Neural interface Technology / Science in Interstellar Wars | World Anvil
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Neural interface

The neural interface, commonly known as a neural implant is a type of technology used by the USC, and New USSR Militaries.  

Functions

The basic function of the standard neural interface is to act as a "friend or foe" indicator, so that radar signatures will pick up the owner's signature and identify it as friendly. This way, the wearer appears as a "yellow" blip on the motion tracker of another soldier's heads-up display and friendly fire is less likely. Additionally, the implant can be used to track and home in on its wearer in the event of capture by enemy forces, for example. While normally detectable under layers of rubble or rock, the signal is no longer reliable several meters underground. More advanced models issued to key personnel possess a number of additional functions, including connections to data networks, enabling the wearer to coordinate with other command personnel as well as AIs and securely access sensitive data. War Games training simulators employ the participants' neural interfaces to provide them with simulated sensory input to make the training scenarios more authentic.   The neural interface is implanted at the base of the skull and can only be removed through sophisticated surgery. The most basic interface, known as a "neural chip", is implanted in all USC military personnel upon activation, but it can be replaced with a more specialized neural lace should the need arise. Ship commanders receive command neural interfaces, while the Knights receive a more specialized "KNIGHT neural interface". The neural chip is completely embedded under the skin and possesses no external interface port.   Expensive and requiring complicated surgery when first introduced, neural interfaces and their mediating computing systems could be fitted in a simple outpatient clinical procedure by 2389. High-bandwidth interfaces can be paired with advanced expert systems to augment – and even bypass – the human motor system, reducing the physiological stress of high-performance combat exoskeletons to levels that do not require extensive skeletal reinforcement.
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