NEUROCOM
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NeuroCom is a device that acts both as a Augmentative & Alternative Communication (AAC) device and a Data Recollection Tool (DRT).


Augmentative & Alternative Communication (AAC)
NeuroCom modernizes the traditional “Big Picture” communication system which is outdated. 


Losing ten minutes pointing childish images on a paper, asking out loud with a desesperate eye contact and wait for any kind of movement that would approve the initial question is as tedious as reading this paragraph and not acceptable from a human dignity persepective.


That’s where NeuroCom enters in the equation as a wearable communication device that connects wirelessly to other units of its kind and to a cloud-based, AI-powered software platform.


Designed for patients with verbal communication limitations resulting from neurological conditions, it adapts to each person's specific motor capabilities and communication needs, offering multiple interaction modes within a single ecosystem.






Binary Communication (BC)

For patients who rely on binary input, NeuroCom offers a modernized reinterpretation of the Big Picture communication method. The charging base which is equipped with a built-in speaker, takes an active role in the conversation: it reads questions aloud, intelligently navigating through categories and options to progressively narrow down what the patient wants to express. The patient responds with a single press of the NeuroCom wearable to indicate [NO], or a long press to indicate [YES].


To ensure the communication is visible to everyone in the room, both the wearable and the charging base emit sound and illuminate in colour with each response [NO] & [YES] providing an immediate, unambiguous visual and auditory output for caregivers, family members, or medical staff nearby.


The AI-powered software behind the system does more than follow a script. Over time it learns the patient's individual patterns, preferences, and recurring needs, continuously refining the path it takes to reach the right answer faster. What might take many exchanges at the start becomes progressively more intuitive as the system trains on real interactions.

Morse Communication (MC)
For patients with morse literacy, NeuroCom offers a tactile communication channel with two distinct output modes, depending on who is receiving the message.


When communicating with another person wearing a NeuroCom unit, the patient's morse input is captured by the wearable and transmitted wirelessly to the recipient's device, which reproduces the message as a sequence of vibration patterns against the skin. This allows a private, touch-based exchange between two NeuroCom users. Silent, discreet, and requiring no intermediary.


When the message is directed outward to people who do not use morse, the system takes a different approach. The patient's morse input is received by the charging base, which processes it through the AI-powered software and reads the message aloud through its built-in speaker, giving the patient a real voice in any conversation regardless of who they are speaking to.


Together, these two modes ensure that morse-literate patients are never limited by their audience whether they are communicating with someone who shares their language or with someone who does not.
Data Recollection Tool (DRT)


In this hospitalary environment, every single room and healthcare worker is equipped with a NeuroCom device. Rather than acting as isolated gadgets, these devices automatically link up to form a continuous, intelligent network spanning the entire building and working space.

Whether a doctor is moving between wards or a patient is resting in their room, they are active nodes in a live, interconnected web.

This network feeds dir ectly into an AI-Powered software platform that acts as the central nervous system of the facility. The platform seamlessly recollects and processes an immense variety of operational data transmitted by the NeuroCom units, including patient requests, response metrics or path & logistics. 

Instead of burying hospital administrators in endless spreadsheets, this massive influx of information is translated into an intuitive, interactive 2D plan of the building.

By looking at the digital layout, management can click on any specific room to access detailed, real-time data. This visualization bridges the gap between raw data and actionable insight, allowing the hospital to spot bottlenecks or resource shortages immediately.

The ultimate goal of this system is to look at the big picture, using long-term data trends to better adapt to future patient needs and optimize staff workflows. 

Over time, the AI platform effectively becomes the ultimate "long-time worker", the veteran colleague who has been at the office for decades and knows absolutely every tip, trick, and quirk of the building.

Because it tracks everything, the system possesses unmatched institutional knowledge. It knows which rooms receive the best natural sunlight, which areas consistently boast the fastest response times ... and even which workstation is the closest to the coffee machine.
Shape & Interaction
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