Design and implementation of an integrated information model for optimizing workflow in radiology practice

Author(s):  
Hwa T. Kho ◽  
Lu J. Huang ◽  
Daniel J. Valentino ◽  
Gregory H. Tashima ◽  
Ricky K. Taira ◽  
...  
Author(s):  
Reinhard Heister ◽  
Reiner Anderl

Workflows to produce dental products by using CAD/CAM technology are very complex. Each patient needs an individual restoration. The challenge is to provide a patient individual production aiming at a price of mass production. But every single job has to run through an individual development as well manufacturing process. Typically, three stakeholders are involved in the workflow. The dentist performs the treatment and defines requirements for restoration. The dental laboratory plans the workflow and designs the reconstruction by using a dental CAD system. Subsequently, a milling center produces the restoration. Because of these highly heterogeneous workflows, diverse data streams and incompatibilities result. Often improper partners and resources are involved in the workflow. This fact is a significant source for errors. An additional complication is that errors are often discovered in late phases of the workflow. To avoid high costs and unacceptable delivery times, the aim is to develop a new concept for integrated workflow planning. The concept depends on three parts: Federative dental data management (FDDM) as a basic approach, including anticipated logic and structured activities. The federative data management provides a loosely coupling of heterogeneous systems crossing enterprise borders by using web technology. The FDDM service depends on APP technology. Each participant applies its specialized APP: FDDMz (dentist), FDDMd (dental laboratory) and FDDMf (milling center). FDDM services enable a continuously integrated workflow throughout the whole process of a patient individual production. Each participating enterprise is able to register its available processes and resources. Information about resources like 3D dental scanner or milling machines are able to add, according to a global data model schema. This schema depends on an integrated information model with eight partial models: Collaboration, resource, process, workflow, requirements, product, work preparation and production model. This integrated information model provides dental information including interlinked objects. Through a proper anticipation logic, conclusions about later phases can be anticipated already at early phases. The last conceptual part is workflow management on frame of structured activities. By combining the information network with the anticipation logic, filtering of appropriate partners, processes, resources and sequences is supported. Next, a prototypical implementation is demonstrated exemplarily. This concept delivers an important contribution to increase process reliability and quality as well as to reduce delivery times and costs for digital dental workflows.


Author(s):  
C. Yang ◽  
F. Han ◽  
H. Wu ◽  
Z. Chen

<p><strong>Abstract.</strong> With the repaid development of Building Information Modelling (BIM), many scholars began to explore the BIM-adaption in landscape field. Landscape Information Modelling (LIM) is the corresponding concept created and used in landscape architecture discipline. However, cultural landscape heritage, as a special cultural heritage category, have specific objectives, principles and methodologies in conservation and management. It is necessary to explore an integrated information framework to facilitate the digital management of cultural landscape information. The aim of this paper is to explore an integrated information framework, which I call a ‘Heritage Landscape Information Model (HLIM)’, to facilitate cultural landscape heritage practices in China. This research examined the Digital Scenic Area project as instrumental case studies to identify the main components for a HLIM. As the two major components of cultural landscape heritage, both the physical features and the non-physical landscapes experiences were identified in this paper. The large amount of intangible heritage aspects indicated the significant differences between a HLIM and a BIM. Accordingly, a conceptual framework to represent ‘cultural experiences’ was identified with certain categories of landscape features and attributes. In terms of technologies, firstly, this research revealed that virtual reality was the most prioritised tool used in the current landscape conservation practices in China. Secondly, the other required system includes landscape-monitoring tools and the automation office work. Lastly, a HLIM also needs to contain a special information platform for cultural and historical information. The components identified in this paper could potentially contribute to an integrated conceptual framework of HLIM in China. The conclusion identified several implications for technology development.</p>


2010 ◽  
Vol 34 (1) ◽  
pp. 141-146
Author(s):  
Hun-Gyu Hwang ◽  
Tae-Jong Kim ◽  
Jin-Sik Yoon ◽  
Jung-Min Seo ◽  
Hyu-Chan Park ◽  
...  

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