Multi-Functional Hyperbaric Oxygen Device With Integrated Remote Mind-Body Synergy System
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Solution Overview
Problem
Conventional hyperbaric oxygen therapy (HBOT) chambers lack integration of advanced therapeutic modalities such as light therapy, sleep assistance, and remote mind-body synergy systems, limiting their ability to address holistic patient needs, including psychological wellness and chronic disease management.
Innovation Solution
A multi-functional hyperbaric oxygen device that integrates hyperbaric oxygen therapy, light therapy, sleep assistance, and temperature regulation with a remote mind-body synergy system, allowing for personalized, data-driven therapies and real-time monitoring of physiological and psychological parameters.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If conventional hyperbaric oxygen chambers are used, then physical recovery treatment is provided, but psychological wellness and holistic health needs are not addressed
Solution Approach 1:
The patent combines multiple therapeutic modalities including hyperbaric oxygen therapy, light therapy, sound therapy, and temperature regulation into a single integrated chamber system. This merging of previously separate treatment devices into one unified system enables simultaneous physical and psychological healing interventions, directly resolving the contradiction between providing comprehensive holistic care and managing device complexity through functional integration.
Solution Approach 2:
The hyperbaric chamber is designed with multi-functional capabilities, serving not only as a physical therapy environment but also as a psychological wellness facility. The chamber can simultaneously deliver oxygen therapy, provide therapeutic lighting, generate calming sounds, and regulate temperature, making it a universal treatment platform that addresses diverse health needs including both physical recovery and mental health support.
2Adaptability or versatility
If conventional hyperbaric oxygen chambers are used, then physical ailments are treated, but sleep disturbances and chronic stress management are not addressed
Solution Approach 1:
The patent integrates sleep assistance features including therapeutic lighting and sound therapy directly into the hyperbaric chamber environment. This combination allows patients to receive multiple therapeutic benefits simultaneously during their treatment sessions, addressing both physical ailments and sleep disturbances without requiring separate devices or facilities, thereby enhancing ease of operation and accessibility.
3Extent of automation
If remote psychological treatments are provided, then mental health support is given, but real-time physiological monitoring and data-driven adjustments are not available
Solution Approach 1:
The patent incorporates real-time physiological monitoring sensors that continuously track patient vitals such as heart rate, respiration, and oxygen saturation. This feedback data is transmitted to remote healthcare providers who can adjust therapeutic parameters dynamically based on actual patient responses. The closed-loop feedback system enables precise, data-driven adjustments to treatment protocols, resolving the contradiction between remote monitoring capability and measurement precision.
4Reliability
If specialized treatment centers are visited frequently, then comprehensive care is received, but accessibility for patients in remote areas or with mobility restrictions is limited
Solution Approach 1:
The patent extracts the essential therapeutic functions from centralized specialized treatment centers and incorporates them into portable or home-based hyperbaric chambers. By taking out the core capabilities of professional therapy environments and making them available in decentralized locations, the system maintains treatment effectiveness while dramatically improving accessibility for patients in remote areas or with mobility restrictions.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The device enables comprehensive health management by providing personalized therapies that address both physical and psychological health, improving accessibility for patients with mobility challenges, and ensuring patient safety through automated systems.
Implementation Method 1
HBOT involves the administration of oxygen in a pressurized chamber, which enhances oxygen supply to tissues
Implementation Method 2
Light therapy, particularly the use of specific wavelengths such as red and near-infrared light, has been shown to promote healing, reduce inflammation, and improve sleep quality
Implementation Method 3
The temperature regulation unit is configured to regulate and maintain a predefined temperature range to optimize therapeutic conditions within the treatment chamber
Data Source
AI summary
The present invention relates to a multi-functional hyperbaric oxygen device that integrates hyperbaric oxygen therapy unit, light therapy unit, temperature regulation unit, and a remote mind-body synergy system for chronic disease recovery, physiological and psychological health improvement, and comprehensive health management. The multi-functional hyperbaric oxygen device allows users to receive personalized, data-driven therapies, adjusting oxygen levels, light wavelengths, and temperature settings based on real-time physiological and psychological monitoring. The multi-functional hyperbaric oxygen device enables users to conduct therapy sessions from the comfort of their home, thereby minimizing the need for frequent visits to specialized medical centers, and improving accessibility for those with mobility challenges. The multi-functional hyperbaric oxygen device ensures patient safety by incorporating automated oxygen regulation, CO2 management, and safety sensors to prevent risks associated with excessive oxygen exposure and ensure optimal therapeutic conditions.


