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Lower energy and pulse stacking. A safer alternative for skin tightening using fractional CO2 laser
Motta, Marcos Matias; Stelini, Rafael Fantelli; Calderoni, Davi Reis; Gilioli, Rovilson; Kharmandayan, Paulo.
Afiliação
  • Motta, Marcos Matias; Universidade de Campinas. Faculdade de Ciências Médicas. Campinas. Brasil
  • Stelini, Rafael Fantelli; Universidade de Campinas. Faculdade de Ciências Médicas. Departamento de Patologia Anatômica. Campinas. Brasil
  • Calderoni, Davi Reis; Universidade de Campinas. Faculdade de Ciências Médicas. Campinas. Brasil
  • Gilioli, Rovilson; Universidade de Campinas. Centro Multidisciplinar para Investigação Biológica na Área da Ciência em Animais de Laboratório. Campinas. Brasil
  • Kharmandayan, Paulo; Universidade de Campinas. Faculdade de Ciências Médicas. Divisão de Cirurgia Plástica. Campinas. Brasil
Acta cir. bras. ; 31(1): 28-35, Jan. 2016. ilus, tab, graf
Article em En | VETINDEX | ID: vti-20424
Biblioteca responsável: BR68.1
Localização: BR68.1
ABSTRACT

PURPOSE:

To evaluate the effect of different energies and stacking in skin shrinkage.

METHODS:

Three decreasing settings of a fractional CO2 laser were applied to the abdomen of Twenty five Wistar rats divided into three groups. Group I (n=5) was histologically evaluated for microthermal zones dimensions. Groups II and III (n=10 each) were macroscopic evaluated with freeware ImageJ for area contraction immediately and after 30 and 60 days.

RESULTS:

No statistical significance was found within microthermal zone histological dimensions (Group I) in all settings studied. (Ablation depth 76.90 to 97.18µm; Coagulation depth 186.01 to 219.84 µm). In Group II, macroscopic evaluation showed that all settings cause significant immediate skin contraction. The highest setting cause significant more intense tightening effect initially, contracting skin area from 258.65 to 179.09 mm2. The same pattern was observed in Group III. At 30 and 60 days, the lowest setting significantly sustained contraction.

CONCLUSION:

Lower fractional CO2 laser energies associated to pulse stacking could cause consistent and long lasting tissue contraction in rats.(AU)
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