Hydrogen Generating Device for Neural Activity
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Current methods for hydrogen intake, such as aqueous solution administration and gas inhalation, lack immediate psychological and physiological effects, and there is a need for a method to quickly generate favorable brain activation and blood circulation enhancements, particularly for health promotion and stress relief.
Innovation Solution
A bioactivation method involving the continuous suctioning of a hydrogen-oxygen gas mixture at predetermined concentrations for a specified time using a portable hydrogen generating device that electrolyzes water, allowing for easy and convenient hydrogen intake through spontaneous breathing.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If hydrogen is administered through aqueous solution or conventional gas inhalation, then hydrogen intake is achieved, but immediate psychological and physiological effects are not generated
Solution Approach 1:
The patent changes the concentration parameter of hydrogen gas from conventional low levels to a specific high concentration range (30-70% by volume), which enables immediate psychological and physiological effects including brain activation and stress relief that were not achieved with conventional administration methods
Solution Approach 2:
The patent implements periodic inhalation cycles with specific timing (inhalation for several seconds followed by exhalation), repeated multiple times to accumulate hydrogen intake while maintaining immediate effect generation, rather than continuous or single-dose administration
2Measurement precision
If hydrogen generating device is provided for trial cases, then hydrogen intake can be controlled, but device complexity increases
Solution Approach 1:
The patent extracts only the essential function of hydrogen generation from complex medical equipment, using a simple water electrolysis device that produces hydrogen gas without requiring sophisticated control systems, while still achieving precise concentration control through the inhalation method
Solution Approach 2:
The patent introduces a mixing chamber as an intermediary component that combines hydrogen gas from the electrolysis device with ambient air to achieve the target concentration range (30-70% hydrogen), simplifying the overall device structure while maintaining concentration precision
3Productivity
If hydrogen suctioning method is developed for immediate effects, then psychological and physiological activation is achieved, but lack of definite trial results for gas suctioning exists
Solution Approach 1:
The patent incorporates feedback mechanisms through standardized trial protocols that measure immediate psychological and physiological responses (such as stress levels and brain activation) to validate the effectiveness of the hydrogen suctioning method, transforming speculation into evidence-based practice
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
This method effectively generates quick psychological and physiological effects, including brain activation, by providing a controlled intake of hydrogen, enhancing neural activity and blood circulation, and can be used anywhere, anytime, without relying on time or place.
Implementation Method 1
a hydrogen generating device which electrolyzes water
Data Source
AI summary
Provided are a bioactivation method for enhancing a neural activity and/or a blood circulation activity of a living body and a hydrogen generating device for executing this method. In the method, a gas mixture containing hydrogen and oxygen at predetermined concentrations is suctioned by spontaneous breathing continuously for a predetermined time. Moreover, this hydrogen generating device for executing the bioactivation method for enhancing a neural activity and/or a blood circulation activity of a living body includes a body cover member including a battery, a control substrate for controlling power supply from the battery, and a pair of positive/negative electrodes electrically conducted with or shut down from a positive electrode and a negative electrode of the battery by the control substrate.


