Deep Brain Sound Stimulation Frequency Mapping

Resolve Bottlenecks,
Find Innovative Solutions
Generate Solutions

Solution Overview

Problem

Traditional brainwave entrainment methods lack precision to effectively target specific brain regions, limiting their therapeutic effectiveness for a wide range of neurological and psychological disorders.

Innovation Solution

Deep Brain Sound Stimulation (DBSS) uses precisely modulated audio signals with a frequency mapping system involving primary and secondary frequency numbers to target specific brain regions, enabling fine-tuned neuromodulation.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Measurement precision

If traditional brainwave entrainment methods (binaural beats, monaural beats, isochronic tones) are used, then general frequency ranges can be produced, but precision to target specific brain regions is insufficient

Engineering Contradiction:
Improvetargeting precisionVSAvoidfrequency mapping system complexity
Core Design Contradiction:
Measurement precisionVSDevice complexity

Solution Approach 1:

The frequency spectrum is segmented into primary frequencies (30-250 Hz) corresponding to major brain regions and secondary frequencies (0.1-10 Hz) for fine-tuning within subregions. This hierarchical segmentation enables precise targeting of specific brain areas while maintaining system manageability through structured organization.

Inventive Principle:
Principle #1Segmentation

Solution Approach 2:

Different frequency combinations are assigned to different brain regions based on their specific therapeutic needs. Each brain region receives customized frequency parameters (primary and secondary frequencies) tailored to its functional characteristics, enabling localized neuromodulation rather than global stimulation.

Inventive Principle:
Principle #3Local quality

2Adaptability or versatility

If general frequency ranges are used for brainwave entrainment, then broad coverage is achieved, but fine-tuning capabilities for precise neuromodulation are lacking

Engineering Contradiction:
Improvetreatment coverageVSAvoidfrequency modulation precision
Core Design Contradiction:
Adaptability or versatilityVSManufacturing precision

Solution Approach 1:

The system dynamically adjusts frequency parameters during therapy sessions based on real-time feedback and therapeutic requirements. Primary frequencies can be modified to target different brain regions, while secondary frequencies provide continuous fine-tuning capability, enabling adaptive neuromodulation that responds to changing therapeutic needs.

Inventive Principle:
Principle #15Dynamics

Solution Approach 2:

Multiple frequency parameters (primary frequency, secondary frequency, modulation depth, pulse width) can be independently adjusted to optimize treatment for different disorders. This multi-parameter control system allows precise customization of auditory stimulation profiles for each specific therapeutic indication.

Inventive Principle:
Principle #35Parameter changes

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

DBSS achieves high therapeutic effectiveness by precisely targeting brain regions, treating over 130 specific disorders with a remarkable satisfaction rate of 99.5%, surpassing the capabilities of traditional brainwave entrainment methods.

Implementation Method 1

Brainwave entrainment involves synchronizing brainwave frequencies with external rhythmic stimuli, such as sound

Methodology Applied
Scientific EffectBrainwave entrainment: Entrainment

Implementation Method 2

Binaural Beats: Auditory processing artifacts created when two tones of slightly different frequencies are presented separately to each ear, resulting in the perception of a third tone, which is the mathematical difference between the two frequencies

Methodology Applied
Scientific EffectBinaural beats: Beat (acoustics)

Implementation Method 3

Monaural Beats: Simple beats created by combining two tones of slightly different frequencies, played in the same ear, resulting in the perception of a beat frequency that is the difference between the two frequencies

Methodology Applied
Scientific EffectMonaural beats: Beat (acoustics)

Data Source

PatentUS20250018145A1Deep brain sound stimulation (DBSS) for targeted brainwave entrainment and neuromodulation
Publication Date: 2025.01.16 DOGAN UGUR
  • US20250018145A1 patent drawing
  • US20250018145A1 patent drawing
  • US20250018145A1 patent drawing

AI summary

This disclosure pertains to methods and systems for brainwave entrainment and neuromodulation utilizing audio signals, specifically through Deep Brain Sound Stimulation (DBSS). DBSS employs audio frequencies to target and modulate brain regions, offering therapeutic benefits in areas such as stress reduction, focus enhancement, cognitive function improvement, and the treatment of neurological disorders. The system generates audio tones tailored with a brainwave protocol that includes primary and secondary frequency numbers. These tones are finely modulated to produce specific brainwave patterns that facilitate targeted neuromodulation. This technology delivers customized stimulation based on individual neurological profiles, enhancing both the effectiveness and safety of the therapy. DBSS represents a significant advancement over traditional brainwave entrainment methods by providing a non-invasive, user-friendly, and efficient way to potentially improve mental health and cognitive abilities.