SMA905 polyimide-coated holmium laser fiber for medical endoscopes
SMA905 polyimide-coated holmium laser fiber for medical endoscopes
SMA905 Laser Connector
SMA905 Laser Connector
SMA905 Laser Connector
Endolaser Fiber Optic

SMA905 polyimide-coated holmium laser fiber for medical endoscopes

This fiber features a polyimide coating and an SMA905 connector, engineered for holmium laser energy delivery in medical endoscope systems. It provides stable transmission, high thermal resistance, and reliable flexibility, ensuring precise and safe performance in minimally invasive surgical applications.

Specification
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In the field of medical cosmetology, polyimide optical fiber has brought innovation to fat dissolving technology with its unique properties. Fiber optic fat dissolving uses the plasma photothermal dissolution theory to apply specific wavelength laser energy to the fat layer. As a key transmission component, polyimide optical fiber plays an important role.


Functions:

1. Accurate energy delivery: With the excellent optical properties of the high-purity quartz fiber core and cladding, the specific wavelength laser required for lipolysis can be efficiently transmitted to the fat layer, ensuring that the energy acts accurately on the fat cells and avoiding excessive damage to surrounding blood vessels, nerves and other tissues.

2. Ensure stable treatment: The low energy loss characteristics allow more laser energy to reach the target area directly, and with the mechanical properties of high temperature resistance and bending resistance, it can continuously and stably transmit energy during the lipolysis operation, ensuring that the laser acts evenly on the fat tissue, helping to achieve efficient and controllable fat dissolution.

3. Improve treatment safety: Good biocompatibility allows it to have no immune rejection reaction after being inserted into the human body, and it can stay in the body for a certain period of time to complete the treatment, reducing the risk of complications such as postoperative infection and inflammation, and providing reliable support for the smooth implementation of minimally invasive lipolysis surgery.


The specific application scope includes:

1. Facial lipolysis: suitable for the mandibular margin, double chin, cheeks and other parts. It uses the thin characteristics of optical fiber to accurately deliver to the fat layer through tiny incisions, dissolve excess fat, improve facial contours, and cause little damage to peripheral nerves and blood vessels.

2. Local body lipolysis: It can be used for local fat reduction in the abdomen, waist, thighs, arms, buttocks and other parts. It can achieve targeted lipolysis and shape body lines for areas with thick fat accumulation or poor results of traditional fat reduction methods.

3. Fat dissolution in difficult-to-handle parts: such as accessory breasts, inner knees, ankles and other delicate or special parts. With the flexibility and precision of optical fiber, it can effectively dissolve local fat and solve problems that are difficult to reach with traditional surgery.

4. Auxiliary liposuction repair: In the case of local fat unevenness and subcutaneous nodules after liposuction, laser energy can be transmitted through polyimide optical fiber to soften fat, improve skin smoothness and enhance the repair effect.



Polyimide optical fiber for lipid dissolution

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