Mobile Administration Interlocking Device for Secure Opioid Dispensing
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Solution Overview
Problem
Current technologies are inadequate in creating effective recovery treatment plans for pregnant women, providing addiction prevention strategies, and ensuring secure distribution of opioid drugs, as well as offering instantaneous biofeedback on stressors and opioid usage.
Innovation Solution
A system comprising sensors, a storage device, and a Mobile Administration Interlocking Device (MAID) that analyzes physiological and dosage data to determine pharmaceutical doses, controls the dispensing of opioids, and includes a biometric scanner for secure authentication, with features like opioid antagonists and deterrent compounds to prevent misuse.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If traditional distribution methods are used for opioid drugs, then ease of access is improved, but security and prevention of misuse deteriorate
Solution Approach 1:
The patent introduces a MAID device as an intermediary between the opioid supply and the patient. This device acts as a controlled mediator that can authenticate the user, verify prescription validity, and regulate dispensing, thereby maintaining ease of access while significantly improving security and preventing misuse
Solution Approach 2:
The system implements real-time feedback mechanisms where the MAID device communicates with the prescription database to verify authenticity, and provides immediate feedback to both the patient and healthcare provider about dispensing status. This feedback loop ensures secure distribution while maintaining operational efficiency
2Measurement precision
If real-time monitoring of physiological data is implemented, then measurement precision of opioid usage is improved, but device complexity increases
Solution Approach 1:
The MAID device is designed as a multi-functional universal platform that combines prescription verification, user authentication, physiological data collection, and dispensing control in a single device. This approach improves measurement precision while managing complexity by consolidating functions rather than adding separate systems
Solution Approach 2:
The system enables self-service functionality where the MAID device automatically collects physiological data, verifies prescriptions, and controls dispensing without requiring complex external infrastructure. This self-contained approach improves monitoring precision while minimizing the complexity burden on the overall system
Data Source
AI summary
Disclosed herein is a system for facilitating administration of a pharmaceutical product. Accordingly, the system may include at least one sensor, a storage device, a processing device, and a Mobile Administration Interlocking Device (MAID). Further, the at least one sensor may be disposed on body of a user. Further, the at least one sensor may be configured for generating at least one physiological data associated with the body. Further, the storage device may be configured for storing at least one dosage data. Further, the at least one dosage data may be prescribed by a medical professional. Further, the processing device may be communicatively coupled with the at least one sensor. Further, the processing device may be communicatively coupled with the storage device. Further, the MAID may be configured for provisioning the pharmaceutical product to the user. Further, the MAID may be communicatively coupled with the processing device.


