Synergistic System for Detecting Internal Objects in Bodies
Legal Citation
Summary of the Inventive Concept
A novel system integrating microwave signal generation, symmetrically positioned and asymmetrically oriented antennas, and advanced technologies like AI, IoT, blockchain, and new materials to enhance the detection of asymmetrically positioned internal objects in bodies.
Background and Problem Solved
The original patent disclosed a system for detecting internal objects in bodies using microwave signals and symmetrically positioned antennas. However, this system had limitations in terms of accuracy, security, and real-time monitoring. The new inventive concept addresses these limitations by synergistically combining the original system with advanced technologies to provide a more accurate, secure, and real-time detection system.
Detailed Description of the Inventive Concept
The new system comprises a microwave signal generator, a plurality of antennas symmetrically positioned and asymmetrically oriented, and an AI-based analytics module for analyzing the received microwave signals and detecting the internal object based on machine learning algorithms. Alternatively, the system can utilize blockchain technology to securely store and analyze the received signals or an IoT-based sensor network for real-time monitoring and detection. Additionally, the system can incorporate new materials with enhanced dielectric properties for improving detection accuracy. The hybrid AI-IoT module integrates machine learning algorithms and real-time sensor data for enhanced detection capabilities.
Novelty and Inventive Step
The new claims introduce the integration of AI, IoT, blockchain, and new materials with the original system, which is novel and non-obvious compared to the original patent. The synergistic combination of these technologies provides a more accurate, secure, and real-time detection system, overcoming the limitations of the original patent.
Alternative Embodiments and Variations
Other embodiments of the inventive concept can include using different AI algorithms, varying the antenna configuration, or incorporating additional sensors for multi-modal detection. The system can also be adapted for detecting internal objects in various body parts or for use in different medical applications.
Potential Commercial Applications and Market
The synergistic system has significant commercial potential in the medical diagnostic industry, particularly in applications such as brain imaging, cancer detection, and monitoring of internal injuries. The system's enhanced accuracy, security, and real-time capabilities make it an attractive solution for healthcare providers and medical researchers.
Section 103 Obviousness Analysis (PHOSITA)
Field of Art
Medical diagnostic imaging and microwave-based detection systems, with expertise in non-invasive object detection techniques involving signal processing, antenna configuration, and dielectric property analysis
Person of Ordinary Skill (PHOSITA) Profile
An engineer or researcher with advanced degree in electrical engineering, biomedical engineering, or related field, possessing knowledge of microwave signal generation, antenna design, machine learning techniques, and medical diagnostic technologies
Obviousness Rationale
A person having ordinary skill would recognize that integrating contemporary technologies like AI, IoT, and blockchain with the existing microwave detection system represents a predictable enhancement of the original patent's core methodology. The fundamental signal detection approach remains consistent, with the proposed variations representing standard technological augmentation strategies commonly employed in medical diagnostic systems. The PTD's modifications leverage well-known interdisciplinary techniques that a skilled practitioner would naturally consider as incremental improvements to the base detection methodology.
Obvious Combinations & Variations
Original Patent Information
| Patent Number | US 11,857,305 |
|---|---|
| Title | System and method for detecting an assymetrically positioned internal object in a body |
| Assignee(s) | MEDFIELD DIAGNOSTICS AB |