The correlation will be used the prediction of the onset and the development of arterial diseases such as atherosclerosis for a preventative medicine approach. The correlations between morphological characteristics of coronary artery and severity of stenosis of coronary artery will be investigated. Using medical image processing software, geometric information of coronary arteries for healthy, slightly stenosed, and severely stenosed will be measured. Industrial Engineering and Industrial Management Comparison between Healthy and Diseased Coronary Artery Systems using Medical Image Processing
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Negotiations are underway to reimburse student travel expenses to Atlanta for observation and data collection. Funding sources: At present this project is unfunded.Time Commitment (hours per week): Variable depending on the specific project and student schedules.Students will be required to pass a drug test and background check and will need to be able to travel to Piedmont Hospital in Atlanta to observe activities in the emergency room. For most a basic understanding of engineering design is sufficient to start. Minimum Requirements (technical/non-technical skills or prerequisite coursework): A variety of projects are anticipated and the necessary skills and coursework are varied. Potential areas for research include workload analysis, participation in lean events (events designed to streamline processes to eliminate waste and inefficiencies), ergonomic evaluation and design, and facilities design. Students will be needed to serve on teams led by Piedmont personnel to analyze current processes, recommend changes, and implement and evaluate those changes. Students are encouraged to participate on a number of potential projects.
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Piedmont Healthcare is implementing a program of process improvement in the emergency departments of its hospitals. Kerim Genc, Ph.D.Application of Lean and Human Factors Principles to Process Improvement at Piedmont Healthcare We are excited to deploy these solutions in a clinical point-of-service space and leverage our deep technical expertise to deliver much-needed solutions to existing bottlenecks in this area. Our technology has always been cutting edge and best in class for working with 3D images and generating 3D models, and it’s great to have regulatory clearance now that includes point-of-service 3D printing.
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The software is intended to be used in conjunction with other diagnostic tools and expert clinical judgment.Īs part of the clearance, Synopsys has partnered with 3D printing companies for a workflow, with more details available at. The physical replicas can be used for diagnostic purposes in the field of orthopedic, maxillofacial and cardiovascular applications. It is also designed as preoperative software for diagnostic and surgical planning.įor these purposes, the output files can also be used for making physical replicas using traditional or additive manufacturing methods. Simpleware ScanIP Medical is intended to be used as a software interface and an image segmentation system for transferring medical imaging information to an output file. The indications for use of FDA 510 (k) are:
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One of the few software to have this FDA 510 (k) clearance, Simpleware ScanIP Medical is also CE and ISO 13485: 2016 certified as a medical device to work with medical imaging data.
SCANIP SIMPLEWARE LOGO FULL
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Customizable: Automate repeatable tasks and operations with scripts and plug-ins.Accurate and reliable: High quality anatomical models for practicing and planning complex surgical procedures.
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Easy to learn and use: Intuitive interface with quick and easy access to all tools and features.Some of the benefits of Simpleware’s point-of-service (POC) 3D printing solution are as follows: With permission, the software may be used as part of end-to-end DICOM 3D printing workflows for diagnostic decision making. Synopsys Simpleware ScanIP Medical is now available for medical 3D printing upon receipt FDA 510 (k) clearance in this area.