Background: Body contouring with liposuction including laser liposuction is one of the most commonly performed cosmetic procedures. Laser lipolysis is generally well tolerated with high patient satisfaction rates. Laser lipoplasty has been postulated to offer the unique advantage of skin tightening following removal of subcutaneous fat. The search continues for an optimal wavelength that would allow for: (1) efficient targeting of adipocytes while targeting dermal collagen and collagen bound water to allow for dermal remodeling and (2) targeting hemoglobin and vessel wall collagen to decrease intra-operative bleeding and consequent post-operative bruising.
Objective: The main objective of this study was to determine the effects of 1064 nm and 1320 nm Nd:YAG lipolysis on fresh ex vivo human abdominal fat pads.
Materials & Methods: Ipsilateral 1064 nm Nd:YAG lipolysis and contralateral 1320 nm Nd:YAG lipolysis were performed on ex vivo human abdominal fat pads from comparable topographic areas of the body of the same patient. Biopsy specimens were assessed for alterations of the epidermis, papillary and reticular dermis and subcutaneous fat.
Conclusion: Our histological analysis demonstrated a wavelength dependent differential dermal response. Increasing fluence led to progressively more extensive dermal coagulation with associated epidermal thermal injury with 1320 nm Nd:YAG leading to more extensive collagen coagulation as compared to 1064 nm Nd:YAG.
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Lasers Med Sci
July 2024
Ministry of Health, Jamal Abdel Nasser street, PO Box 5, Sulibikhat, 2170, Kuwait.
Objective: To determine the effectiveness of picosecond KTP in reducing peri-ocular dark circles caused mainly by excessive pigmentation and to compare Picosecond KTP with Thulium laser ability in reducing the intensity and extent of peri-ocular dark circles.
Materials And Methods: This split-face prospective study included twelve women with periorbital dark circles (pigmented or mixed-pigmented type). The left lower eyelid was treated using the PicoHi machine (HIRONIC Ltd), a full beam Q-switched Nd-YAG provided by KTP crystal (523 nm) at settings of 0.
The investigation had the purpose to study the lethal effect of laser infrared radiation (1220-1320 nm) on various genotypes of E. coli K-12 cells. Laser was produced by a parametric LiNbO3 light generator pumped up by the NdYAG second harmonic radiation.
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