Neuro-Adaptive Laser Eye Surgery System

Publication ID: 24-11857462_0010_PTD
Published: October 28, 2025
Category:Future Evolutions & Paradigm Shifts

Legal Citation

pr1or.art Inc., “Neuro-Adaptive Laser Eye Surgery System,” Published Technical Disclosure No. 24-11857462_0010_PTD, Published October 28, 2025, available at https://archive.pr1or.art/24-11857462_0010_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. 11,857,462.

Summary of the Inventive Concept

A futuristic laser eye surgery system that leverages AI, machine learning, and robotics to provide unprecedented precision, customization, and patient outcomes.

Background and Problem Solved

Conventional laser eye surgery systems have limitations in terms of precision, customization, and patient outcomes. The original patent's method of performing laser eye surgery, while accommodating patient movement, still relies on manual adjustments and lacks real-time adaptability. The new inventive concept addresses these limitations by integrating advanced technologies to create a more sophisticated and effective system.

Detailed Description of the Inventive Concept

The Neuro-Adaptive Laser Eye Surgery System comprises a neural network-based predictive modeling module that dynamically adjusts laser beam parameters in real-time based on patient-specific ocular characteristics and surgical goals. The system also incorporates a 3D ocular topography map generator, machine learning algorithms for optimal ablation pattern identification, and a high-speed femtosecond laser for precise execution. Additionally, the system features a wearable augmented reality device for real-time visualization, a swarm of micro-robots for customized corneal flap creation, and an artificial intelligence-powered expert system for optimal surgical protocol recommendation.

Novelty and Inventive Step

The new claims introduce a paradigm shift in laser eye surgery by integrating AI, machine learning, and robotics to achieve unprecedented levels of precision and customization. The neural network-based predictive modeling module, machine learning algorithms, and micro-robot swarm are novel and non-obvious features that distinguish the new inventive concept from the original patent.

Alternative Embodiments and Variations

Alternative embodiments of the Neuro-Adaptive Laser Eye Surgery System could include variations in the neural network architecture, machine learning algorithms, and micro-robot design. Additionally, the system could be adapted for use in other ophthalmic procedures, such as cataract surgery or glaucoma treatment.

Potential Commercial Applications and Market

The Neuro-Adaptive Laser Eye Surgery System has significant commercial potential in the ophthalmic industry, with potential applications in refractive surgery, cataract surgery, and other ophthalmic procedures. The system's ability to provide unprecedented precision, customization, and patient outcomes could disrupt the existing market and create new opportunities for medical device manufacturers and healthcare providers.

CPC Classifications

SectionClassGroup
A A61 A61F9/00804
A A61 A61B3/1025
A A61 A61B3/14
A A61 A61F9/008
A A61 A61F9/00802
A A61 A61F9/00812
A A61 A61F9/00836
A A61 A61F2009/00846
A A61 A61F2009/00855
A A61 A61F2009/00868
A A61 A61F2009/00872
A A61 A61F2009/00889
A A61 A61F2009/00897

Field of Art

Ophthalmic surgical technologies, specifically laser eye surgery systems with precision beam manipulation and patient movement compensation techniques

Person of Ordinary Skill (PHOSITA) Profile

A biomedical engineer or medical device specialist with advanced degrees in bioengineering, optics, or medical technology, possessing expertise in laser surgical systems, computer-assisted medical interventions, and adaptive imaging technologies

Obviousness Rationale

A PHOSITA would recognize that the PTD's neural network and machine learning enhancements represent predictable technological extensions of the source patent's foundational laser eye surgery system. The core surgical beam manipulation principles remain consistent, with the PTD introducing computational intelligence to enhance existing precision tracking and movement compensation techniques. These advancements align with established trends in medical device innovation toward more adaptive, data-driven surgical interventions.

Obvious Combinations & Variations

Source Patent Element
Laser beam focusing and scanning assembly with z-scan and xy-scan devices for focal point manipulation
PTD Variation
Neural network-based predictive modeling module dynamically adjusting laser beam parameters in real-time
Obviousness Reasoning
Known technique of applying machine learning to precision tracking systems, with predictable results of improved surgical accuracy
Source Patent Element
Beam deflection mechanisms supporting objective lens positioning
PTD Variation
Micro-robot swarm for customized corneal flap creation
Obviousness Reasoning
Finite identified solution for improving surgical precision through advanced robotic manipulation techniques
Source Patent Element
Laser eye surgery system accommodating patient movement
PTD Variation
3D ocular topography map generator with machine learning ablation pattern identification
Obviousness Reasoning
Predictable application of computational imaging techniques to enhance existing movement compensation strategies
Source Patent Element
Laser beam scanning and positioning methods
PTD Variation
Augmented reality visualization device for real-time surgical site tracking
Obviousness Reasoning
Known design choice for improving surgical precision through enhanced visual feedback technologies
Source Patent Element
Laser eye surgery system with beam deflection mechanisms
PTD Variation
AI-powered expert system recommending optimal surgical protocols
Obviousness Reasoning
Logical extension of existing surgical system design toward computational decision support
35 U.S.C. § 103 Summary: Based on US Patent 11857462's comprehensive laser eye surgery system disclosure, the present publication demonstrates that the claimed neural network, machine learning, and robotic enhancements would have been obvious to a person having ordinary skill in the art at the time of invention, representing predictable technological improvements within the established framework of precision laser surgical technologies.

Original Patent Information

Patent NumberUS 11,857,462
TitleLaser eye surgery system
Assignee(s)AMO Development, LLC