Repeat Mode, also known as Drilling Mode, operates through a mechanism of progressive, step-by-step ablation utilizing extremely short pulse widths and repeated irradiation. Instead of attempting to remove a deep lesion in a single continuous burst, this technique ablates the tissue layer by layer, extending precisely into the deep dermis.
By compartmentalizing the energy delivery into short, repeated pulses, this mode allows for the complete removal of deep Syringoma cell nests while critically limiting heat accumulation to prevent scarring.
The Mechanics of Progressive Ablation
Utilizing Short Pulse Widths
The core of this mechanism relies on the generation of extremely short pulse widths.
By keeping the pulse duration brief, the system delivers energy rapidly without allowing time for significant thermal diffusion into surrounding healthy tissue.
Step-by-Step Tissue Removal
The "Drilling" action is achieved through repeated irradiation over the same specific target area.
Rather than vaporizing the full depth of the lesion at once, the laser removes the tissue in incremental steps.
Precision and Visual Feedback
Real-Time Observation
A distinct advantage of the step-by-step approach is the ability to observe the tissue state between pulses.
After each layer is ablated, the operator can visually verify the depth and condition of the remaining tissue.
Controlled Deep Dermal Access
Syringoma cell nests are frequently located in the middle and deep dermis, making them difficult to reach with standard surface ablation.
Drilling Mode allows the operator to penetrate to these specific depths with high precision to ensure total removal of the pathology.
Understanding the Safety Trade-offs
Preventing Heat Accumulation
A common pitfall in treating deep lesions is excessive heat accumulation, which can damage the reticular dermis.
By using short pulses and incremental ablation, Drilling Mode dissipates heat more effectively than continuous high-energy delivery.
Avoiding Concave Scarring
The primary risk of deep tissue ablation is the formation of concave scarring (depressions in the skin) post-healing.
Because this mechanism controls the thermal damage zone and prevents overheating, it significantly reduces the likelihood of these adverse aesthetic outcomes.
Optimizing Treatment Outcomes
To effectively utilize Drilling Mode for deep Syringoma lesions, consider your clinical priorities:
- If your primary focus is efficacy: Leverage the progressive drilling capability to ensure you reach and remove cell nests located in the deep dermis, which prevents recurrence.
- If your primary focus is safety: Rely on the short pulse widths and incremental observation to minimize heat buildup and prevent concave scarring.
This technique transforms the removal of deep lesions from a risky, blind procedure into a controlled and visible process.
Summary Table:
| Feature | Drilling (Repeat) Mode Mechanism | Clinical Benefit |
|---|---|---|
| Energy Delivery | Short pulse widths with repeated irradiation | Minimizes thermal diffusion to healthy tissue |
| Ablation Style | Step-by-step layer removal (Drilling) | Reaches deep dermis cell nests precisely |
| Visual Control | Real-time observation between pulses | Enables depth verification to prevent over-treatment |
| Safety Focus | Controlled heat dissipation | Reduces risk of concave scarring and recurrence |
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Our advanced CO2 Fractional lasers and specialized laser systems are designed with the precision of 'Drilling Mode' to ensure your patients receive effective, scar-free treatments. Beyond lasers, our portfolio includes:
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References
- Rieko Tsubouchi. Carbon Dioxide Laser Treatment for Syringoma. DOI: 10.2530/jslsm.jslsm-36_0051
This article is also based on technical information from Belislaser Knowledge Base .
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