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Thomas Jefferson University

3D printing

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3d Printing Of Bone Spurs Before Surgical Removal, Katelyn Koons, John Paul Prodoehl, Matthew Chadwick, Chris Li, Lauren Schlegel, Jeffrey Henstenburg, Md Jan 2020

3d Printing Of Bone Spurs Before Surgical Removal, Katelyn Koons, John Paul Prodoehl, Matthew Chadwick, Chris Li, Lauren Schlegel, Jeffrey Henstenburg, Md

Phase 1

Project Background: In the United States, 2% of the population will experience bone spurs, which will not resolve on their own.1 Of people over 60 who experience a bone spur, 40% will require medical attention.2 The soft tissue visualization appears to be difficult with imaging, leaving increased chance of poor balancing of the knee replacement. Osteophyte structure continues to be difficult to visualize in a 3D way and without their proper removal, can lead to increased rate of revision surgery. Having a 3D model of the bone spur may decrease risk of complication and enhance soft tissue modification …


3d Printed Liver Models As A Tool To Improve Pre-Surgical Consultation And Enhance Patient Consent, Miranda Sill, Nathan Ott, Robert S. Pugliese, Pharmd, Bcps Jan 2020

3d Printed Liver Models As A Tool To Improve Pre-Surgical Consultation And Enhance Patient Consent, Miranda Sill, Nathan Ott, Robert S. Pugliese, Pharmd, Bcps

Phase 1

Background: 3D printing has recently emerged as an effective, cost-efficient tool for healthcare innovation. We propose the fabrication of 3D printed, patient-specific liver models as a pre-surgical planning and communication tool for liver resection surgery.

Methods: Creation of the model began with the segmentation of the patient's abdominal CT scan, where specific sections of their anatomy, including the blood vessels (portal and hepatic systems), gallbladder, and tumor (when applicable), were digitally segmented. Each structure was then printed in a unique color using polylactic acid (PLA) plastic filament on an Ultimaker 5s printer. Once printed the components were arranged anatomically and …


3d Printing Of Knee Models To Decrease Or Time And Reduce Revisional Surgery In Total Knee Arthroplasty (Tka), Lauren Schlegel, John Paul Prodoehl, Matthew Chadwick, Chris Li, Katelyn Koons, Jeffrey Henstenburg, Md Jan 2020

3d Printing Of Knee Models To Decrease Or Time And Reduce Revisional Surgery In Total Knee Arthroplasty (Tka), Lauren Schlegel, John Paul Prodoehl, Matthew Chadwick, Chris Li, Katelyn Koons, Jeffrey Henstenburg, Md

Phase 1

Project Background: Osteophytes are a common problem, affecting 2% of the United States population. For many elderly people, these osteophytes will cause them to seek medical attention. Due to the 2-D nature of MRIs and CT scans, it can be difficult to gain a complete understanding of the complicated soft tissue structures surrounding the joint when performing a Total Knee Arthroplasty(TKA). Without proper removal of osteophytes and correct soft tissue balancing, there is an increased rate of revisional surgery. By utilizing a 3-D model preoperatively and within the OR, surgeons can visualize various aspects of the knee to determine what …


Patient-Specific 3d Printed Liver Models For Pre-Operative Planning And Improved Patient Adherence, Nathan Ott, Miranda Sill, Robert S. Pugliese, Pharmd, Bcps, Ashesh P. Shah, Md Jan 2020

Patient-Specific 3d Printed Liver Models For Pre-Operative Planning And Improved Patient Adherence, Nathan Ott, Miranda Sill, Robert S. Pugliese, Pharmd, Bcps, Ashesh P. Shah, Md

Phase 1

Project Background: 3D anatomical relationships in the liver are not always visually accessible for surgeons performing resections even with advanced imaging options. Firm understanding of these relationships is essential for timely procedures, which can improve patient outcomes and lower hospital expenses. Patient-specific 3D modeling has existed for some time, though it is costly. New cost-effective techniques have surfaced which may yield opportunities for more effective preoperative planning in liver surgery and improved patient adherence.

Methods: Digital patient-specific 3D reconstruction of a liver was completed by interpolating data from MRI scans using 3D Slicer, a segmenting program. The liver model was …


3d Printing Of Bone Spurs Before Surgical Removal During Total Knee Arthroplasty, Chris Li, Jeffrey Henstenburg, Md, Katelyn Koons, John Paul Prodoehl, Matthew Chadwick, Lauren Schlegel Jan 2020

3d Printing Of Bone Spurs Before Surgical Removal During Total Knee Arthroplasty, Chris Li, Jeffrey Henstenburg, Md, Katelyn Koons, John Paul Prodoehl, Matthew Chadwick, Lauren Schlegel

Phase 1

Background: In the United States, total knee arthroplasty (TKA) is the most common performed orthopedic surgery, with over 700,000 cases per year. Overall, 21-25% underwent revision due to instability. Incorrect soft tissue balancing during the procedure can lead to improper alignment, flexion, and extension. Visualization of osteophytes in a 3D manner prior to removal is difficult and poses significant risks for improper balancing on TKA. The purpose of the study is to determine whether the utilization of 3D osteophyte models is beneficial to Orthopaedic surgeons in the course of care, specifically with regard to improving outcomes, decreasing complication rates, and …


3d Printing Of Bone Spurs Before Surgical Removal, Matthew Chadwick, John Paul Prodoehl, Katelyn Koons, Chris Li, Lauren Schlegel, Jeffrey Henstenburg, Md Jan 2020

3d Printing Of Bone Spurs Before Surgical Removal, Matthew Chadwick, John Paul Prodoehl, Katelyn Koons, Chris Li, Lauren Schlegel, Jeffrey Henstenburg, Md

Phase 1

Project Background: In the US alone, total knee arthroplasty is the most common performed orthopedic surgery, with over 700,000 cases per year.1 Overall, 21-25% underwent revision due to instability.2 The stability of a TKA depends largely on soft tissue balance for proper alignment in flexion and extension. Soft tissue balancing in TKA depends on posterior femoral condylar osteophytes, which prevent full extension of the knee and increase tension posteriorly. Pre-operative soft tissue visualization is difficult and this leaves an increased chance for implant failure and revision surgery. Having a 3D model of the bone spur before and during the surgery …