HydorLase 980nm+1470nm Dual-Wavelength Laser: One-Stop Comprehensive Surgical Solution for Lifting, Laser Lipolysis, and Filling Procedure

In modern aesthetic and plastic surgery, a single treatment modality is often insufficient to achieve long-lasting, well-balanced facial and body contours. Traditional mechanical liposuction may leave the skin lax after fat removal. Dermal fillers can restore soft-tissue volume but cannot tighten weakened fascia or address tissue laxity. Open facelift surgery, meanwhile, is more invasive and typically requires a longer recovery period.
HydorLase is a minimally invasive 980 nm + 1470 nm dual-wavelength laser platform designed to deliver a comprehensive, layer-by-layer treatment approach. The 980 nm wavelength supports effective intraoperative coagulation and hemostasis, while the 1470 nm wavelength targets water-rich and adipose tissues for efficient fat emulsification and deep collagen remodeling.
By addressing localized fat accumulation, soft-tissue laxity, volume loss, and age-related skin changes within one integrated platform, HydorLase enables aesthetic clinics to provide comprehensive facial and body contouring treatments and serves as a versatile core system for advanced contouring procedures.

I. Core Mechanism of Dual-Wavelength Technology
980nm Laser: Provides powerful hemostasis, vascular closure, and preservation of tissue viability during surgery. The 980nm has a specific absorption peak for hemoglobin, allowing for rapid closure of subcutaneous microvessels during the procedure. This significantly reduces the probability of bleeding, postoperative bruising, and hematoma, while maintaining a clear surgical field for precise manipulation by the surgeon. In autologous fat harvesting or combined treatments, its gentle and controllable photothermal energy protects blood vessels while preserving the viability of fat cells and stem cells, effectively improving transplant survival rates and significantly reducing subcutaneous trauma caused by mechanical aspiration.
1470nm Laser: Highly absorbent and precise fat reduction, deep 3D collagen remodeling. The 1470nm wavelength is located at the strong absorption peak of water molecules and exhibits extremely high selectivity for adipose tissue. It precisely targets the subcutaneous fat layer and deep fascia (SMAS), uniformly liquefying fat cells while stimulating the skin to complete 3D collagen reconstruction: skin tightening is immediately visible after treatment, and fibroblasts continue to generate new collagen for 3-6 months post-treatment. The 1470nm laser reaches deep subcutaneous soft tissue, tightening loose fascia and fundamentally overcoming the problem of sagging skin after liposuction and filler treatments. Minimally invasive fiber optic treatment leaves only a tiny micro-needle puncture on the skin surface, resulting in a shorter recovery period for patients.

II.Three core surgical application scenarios
1.Fiber-optic minimally invasive deep lifting (face and neck contour tightening). Traditional surgical facelifts leave noticeable scars and have long recovery periods; ordinary radiofrequency anti-aging only works on superficial layers, with limited duration of tightening effect. HydorLase dual-wavelength fiber-optic lifting achieves scarless fascia tightening through ultra-fine fiber micro-puncture holes:
The 980nm laser simultaneously closes subcutaneous microvessels during fiber optic puncture, releasing subcutaneous adhesions in areas such as jowls, double chin, and neck wrinkles, significantly reducing the probability of extensive postoperative bruising.
The 1470nm laser applies targeted thermal stimulation to the loose SMAS fascia and deep dermis, lifting sagging soft tissue, tightening the jawline, reducing neck wrinkles, and improving periorbital soft tissue laxity.
2.Laser liposuction (facial and body fat sculpting). Traditional mechanical liposuction only removes fat, often resulting in complications such as uneven skin texture, sagging contours, and cellulite. The HydorLase system integrates fat liquefaction and skin tightening in one procedure:
1470nm photothermal uniform liquefaction of fat cells significantly reduces suction resistance, minimizes mechanical tearing of subcutaneous tissue, and avoids unevenness;
980nm simultaneous fat removal/dissolving for efficient hemostasis, with clinically tested intraoperative bleeding only 1/3 of that of traditional liposuction, eliminating the need for prolonged use of heavy pressure bandages post-operatively;While removing excess fat, 1470nm stimulates simultaneous collagen contraction, significantly reducing post-liposuction skin laxity and cellulite.
Applicable areas: Double chin liposuction, jawline sculpting, upper arm fat accumulation (bat wings), waist and abdomen shaping, and stubborn fat on the thighs.
3.This device is compatible with the entire filling procedure (autologous fat/hyaluronic acid filler). Simple autologous fat grafting and hyaluronic acid fillers only increase volume and cannot improve the original skin laxity; subcutaneous fibrosis in the injection area can easily induce nodules, uneven contours, and low fat survival rates. This device is compatible with the entire filling procedure, covering three major stages: pre-operative preparation, fat harvesting, and post-operative contour repair.
(1) Pre-treatment of the subcutaneous tissue before filling: Before injection, a dual-wavelength laser scan is used to scan the filling area, loosening subcutaneous fibrous adhesions, optimizing microcirculation in the transplant bed, activating fibroblasts in advance, and creating a suitable regenerative environment for fat survival, significantly reducing the probability of nodules, calcification, and uneven contours after autologous fat transplantation.
(2) Optimization of fat harvesting: During autologous fat filling, the dual effects of gentle emulsification of fat by 1470nm and perfect hemostasis by 980nm are utilized to fully preserve the activity of adipose stem cells; the purified fat particles have higher activity, significantly improving the survival rate of transplanted fat and shortening the recovery period of the donor area.
(3) Post-filling contour refinement: Filling increases soft tissue volume, pulling the skin and causing sagging and fine lines. After filling, 1470nm reshapes deep collagen and tightens the expanded skin, while 980nm relieves inflammatory swelling and bruising; balancing the fullness of the filling with skin firmness reduces facial puffiness and sagging, while simultaneously refining pores, reducing fine lines, and optimizing overall skin texture.

III.Unique clinical advantages of the equipment
Full-Layer Closed-Loop Targeted Treatment: A single device covers four layers of skin tissue: epidermal tissue, dermal collagen, subcutaneous fat, and fascia. It can perform fiber optic lifting, laser liposuction, and filler-related procedures, eliminating the need for multiple devices and improving operational efficiency.
Minimally Invasive and Low-Damage, Rapid Social Recovery: Only tiny fiber optic puncture points, leaving no surgical scars; controllable minimal thermal damage, with most redness and swelling subsiding within 3-7 days, meeting patients' needs for scarless procedures and a quick return to daily life.
Safe and Controllable Intraoperative Procedure, Significantly Reducing Complication Risk: 980nm real-time hemostasis reduces hematoma and subcutaneous bruising; 1470nm precise temperature and energy control significantly reduces the probability of epidermal and subcutaneous nerve burns, allowing safe operation in thin-skinned and sensitive areas such as the periorbital region and jawline.
IV.Suitable for
Individuals with moderate to severe facial sagging, jowls, or double chin who are averse to surgical facelifts and prefer minimally invasive lifting options;
Individuals with stubborn fat deposits in specific areas who are concerned about skin laxity and unevenness after traditional liposuction;
Individuals planning to undergo autologous fat/hyaluronic acid fillers to improve fat survival rates and optimize post-operative contours;
Individuals with sagging skin and noticeable fine lines after filler procedures who require secondary tightening and repair;
Individuals with postpartum fat deposits in the abdomen and upper arms accompanied by skin laxity who wish to achieve both fat reduction and skin tightening improvements simultaneously.
Conclusion
HydorLase 980nm+1470nm minimally invasive dual-wavelength laser platform integrates three core plastic surgery procedures: fiber-optic minimally invasive lifting, laser lipolysis, and filler injections. This device significantly reduces the need for single surgeries that only adjust volume, failing to simultaneously repair skin and fascia laxity, thus achieving three-dimensional rejuvenation of fat, fascia, and skin.
For medical aesthetic institutions and plastic surgeons, this device provides a comprehensive, safe, and efficient contouring solution, enhancing their in-house anti-aging surgical program system, creating a differentiated competitive advantage, and improving their market competitiveness.












