Clinical, design and production three-terminal data interconnection cloud sharing design service platform
By using a data interconnection platform based on cloud computing architecture, the problems of fragmented processes and inefficient data transmission in oral medical care and denture processing have been solved. This has enabled data sharing across three terminals and closed-loop management of the entire process, thereby improving production efficiency and patient engagement.
Patent Information
- Application Number
- CN202511074878.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-01
- Publication Date
- 2025-11-18
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the dental medical and prosthesis manufacturing industry, the lack of efficient data interaction channels between the clinical, design and production ends leads to fragmented processes, inefficient data transmission, long cycles and easy errors, and the inability to achieve closed-loop management of the entire process. Furthermore, existing platforms perform poorly in terms of data format compatibility, cross-terminal collaboration efficiency and full-process traceability, and cannot meet the needs of deep interconnection among the three ends.
The platform, built on a cloud computing architecture, integrates modules for data interaction and processing, order management, communication and collaboration, production docking, qualification review and credit management, and data security and traceability. Combined with AI intelligent modules and distributed supply chain management, it achieves interconnection of data across three terminals, supports multiple data formats, is equipped with an intelligent classification engine and blockchain technology, and provides one-click design for the entire process of precision oral medicine.
This has created a closed-loop dental prosthesis manufacturing industry, improved production efficiency and service quality, shortened the treatment cycle, reduced logistics costs, ensured data security and process transparency, and enhanced patients' sense of participation and comfort in the treatment process.
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Figure CN120975459A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of internet cloud sharing design service platform, and particularly relates to a cloud sharing design service platform for interconnection of clinical, design and production three ends. BACKGROUND
[0002] In the oral medical and denture processing industry, the traditional mode has many pain points, for example: there is a lack of efficient data interaction channel between the clinical end, the design end and the production end, leading to a fragmented process, and when the data processing capacity of the clinical institution is insufficient, it is difficult to quickly find suitable design resources, and it is also difficult to achieve efficient operation and full-process closed-loop management in the BtoB, BtoCtoB mode; the oral clinic also has problems such as low efficiency and opaque process in denture design and processing, and the participation and comfort of patients in the diagnosis and treatment process need to be improved; the data transmission of each link relies on physical dental models, which is time-consuming and prone to errors; some platforms can only realize the local function of a single link, such as simple design order or production docking, and cannot form a complete industry closed loop, and some data sharing platforms perform poorly in data format compatibility, cross-end collaboration efficiency and full-process traceability, and cannot effectively integrate flexible labor mode to cope with rising costs and other industry changes, and cannot meet the needs of deep interconnection of the clinical, design and production three ends. SUMMARY
[0003] The present application aims to provide a cloud sharing design service platform for interconnection of clinical, design and production three ends, to solve the problems of process fragmentation, inefficient data transmission, long denture production cycle, full-process closed-loop management, high cost and other problems in the prior art, to realize the closed loop of denture processing industry, and to improve the industry efficiency and service quality.
[0004] In order to achieve the above-mentioned purpose, the present application adopts the following technical solutions:
[0005] The cloud sharing design service platform is connected with clinical, design and production three ends, including platform architecture, function module and core module; the platform architecture is based on cloud computing architecture, including clinical port, design port, production port, big data processing center, research and development center, server room server, big database and cloud service hub, the cloud service hub adopts distributed computing and storage technology to ensure efficient processing and safe storage of massive data, the clinical port, design port, production port, big data processing center, research and development center, server room server and big database communicate with the cloud service hub through an encrypted network protocol to interact data in real time, realize seamless flow and sharing of data; the function module includes data interaction and processing module, order management module, communication and cooperation module, production docking module, qualification audit and credit management module and data security and traceability module, the data interaction and processing module supports optical data format upload of one of STL, DCM and InLab, realizes unified analysis and processing of different format data through self-developed heterogeneous data conversion algorithm, at the same time, the data interaction and processing module is equipped with intelligent classification engine, which automatically classifies according to data type, repair demand, etc., accurately matches the designer, the order management module supports the order initiated by the clinical end and the denture processing factory through double channels, and the built-in intelligent order allocation algorithm recommends the optimal order taker according to the designer's order history, professional field, response speed and other factors, realizes order timing, state tracking, quantity statistics and automatic financial settlement, the communication and cooperation module builds a real-time communication channel for the clinical end and the design end, the design end and the production end, supports graphic, voice and data annotation exchange, establishes an order progress sharing mechanism, and each party can view the process nodes in real time, the production docking module is seamlessly connected with the 3D printing equipment of the clinical end and the production end, the design data can be directly pushed to the institution with production conditions after being audited, for the clinical end without production capacity, the automatic matching of cooperative processing factory is realized, the data reaches the production, the qualification audit and credit management module audits the qualification of registered users, including business license, technical certification, etc., establishes a credit evaluation system, generates a credit file according to the service quality, performance and other factors, and influences the order matching priority, the data security and traceability module adopts blockchain technology, generates a unique identification code for each order, realizes "one code one traceability", the training and resource module integrates industry expert resources, provides online training courses, covers data scanning, repair design, equipment operation and other contents, provides a works display platform for designers to help improve the popularity; the core module includes AI intelligent module, distributed supply chain management module and patient interaction module, the core module communicates with the cloud service hub.
[0006] More preferably, the machine room server is equipped with high-performance processors, large-capacity memories and storage devices, adopts redundant design and load balancing technology to ensure the normal operation of the platform under high concurrency, and is used to support and ensure the stable operation of the platform; the large database stores patient oral scanning data, adopts distributed storage technology to realize safe and reliable storage of data, and these data not only provide convenience for patient re-examination, but also provide rich data resources for the development and optimization of AI intelligent design software.
[0007] More preferably, the AI intelligent module in the core function module integrates the development of domestic AI intelligent design software, has the functions of three-dimensional simulation imaging, artificial data correction to AI intelligent autonomous learning, can automatically match designers through the analysis of patient oral scanning data, and can perform autonomous learning and optimization according to the feedback of doctors and engineers; the distributed supply chain management module adopts distributed supply chain management technology, integrates the prosthetic tooth processing resources in various places in China, realizes the optimal allocation of resources, and improves the efficiency and flexibility of prosthetic tooth processing; the patient interaction module displays the design scheme to the patient through three-dimensional simulation imaging technology, so that the patient can participate in the diagnosis and treatment process and improve the patient's diagnosis and treatment participation and comfort.
[0008] More preferably, the big data processing center is designed to process patient oral scanning data to provide data support for later prosthetic tooth processing, the big data processing center adopts a distributed computing architecture and can efficiently process massive oral scanning data, the research and development center develops domestic design software and provides interactive interface design and data arrangement, changes the current situation that domestic oral design software depends on imports, and the developed software tends to have autonomous learning ability, can continuously learn a large amount of patient oral scanning data and design cases, improve the accuracy and efficiency of design, and realize one-key oral precision medicine whole-process design.
[0009] The beneficial effects of the present application are:
[0010] The cloud sharing design service platform of the present application can realize the whole-process digital closed loop from intraoral scanning, data acquisition, CAD design to 3D printing and numerical control cutting, and improve the production efficiency and precision;
[0011] At the same time, the distributed manufacturing mode is adopted, data sharing and remote production data transmission are realized through the cloud sharing design service platform, not only CAD / CAM design is supported, data sharing and collaborative design among doctors, technicians and patients are realized, combined with the chair-side 3D printing solution, the diagnosis and treatment cycle is shortened, and multi-site collaborative manufacturing is also supported, which reduces the logistics cost and production cycle and improves the resource utilization efficiency;
[0012] Through online remote assistance through the Internet, the dentist can quickly complete the design of the prosthetic tooth product, and the digital oral engineer can obtain the restoration file within 30 minutes after the platform is ordered;
[0013] Through the whole-process closed-loop management from the patient to the hospital and then to the intelligent manufacturing factory, the platform realizes "one code one traceability", ensures the data security and the process transparency.
[0014] In addition, the platform constructs key parts such as research and development centers, develops domestic design software, can fill the domestic blank, breaks the import dependence, adopts B2B, B2C2B mode, combines distributed supply chain management and other technologies, forms a unique whole-process scheme.
[0015] In addition, after the platform is constructed, patients can participate in the diagnosis and treatment process, and the design scheme is displayed through three-dimensional simulation imaging, so that the participation and comfort of patients in diagnosis and treatment are improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a platform system framework of the application;
[0017] Figure 2 It is a business process diagram of the application.
[0018] Reference signs in the drawings:
[0019] 1, platform architecture; 2, function module; 3, core module. DETAILED DESCRIPTION
[0020] In order to make the technical means, creative features, purposes and effects of the application easy to understand, the technical solutions in the embodiments of the application will be described clearly and completely in conjunction with the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, not all the embodiments. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the application.
[0021] Please refer to the drawings Figure 1 to the drawings Figure 2The application discloses a cloud sharing design service platform for interconnecting three-end data of clinic, design and production, which comprises a platform architecture 1, a function module 2 and a core module 3. The platform architecture 1 is based on a cloud computing architecture and comprises a clinic port, a design port, a production port, a big data processing center, a research and development center, a computer room server, a big database and a cloud service hub. The cloud service hub adopts distributed computing and storage technology to guarantee efficient processing and safe storage of massive data. The clinic port, the design port, the production port, the big data processing center, the research and development center, the computer room server and the big database communicate with the cloud service hub through an encrypted network protocol to realize real-time interaction of data, seamless flow and sharing of the data. The function module 2 comprises a data interaction and processing module, an order management module, a communication and cooperation module, a production docking module, a qualification audit and credit management module and a data security and traceability module. The data interaction and processing module supports uploading of multiple optical data formats such as STL, DCM and InLab and realizes unified analysis and processing of data in different formats through a self-developed heterogeneous data conversion algorithm. Meanwhile, the data interaction and processing module is equipped with an intelligent classification engine to automatically classify data according to data types, repair requirements and the like and accurately match designers. The order management module supports order initiation from the clinic end and the denture processing factory through two channels, internally has an intelligent order dispatching algorithm, recommends optimal order receiving persons in combination with factors such as order receiving history, professional field and response speed of the designers and realizes order timing, state tracking (order receiving, design, audit, completion and the like), quantity statistics and automatic financial settlement. The communication and cooperation module builds a real-time communication channel for the clinic end and the design end and the design end and the production end, supports exchange of graphics, texts, voices and data labels, establishes an order progress sharing mechanism and enables all parties to real-time check process nodes. The production docking module is seamlessly connected with 3D printing equipment of the clinic end and the production end, design data can be directly pushed to an institution with production conditions after being audited, a cooperative processing factory is automatically matched for the clinic end without production capacity, data is directly sent to production, the qualification audit and credit management module audits qualifications of registered users (clinical institutions, designers and processing factories), including business license and technical certification, establishes a credit evaluation system, generates a credit file according to service quality and performance and influences order matching priority, the data security and traceability module adopts a blockchain technology, generates a unique identification code for each order, realizes "one code one traceability", stores patient data in an encrypted mode, forms a private file and enables only authorized parties to check the file, links and stores operation logs of the whole process to ensure that the data cannot be tampered, the training and resource module integrates industry expert resources, provides online training courses covering data scanning, repair design and equipment operation and provides a work display platform for designers to help improve the designers' popularity. The core module 3 comprises an AI intelligent module, a distributed supply chain management module and a patient interaction module and communicates with the cloud service hub.
[0022] As shown in the accompanying drawings Figure 1As shown in the figure, the big data processing center is designed to process patient mouth scanning data to provide data support for later denture processing. The big data processing center adopts a distributed computing architecture and can efficiently process massive mouth scanning data. Through data cleaning, feature extraction and other technologies, high-quality data is provided for subsequent AI intelligent matching.
[0023] As shown in the figure, the R&D center develops domestic design software and provides interactive interface design and data arrangement, changes the current situation of relying on imported oral design software in China, and the developed software tends to have autonomous learning ability. It can continuously learn a large amount of patient mouth scanning data and design cases to improve the accuracy and efficiency of design, so as to realize one-key oral precision medicine whole process design. Figure 1
[0024] As shown in the figure, the server room is equipped with high-performance processors, large-capacity memories and storage devices, adopts redundant design and load balancing technology, and ensures the normal operation of the platform under high concurrency to support and ensure the stable operation of the platform. Figure 1
[0025] As shown in the figure, the big database stores patient mouth scanning data, adopts distributed storage technology, realizes safe and reliable storage of data, and these data can provide convenience for patient reexamination. Figure 1
[0026] As shown in the figure, the AI intelligent module in the core function module 3 integrates the development of domestic AI intelligent design software, has the functions of three-dimensional simulation imaging, artificial data correction to AI intelligent autonomous learning, can automatically match designers through the analysis of patient mouth scanning data, and can perform autonomous learning and optimization according to the feedback of doctors and engineers; the distributed supply chain management module adopts distributed supply chain management technology, integrates the denture processing resources in various places in China, realizes the optimal allocation of resources, and improves the efficiency and flexibility of denture processing; the patient interaction module shows the design scheme to the patient through three-dimensional simulation imaging technology, so that the patient can participate in the diagnosis and treatment process and improve the diagnosis and treatment participation and comfort of the patient. Figure 1 In addition, the operation mode of the platform adopts B2B, B2C2B mode, adheres to the concepts of professionalism, timeliness, convenience, safety and transparency, and provides services for dental clinics, denture processing units and the like.
[0027] The platform operation process of the present application adopts distributed supply chain management to realize data encryption transmission, combines three-dimensional simulation imaging technology, and forms one-key oral precision medicine whole process design and control scheme after data audit. The specific process is as follows:
[0028]
[0029] First, the clinical end through the intraoral scanner for patients to mouth scan, get the patient's oral data, through the clinical end port to the cloud service hub, through the big data processing center to process data and initiate orders, at the same time, the platform intelligently matches the designer, the designer completes the design after receiving the order and feeds back to the platform, the design data is sent to the clinical end after being audited and communicated with the patient for confirmation, if the patient confirms that there is no error, the scheme is sent to the production side, if the patient or the clinical end needs to adjust the scheme, it is sent to the designer for re-design, if the clinical end has 3D printing equipment, the clinical end can directly produce; Otherwise, the platform matches the processing factory to produce, the finished product is sent back to the clinical end, and finally delivered to the patient, the process can be traced back to one code.
Claims
1. A cloud-based shared design service platform for interconnecting clinical, design, and production data, comprising a platform architecture (1), functional modules (2), and core modules (3); the platform architecture (1) is based on a cloud computing architecture, comprising a clinical port, a design port, a production port, a big data processing center, a research and development center, a data center server, a big data database, and a cloud service hub. The cloud service hub adopts distributed computing and storage technology. The clinical port, design port, production port, big data processing center, research and development center, data center server, and big data database communicate with the cloud service hub through encrypted network protocols to exchange data in real time. The functional module (2) includes a data interaction and processing module, an order management module, a communication and collaboration module, a production docking module, a qualification review and credit management module, and a data security and traceability module. The data interaction and processing module supports uploading optical data in one of the following formats: STL, DCM, and InLab. The data interaction and processing module is equipped with an intelligent classification engine. The order management module has a built-in intelligent order dispatching algorithm. The communication and collaboration module builds a real-time communication channel between the clinical end and the design end, and between the design end and the production end, supporting text, voice, and data annotation communication, and establishing an order progress sharing mechanism. The production docking module docks with the 3D printing equipment of the clinical end and the production end. The qualification review and credit management module reviews the qualifications of registered users. The data security and traceability module uses blockchain technology and generates a unique identifier for each order. The training and resource module integrates industry expert resources and provides online training courses covering data scanning, repair design, and equipment operation. The core module (3) includes an AI intelligent module, a distributed supply chain management module and a patient interaction module, and the core module (3) communicates with the cloud service hub.
2. The cloud-based shared design service platform for interconnecting clinical, design, and manufacturing data as described in claim 1, characterized in that, The big data processing center is designed to process patient oral scan data and adopts a distributed computing architecture.
3. The cloud-based shared design service platform for interconnecting clinical, design, and manufacturing data as described in claim 1, characterized in that, The R&D center develops domestically produced design software and provides interactive interface design and data processing.
4. The cloud-based shared design service platform for interconnecting clinical, design, and manufacturing data as described in claim 1, characterized in that, The server in the data center is equipped with a high-performance processor, large-capacity memory and storage devices, and adopts redundant design and load balancing technology.
5. The cloud-based shared design service platform for interconnecting clinical, design, and production data as described in claim 1, characterized in that, The large database stores patient oral scan data using distributed storage technology.
6. The cloud-based shared design service platform for interconnecting clinical, design, and manufacturing data as described in claim 1, characterized in that, The AI intelligent module in the core functional module (3) integrates and develops domestic AI intelligent design software, which automatically matches designers by analyzing the patient's oral scan data; the distributed supply chain management module adopts distributed supply chain management technology; and the patient interaction module displays design schemes to patients through three-dimensional simulation imaging technology.