Lazerian BioTech
Tomorrows BioTech Today

- Kinetic Impact Dispersion – Absorbs and redistributes blunt force trauma from punches, falls, and concussive blasts to minimize injury.
- Puncture and Laceration Resistance – Reinforced nanofiber synthskin reduces damage from knives, claws, and sharp objects.
- Temperature Adaptation – Protects against extreme heat and cold by regulating temperature exposure.
- Radiation and Environmental Protection – Offers moderate resistance to radiation exposure, reducing cellular damage in hazardous environments.
- Low-Level Energy Dispersal – Can absorb and dissipate minor energy-based attacks, such as weak blaster shots or stun weaponry.
- Bioreactive Regeneration – The nanofiber matrix slowly repairs itself from minor wear and tear, prolonging durability.
- Subdermal Integration – Sits beneath the skin for seamless, non-bulky protection without the need for visible armor.
- Shock Absorption Technology – Reduces internal damage from high-impact strikes or explosions.
- Adaptive Bio-Infusion Process – Bonds directly with the body for natural movement without restricting agility.
- Crystal Shell Beetle Shell - Dust from the shells of the Crystal Shell Beetle helps the user retain typical haptic feedback.
- Shock Absorption
- Regeneration
- Low-Level energy dispersion
- Temperature regulation
- Kinetic and Puncture resistance
- No lightsaber protection
- Not resistant to standard blasters
- Denser than standard skin
Aegis Dermal Layering, developed by Lazerian BioTech, is a cutting-edge subdermal augmentation designed to enhance the body's natural resilience against physical and environmental hazards. Engineered with shock absorption technology, the bio-reactive nanofiber mesh embedded beneath the skin disperses the force of blunt impacts, significantly reducing the risk of fractures and internal damage. The regenerative properties of the nanofiber matrix allow the layering to repair minor tears and abrasions over time, prolonging its effectiveness and durability. Additionally, the system provides low-level energy dispersion, offering limited protection against stun weaponry and glancing energy discharges. To further enhance survivability in extreme environments, temperature regulation technology adjusts to fluctuations in heat and cold, protecting users from thermal shock. The kinetic and puncture resistance properties ensure increased protection against blades, shrapnel, and concussive forces, making it a preferred augmentation for soldiers, law enforcement, and high-risk professionals.
Despite its numerous advantages, Aegis Dermal Layering has clear limitations. It provides no protection against lightsabers, as its material composition lacks the necessary resistance to withstand the cutting power of plasma blades. Furthermore, while it offers low-level energy dispersion, it is not resistant to standard blaster fire, meaning direct hits will still cause severe injury. Another notable drawback is its increased density compared to standard skin, which, while not enough to restrict movement, may slightly reduce tactile sensitivity, particularly in reinforced areas. Despite these weaknesses, Aegis Dermal Layering remains one of the most advanced defensive augmentations available, offering a discreet and effective balance between protection and agility for those who operate in high-threat environments.
(Image sourced from https://chatgpt.com)
Out Of Character Info
Intent:
To create a dermal defensive armor cybernetic system.
Image Source(s):
https://chatgpt.com
Canon Link:
N/A
Permissions:
N/A
Primary Source(s):
N/A
Technical Information
Affiliation:
Lazerian BioTech Approved Individuals
Model:
Aegis Dermal Layering
Modular:
No
Material:
Nanofiber Mesh, Crystal Shell Beetle Shell