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Osteology / Hip arthroscopy / Femoral acetabular impingement / Femur / Hip / Arthroscopy / Medicine / Anatomy / Orthopedic surgery


Statistical Shape Modeling of Cam Femoroacetabular Impingement Michael D. Harris,1,2,3 Manasi Datar,3,4 Ross T. Whitaker,1,3,4 Elizabeth R. Jurrus,3 Christopher L. Peters,2 Andrew E. Anderson1,2,3,5 1 Department of Bioen
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Document Date: 2013-09-25 18:56:06


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File Size: 1,23 MB

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City

Philadelphia / Salt Lake City / Lake City / San Diego / HARRIS ET / /

Company

Pearson / FAI / Ogden / Norton / HP / W.B. Saunders Company / GE / Anderson AE / Wiley Periodicals Inc. / Siemens / /

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Facility

Wiley Online Library / University of Utah / Imaging Institute / /

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IndustryTerm

orthopaedic applications / entropy-based particle systems / built-in iterative closest point algorithm / intra-operative surgical tool / clinical tool / Online Library / gradient descent energy function / http /

Organization

Orthopaedic Research Society / National Institute of Health / National Alliance / 3Scientific Computing and Imaging Institute / National Science Foundation / Department of Bioengineering / Stat Assoc / University of Utah / Salt Lake City / /

Person

Ann Biomed Eng / Cam Femoroacetabular / Hugh West Jr. / Michael D. Harris / Andrew E. Anderson / /

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Position

aspherical femoral head / femoral head / representative / native head / anterolateral head / entire femoral head / dense-point distribution model for surgical navigation / /

ProvinceOrState

South Dakota / Utah / Alabama / Connecticut / /

RadioStation

Sheikh AM / Surg Am 90 / Surg Am 88 / Surg Am 93 / Surg Am 91 / /

Technology

alpha / generalized Procrustes algorithm / x-ray / 3-d / tomography / ultrasound / built-in iterative closest point algorithm / mri / /

URL

http /

SocialTag