicine and in dental therapy by virt...