Synergistic Fast 3D Radiography Systems with Advanced Technologies

Publication ID: 24-11857359_0003_PTD
Published: October 28, 2025
Category:Synergistic Combinations

Legal Citation

pr1or.art Inc., “Synergistic Fast 3D Radiography Systems with Advanced Technologies,” Published Technical Disclosure No. 24-11857359_0003_PTD, Published October 28, 2025, available at https://archive.pr1or.art/24-11857359_0003_PTD
This technical disclosure describes improvements that would be readily apparent to a Person Having Ordinary Skill In The Art (PHOSITA) when considered in combination with the foundational architecture disclosed in U.S. Patent No. 11,857,359.

Summary of the Inventive Concept

The inventive concept integrates the original fast 3D radiography system with advanced technologies such as blockchain, AI, IoT, and novel materials to create a more powerful, efficient, and secure system for medical imaging and diagnostics.

Background and Problem Solved

The original fast 3D radiography system, while innovative, had limitations in terms of data management, image analysis, and system control. This new inventive concept addresses these limitations by incorporating advanced technologies to provide secure data management, real-time image analysis, and enhanced system control.

Detailed Description of the Inventive Concept

The new system comprises a primary motor stage moving freely on an arc rail, a primary motor that engages with the primary motor stage and controls its speed, a plurality of X-ray sources mounted at the primary motor stage, and a supporting frame structure. Additionally, the system integrates advanced technologies such as a blockchain-based data management system for secure storage and transmission of radiography data, an AI-powered image processing module for real-time image analysis and enhancement, an IoT-enabled sensor network for real-time monitoring and control of the radiography system, and a novel nano-material-based X-ray detector for enhanced image resolution and sensitivity.

Novelty and Inventive Step

The new claims introduce novel and non-obvious combinations of advanced technologies with the original fast 3D radiography system, providing a synergistic effect that enhances the overall performance, efficiency, and security of the system.

Alternative Embodiments and Variations

Alternative embodiments of the inventive concept could include variations of the blockchain-based data management system, different AI-powered image processing algorithms, or alternative IoT-enabled sensor networks. Additionally, the system could be adapted for use in other medical imaging modalities or industrial applications.

Potential Commercial Applications and Market

The synergistic fast 3D radiography system has significant commercial potential in the medical imaging and diagnostics industry, with potential applications in hospitals, clinics, and research institutions. The system's advanced features and improved performance could also expand into industrial applications such as non-destructive testing and material inspection.

CPC Classifications

SectionClassGroup
A A61 A61B6/541
A A61 A61B6/025
A A61 A61B6/032
A A61 A61B6/035
A A61 A61B6/0407
A A61 A61B6/06
A A61 A61B6/08
A A61 A61B6/405
A A61 A61B6/4007
A A61 A61B6/4014
A A61 A61B6/4021
A A61 A61B6/4208
A A61 A61B6/4283
A A61 A61B6/4405
A A61 A61B6/4441
A A61 A61B6/4452
A A61 A61B6/4476
A A61 A61B6/4482
A A61 A61B6/467
A A61 A61B6/482
A A61 A61B6/54
A A61 A61B6/542
A A61 A61B6/56
A A61 A61B6/583
G G01 G01N23/044
G G01 G01N23/083
G G01 G01N23/18
G G06 G06T7/0012
G G06 G06T7/0016
G G06 G06T7/11
G G06 G06T11/003
G G06 G06T11/006
G G06 G06T17/00
G G06 G06V10/25
G G06 G06V10/62
G G16 G16H10/60
G G16 G16H30/20
G G16 G16H50/20
A A61 A61B6/4275
A A61 A61B6/502
G G01 G01N2223/401
G G06 G06T2200/24
G G06 G06T2207/10076
G G06 G06T2207/10081
G G06 G06T2207/20081
G G06 G06T2207/20084
G G06 G06T2207/30064
G G06 G06T2207/30096
G G06 G06T2207/30168
G G06 G06T2210/41
G G06 G06V2201/032

Field of Art

Medical imaging and radiography systems, specifically 3D X-ray tomography technologies with a focus on advanced imaging modalities, sensor integration, and diagnostic imaging techniques

Person of Ordinary Skill (PHOSITA) Profile

A skilled practitioner with advanced engineering or medical physics background, expertise in X-ray imaging systems, digital detector technologies, motion control systems, and emerging computational imaging techniques

Obviousness Rationale

A PHOSITA would recognize that integrating advanced computational and networking technologies into existing radiography systems represents a predictable evolution of medical imaging technologies. The fundamental architectural elements of the source patent provide a clear technical foundation for incorporating emerging digital technologies like blockchain, AI, and IoT sensor networks. These integrations would be viewed as straightforward extensions of existing system design principles in medical imaging research and development.

Obvious Combinations & Variations

Source Patent Element
Primary motor stage moving on an arc rail with multiple X-ray sources
PTD Variation
Adding blockchain-based data management system for secure radiography data transmission
Obviousness Reasoning
Implementing secure data transmission protocols is a known technique in medical imaging, representing a predictable application of cybersecurity technologies to existing imaging infrastructure
Source Patent Element
Multiple X-ray sources with controllable positioning
PTD Variation
Integrating AI-powered image processing module for real-time image analysis
Obviousness Reasoning
Machine learning image enhancement techniques are well-established in medical imaging, representing an obvious optimization of existing tomographic imaging systems
Source Patent Element
X-ray source positioning and control mechanisms
PTD Variation
IoT-enabled sensor network for real-time monitoring and system control
Obviousness Reasoning
Implementing distributed sensor networks for equipment monitoring is a standard engineering approach in complex medical imaging systems, representing a predictable technological enhancement
Source Patent Element
Digital flat panel detector technology
PTD Variation
Novel nano-material-based X-ray detector with enhanced resolution and sensitivity
Obviousness Reasoning
Material science improvements in detector technologies are a routine area of research, with predictable incremental performance enhancements being obvious to a skilled practitioner
Source Patent Element
Motor stage control and X-ray source positioning
PTD Variation
Machine learning-based predictive maintenance module
Obviousness Reasoning
Implementing predictive maintenance using machine learning represents a standard engineering approach to equipment reliability, with clear precedent in complex technological systems
35 U.S.C. § 103 Summary: Based on the teachings of US Patent 11857359 and the disclosed technical variations, a person having ordinary skill in the art would find the proposed system modifications to be obvious extensions of existing 3D radiography technologies. The integration of blockchain, AI, IoT, and advanced materials represents predictable technological improvements that would be readily conceived by a skilled practitioner without requiring inventive insight beyond the ordinary capabilities of those working in medical imaging system design.

Original Patent Information

Patent NumberUS 11,857,359
TitleFast 3D radiography with multiple pulsed x-ray sources by deflecting tube electron beam using electro-magnetic field
Assignee(s)AlxSCAN, Inc.