FUE Hair Transplant
An advanced hair restoration technique designed to deliver natural, permanent results with minimal scarring.
FUE (Follicular Unit Extraction) is one of the most modern and widely preferred hair transplant methods. At Dentgen, we focus on achieving dense, natural-looking hairlines with precision and long-term success.
What is FUE Hair Transplant?
FUE is a minimally invasive hair transplant technique where individual hair follicles are extracted from the donor area and implanted into areas with thinning or hair loss.
This method allows for natural growth patterns and avoids visible scarring.
How It Works
The process begins with a detailed analysis of your hair loss pattern and donor area. A personalized hairline design is created to match your facial structure.
Hair follicles are carefully extracted one by one and implanted into the target areas with precision. This ensures natural density and direction for optimal aesthetic results.
Benefits of FUE Hair Transplant
- Natural-looking hairline and density
- Minimally invasive with no visible linear scar
- Permanent and long-lasting results
- Faster recovery compared to traditional methods
- Improves confidence and appearance
- Custom-designed for each individual
Is FUE Hair Transplant Right for You?
- Male pattern hair loss
- Receding hairline
- Thinning crown area
- Hair density improvement
- Desire for natural and permanent results
- Hair restoration after previous treatments
If you are looking for a long-term solution with natural outcomes, FUE is an excellent option.
What to Expect During Your Treatment
The procedure is performed under local anesthesia and typically takes several hours depending on the number of grafts.
After the treatment, mild redness or sensitivity may occur temporarily. Hair growth begins gradually, with visible improvements over the following months.
Why Choose Dentgen?
Natural Hairline Design
We create hairlines that match your facial proportions for realistic results.
Precision Technique
Our team ensures accurate extraction and implantation for maximum density and success.