Intelligent Dental and Medical Compositions with Synergistic Technologies
Legal Citation
Summary of the Inventive Concept
A novel system integrating bioceramic compositions with AI, IoT, blockchain, machine learning, and nanomaterials to enhance tissue regeneration, monitoring, and personalized treatment outcomes.
Background and Problem Solved
The original patent addresses the limitations of traditional dental and medical compositions by introducing a multiparticulate crystalline multimetallic silicate. However, the new inventive concept tackles the limitations of these compositions by integrating them with distinct technologies to create a more powerful system. This integration enables real-time monitoring, optimized dosage, and personalized treatment, thereby revolutionizing the field of medicine and dentistry.
Detailed Description of the Inventive Concept
The new inventive concept comprises a bioceramic composition with a multiparticulate crystalline multimetallic silicate, which is integrated with various synergistic technologies. The AI module predicts optimal dosage of metallic ions for tissue regeneration based on patient data. The IoT sensor monitors pH levels and adjusts the composition's dissolution rate in real-time. The blockchain-based tracking system verifies the composition's authenticity and ensures secure data storage. The machine learning algorithm analyzes patient data and recommends customized composition formulations for optimal treatment outcomes. The nanomaterial-based delivery system targets specific tissue sites and enhances the composition's bioactivity.
Novelty and Inventive Step
The new claims introduce a synergistic combination of bioceramic compositions with AI, IoT, blockchain, machine learning, and nanomaterials, which is non-obvious and novel compared to the original patent. The integration of these technologies enables a more powerful system that addresses the limitations of traditional dental and medical compositions.
Alternative Embodiments and Variations
Alternative embodiments may include integrating the bioceramic composition with other technologies, such as robotics, 3D printing, or virtual reality, to further enhance its functionality and applicability. Variations of the inventive concept may include different types of bioceramic compositions, AI algorithms, or nanomaterials, which can be tailored to specific applications and industries.
Potential Commercial Applications and Market
The new inventive concept has significant commercial potential in the fields of medicine and dentistry, particularly in tissue regeneration, personalized treatment, and real-time monitoring. The target industries include pharmaceutical companies, medical device manufacturers, and healthcare providers, which can benefit from the enhanced efficacy and efficiency of the integrated system.
Section 103 Obviousness Analysis (PHOSITA)
Field of Art
Dental and medical biomaterials, specifically bioceramic compositions for tissue regeneration and endodontic applications, requiring expertise in materials science, bioengineering, and medical technology
Person of Ordinary Skill (PHOSITA) Profile
A professional with advanced degrees in materials science or biomedical engineering, familiar with dental biomaterials, ceramic composition design, and emerging medical technologies, with knowledge of interdisciplinary technology integration
Obviousness Rationale
A PHOSITA would recognize that integrating digital technologies with bioceramic compositions represents a predictable evolution of medical materials, leveraging known techniques in AI, IoT, and data analytics to enhance treatment precision and monitoring. The source patent's focus on sophisticated multimetallic silicate compositions provides a natural foundation for technological augmentation. The proposed variations represent logical extensions of existing medical technology trends toward personalized, data-driven treatment approaches.
Obvious Combinations & Variations
Original Patent Information
| Patent Number | US 11,857,558 |
|---|---|
| Title | Dental and medical compositions having a multiple source of metallic ions |
| Assignee(s) | ANGELUS INDUSTRIA DE PRODUTOS ODONTOLOGICOS S/A |