Study Results
The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.
Basic Information
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TERMINATED
PHASE2
40 participants
INTERVENTIONAL
2002-12-31
2004-04-30
Brief Summary
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C-arms have some disadvantages, including image distortion, radiation exposure, and the need for time-consuming adjustments of the C-arm during the surgery. The new method would deal with these shortcomings with a computer-based system that adds to the existing C-arm system. It would provide the surgeon with a real-time view of the insertion process, and could improve the accuracy and speed of certain surgical procedures.
Disadvantages associated with C-arms include image distortion, radiation exposure, and time consuming reconfiguration of the C-arm during the insertion process. The proposed system would address these shortcomings with a computer-based system that augments the existing C-arm system.
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Detailed Description
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Disadvantages associated with C-arms include image distortion, radiation exposure, and time-consuming reconfiguration of the C-arm (between A/P and lateral views) during the insertion process. The proposed system would address these shortcomings with a computer-based system that augments the existing C-arm system. The new system uses an optical localizer (a stereo camera device that tracks light-emitting diodes) to monitor the location and orientation of a drill guide in the surgical field. The drill guide trajectory is then graphically superimposed on the x-ray images. This provides real-time, on-screen positional feedback to the surgeon to improve the accuracy and speed with which certain procedures involving insertion of drill bits or guide pins can be performed. The research effort will focus on the development of a clinical prototype and its evaluation by several quantitative and qualitative methods.
The commercial success of such a system depends on its acceptance by surgeons, which in turn depends on the extent to which it is a tool that provides better information to the surgeons without intruding on a procedure in which they are already highly skilled. Commercial success also depends on the ability of the system to reliably save time in the operating room. We will address these issues with cadaveric studies and subsequent clinical trials.
Proposed Commercial Applications: The initial commercial application of this system is the insertion of dynamic compression hip screws in cases of hip fracture. Because this is a common fracture, any reduction in surgical time has great potential for cost savings. Other advantages include decrease in radiation exposure and the potential reduction of serious complications. Minor modifications that allow the system to assist with numerous other orthopaedic trauma procedures are already planned.
Conditions
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Study Design
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RANDOMIZED
PARALLEL
TREATMENT
SINGLE
Interventions
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Image-guided surgical system
Eligibility Criteria
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Inclusion Criteria
* Patient must be 18 or older and have a life expectancy of at least 5 years beyond their enrollment.
* Patient must be able to provide written informed consent.
* Patient must agree to abide by the study protocol.
Exclusion Criteria
* Patient must not have a concurrent fracture in the same limb.
* Patient must not have a concurrent open fracture.
* Patient must not have a concurrent highly comminuted fracture or fractures that, in the surgeon's opinion, would allow excessive motion of the femoral shaft relative to the femoral head.
18 Years
ALL
No
Sponsors
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National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS)
NIH
Principal Investigators
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Thomas C. Kienzle, MD
Role: PRINCIPAL_INVESTIGATOR
Surgical Insights
Locations
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Lutheran General Hospital
Park Ridge, Illinois, United States
Countries
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Other Identifiers
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NIAMS-054
Identifier Type: -
Identifier Source: secondary_id
R01 AR44759
Identifier Type: -
Identifier Source: org_study_id
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