Web-Based Data Transfer for Dental Treatment Systems
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Solution Overview
Problem
Existing dental treatment systems are limited by their reliance on specific human-machine interfaces for control and data access, restricting access and functionality, especially when the interface is unavailable.
Innovation Solution
A web-based method for transferring data sets between dental or dental-surgical treatment devices and external memory elements via the Internet and a cloud computing network, enabling access independently of time and place, and allowing multiple users to access and update data without being tied to a specific interface.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If data is stored locally on a specific human-machine interface, then data access is fast and simple, but access is restricted to that specific interface and location
Solution Approach 1:
The patent introduces a server as an intermediary component that mediates between the dental treatment device and multiple human-machine interfaces. The server stores data centrally and manages communication between devices and interfaces, allowing access from multiple locations and devices while maintaining data integrity and security. This resolves the contradiction by enabling interface independence without sacrificing access convenience.
Solution Approach 2:
The patent transitions from local, single-point data storage to cloud-based, distributed data access. By moving data storage to a remote server accessible via network connections, the system adds the dimension of remote accessibility and enables multiple access points simultaneously. This allows users to access data from any location and any compatible interface, resolving the limitation of interface-specific access.
2Reliability
If data is stored locally on the dental treatment device, then data security is maintained, but data access from external devices is restricted
Solution Approach 1:
The server acts as a secure intermediary that implements authentication, authorization, and data protection mechanisms. It controls access to the dental treatment device and manages data transmission between the device and external interfaces. This allows remote access capability while maintaining data security through centralized control and security protocols.
Solution Approach 2:
The patent segments the system into distinct functional components: the dental treatment device, the server, and multiple human-machine interfaces. Each component has specific responsibilities, with the server handling security and access control. This segmentation allows remote access functionality to be added without compromising the security architecture of the core dental device.
3Device complexity
If a single human-machine interface controls the dental device, then system complexity is low, but functionality is limited when the interface is unavailable
Solution Approach 1:
The patent implements a universal server-based architecture that can serve multiple human-machine interfaces simultaneously. The server provides centralized data storage, device control, and interface management functions that can be accessed by multiple interfaces. This multi-functionality ensures that if one interface is unavailable, other interfaces can continue to access the dental treatment device, improving operational availability without significantly increasing overall system complexity.
Data Source
AI summary
Methods and systems for transferring at least one data set between a dental or dental-surgical treatment or diagnosis device and an external memory element located outside the dental or dental-surgical treatment or diagnosis device, wherein the at least one data set is transferred in a web-based manner via the Internet and a cloud computing network comprising the external memory element. A corresponding dental or dental-surgical treatment or diagnosis system comprises a dental or dental-surgical treatment or diagnosis device and a transmitting and receiving device for communicatively connecting to a remote-control human-machine interface. The transmitting and receiving device is designed for providing a web-based connection via the Internet and a cloud computing network to the remote-control human-machine interface.
