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Research Database PMU-SQQUID


chosen keywordbiomechanics

Cerclage Wiring Improves Biomechanical Stability in Distal Tibia Spiral Fractures Treated by Intramedullary Nailing.
Förch, S; Sandriesser, S; von Rüden, C; Mayr, E; Augat, P;
J Clin Med. 2023; 12(5):
Full papers/articles (Journal)
Early biomechanical outcome in patients with acetabular fractures treated using the pararectus approach: a gait and stair climb analysis study.
Brand, A; von Rüden, C; Probst, C; Wenzel, L; Augat, P; Perl, M;
Eur J Trauma Emerg Surg. 2022; 48(2):1307-1316
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The Evolution of Reverse Total Shoulder Arthroplasty-From the First Steps to Novel Implant Designs and Surgical Techniques
Frank, JK; Siegert, P; Plachel, F; Heuberer, PR; Huber, S; Schanda, JE
J CLIN MED. 2022; 11(6): 1512
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Contribution to the 3R Principle: Description of a Specimen-Specific Finite Element Model Simulating 3-Point-Bending Tests in Mouse Tibiae
Huang, XW; Nussler, AK; Reumann, MK; Augat, P; Menger, MM; Ghallab, A; Hengstler, JG; Histing, T; Ehnert, S
Full papers/articles (Journal)
Mechanical and morphometric characterization of custom-made trabecular bone surrogates.
Klinger, S; Greinwald, M; Augat, P; Hollensteiner, M;
J Mech Behav Biomed Mater. 2022; 129: 105146
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Recovery of gait and function during the first six months after tibial shaft fractures.
Kroger, I; Mussig, J; Brand, A; Patzold, R; Wackerle, H; Klopfer-Kramer, I; Augat, P
Gait Posture. 2022; 91:66-72
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Factors Influencing Acromial and Scapular Spine Strain after Reverse Total Shoulder Arthroplasty: A Systematic Review of Biomechanical Studies.
Paszicsnyek, A; Jo, O; Rupasinghe, HS; Ackland, DC; Treseder, T; Pullen, C; Hoy, G; Ek, ET; Ernstbrunner, L
J CLIN MED. 2022; 11(2):
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Longitudinal Relationship Between Tibiofemoral Contact Stress at Baseline and Worsening of Knee Pain Over 84 Months in the Multicenter Osteoarthritis Study.
Rabe, KG; Stockman, TJ; Kern, AM; Wirth, W; Eckstein, F; Sharma, L; Lynch, JA; Nevitt, M; Anderson, DD; Segal, NA;
Am J Phys Med Rehabil. 2022; 101(8):726-732
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Evaluation of Meniscal Load and Load Distribution in the Canine Stifle after Tibial Plateau Levelling Osteotomy with Postoperative Tibia Plateau Angles of 6 and 1 Degrees.
Schmutterer, JM; Augat, P; Greinwald, M; Meyer-Lindenberg, A
Vet Comp Orthop Traumatol. 2022; 35(2):73-80
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VEGF-D-mediated signaling in tendon cells is involved in degenerative processes.
Tempfer, H; Spitzer, G; Lehner, C; Wagner, A; Gehwolf, R; Fierlbeck, J; Weissenbacher, N; Jessen, M; Heindl, LM; Traweger, A;
FASEB J. 2022; 36(2): e22126
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Biomechanical comparison of acetabular fracture fixation with stand-alone THA or in combination with plating.
Wenzel, L; Sandriesser, S; Glowalla, C; Gueorguiev, B; Perl, M; Stuby, FM; Augat, P; Hungerer, S;
Eur J Trauma Emerg Surg. 2022; 48(4): 3185-3192.
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The role of mechanical stimulation in the enhancement of bone healing.
Augat, P; Hollensteiner, M; von Rüden, C;
Injury. 2021; 52 Suppl 2:S78-S83
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Osteoarthritis year in review 2020: imaging.
Eckstein, F; Wirth, W; Culvenor, A;
Osteoarthritis Cartilage. 2021; 29(2):170-179
No more rattling: biomechanical evaluation of a hexapod ring fixator free of play.
Greinwald, M; Bliven, EK; Trompeter, A; Augat, P
BIOMED ENG-BIOMED TE. 2021; 66(5): 529-536.
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Reporting checklist for verification and validation of finite element analysis in orthopedic and trauma biomechanics.
Oefner, C; Herrmann, S; Kebbach, M; Lange, HE; Kluess, D; Woiczinski, M
MED ENG PHYS. 2021; 92: 25-32.
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The superficial medial collateral ligament is the major restraint to anteromedial instability of the knee.
Wierer, G; Milinkovic, D; Robinson, JR; Raschke, MJ; Weiler, A; Fink, C; Herbort, M; Kittl, C
Knee Surg Sports Traumatol Arthrosc. 2021; 29(2):405-416
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Biomechanical evaluation of locked plating fixation for unstable femoral neck fractures.
Bliven, E; Sandriesser, S; Augat, P; von Rüden, C; Hackl, S;
Bone Joint Res. 2020; 9(6): 314-321.
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Upper Body Posture and Muscle Activation in Recreational Cyclists: Immediate Effects of Variable Cycling Setups.
Brand, A; Sepp, T; Klöpfer-Krämer, I; Müßig, JA; Kröger, I; Wackerle, H; Augat, P;
Res Q Exerc Sport. 2020; 91(2):298-308
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Biomechanical considerations on a CT-based treatment-oriented classification in radius fractures.
Hintringer, W; Rosenauer, R; Pezzei, C; Quadlbauer, S; Jurkowitsch, J; Keuchel, T; Hausner, T; Leixnering, M; Krimmer, H
ARCH ORTHOP TRAUM SU. 2020; 140(5): 595-609.
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Analysis of Proteoglycan Content and Biomechanical Properties in Arthritic and Arthritis-Free Menisci
Pordzik, J; Bernstein, A; Mayr, HO; Latorre, SH; Maks, A; Schmal, H; Seidenstuecker, M
APPL SCI-BASEL. 2020; 10(24): 9012
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Correlation of Biomechanical Alterations under Gonarthritis between Overlying Menisci and Articular Cartilage
Pordzik, J; Bernstein, A; Watrinet, J; Mayr, HO; Latorre, SH; Schmal, H; Seidenstuecker, M
APPL SCI-BASEL. 2020; 10(23): 8673
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Bone Mass, Bone Microstructure and Biomechanics in Patients with Hand Osteoarthritis.
Simon, D; Tascilar, K; Unbehend, S; Bayat, S; Berlin, A; Liphardt, AM; Meinderink, T; Rech, J; Hueber, AJ; Schett, G; Kleyer, A;
J Bone Miner Res. 2020; 35(9):1695-1702
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External fixation of the lower extremities: Biomechanical perspective and recent innovations.
Bliven, EK; Greinwald, M; Hackl, S; Augat, P;
Injury. 2019; 50 Suppl 1: S10-S17.
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Generation of Human 3D Lung Tissue Cultures (3D-LTCs) for Disease Modeling.
Gerckens, M; Alsafadi, HN; Wagner, DE; Lindner, M; Burgstaller, G; Königshoff, M;
J Vis Exp. 2019; (144):
Case Reports
Bone surrogates provide authentic onlay graft fixation torques.
Hollensteiner, M; Augat, P; Fürst, D; Schrödl, F; Esterer, B; Gabauer, S; Schrempf, A;
J Mech Behav Biomed Mater. 2019; 91:159-163
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Development of open-cell polyurethane-based bone surrogates for biomechanical testing of pedicle screws.
Hollensteiner, M; Esterer, B; Fürst, D; Schrempf, A; Augat, P;
J Mech Behav Biomed Mater. 2019; 97:247-253
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Biomechanics of Osteoporotic Fracture Fixation.
Hollensteiner, M; Sandriesser, S; Bliven, E; von Rüden, C; Augat, P;
Curr Osteoporos Rep. 2019; 17(6):363-374
Greater knee flexion excursion/moment in hopping is associated with better knee function following anterior cruciate ligament reconstruction.
Perraton, LG; Clark, RA; Crossley, KM; Pua, YH; Whitehead, TS; Morris, HG; Culvenor, AG; Bryant, AL;
Knee Surg Sports Traumatol Arthrosc. 2019; 27(2):596-603
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Mechanical and morphological description of human acellular dura mater as a scaffold for surgical reconstruction.
Zwirner, J; Ondruschka, B; Scholze, M; Schulze-Tanzil, G; Hammer, N
J MECH BEHAV BIOMED. 2019; 96: 38-44.
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Distinct niches within the extracellular matrix dictate fibroblast function in (cell free) 3D lung tissue cultures.
Burgstaller, G; Sengupta, A; Vierkotten, S; Preissler, G; Lindner, M; Behr, J; Königshoff, M; Eickelberg, O;
Am J Physiol Lung Cell Mol Physiol. 2018; 314(5):L708-L723
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[Evolution and principles of intramedullary locked nailing].
Hierholzer, C; Friederichs, J; Augat, P; Woltmann, A; Trapp, O; Bühren, V; von Rüden, C;
Unfallchirurg. 2018; 121(3): 239-255.
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The Pathobiology of the Meniscus: A Comparison Between the Human and Dog.
Krupkova, O; Smolders, L; Wuertz-Kozak, K; Cook, J; Pozzi, A
FRONT VET SCI. 2018; 5: 73
Poor knee function after ACL reconstruction is associated with attenuated landing force and knee flexion moment during running.
Perraton, LG; Hall, M; Clark, RA; Crossley, KM; Pua, YH; Whitehead, TS; Morris, HG; Culvenor, AG; Bryant, AL;
Knee Surg Sports Traumatol Arthrosc. 2018; 26(2):391-398
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Bevacizumab Improves Achilles Tendon Repair in a Rat Model.
Tempfer, H; Kaser-Eichberger, A; Lehner, C; Gehwolf, R; Korntner, S; Kunkel, N; Wagner, A; Gruetz, M; Heindl, LM; Schroedl, F; Traweger, A;
Cell Physiol Biochem. 2018; 46(3):114-1158
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Novel bone surrogates for cranial surgery training.
Hollensteiner, M; Fürst, D; Esterer, B; Augat, P; Schrödl, F; Hunger, S; Malek, M; Stephan, D; Schrempf, A;
J Mech Behav Biomed Mater. 2017; 72: 49-51.
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Implant Material, Type of Fixation at the Shaft, and Position of Plate Modify Biomechanics of Distal Femur Plate Osteosynthesis
Kandemir, U; Augat, P; Konowalczyk, S; Wipf, F; von Oldenburg, G; Schmidt, U
J ORTHOP TRAUMA. 2017; 31(8): E241-E246.
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Stress and Alterations in Bones: An Interdisciplinary Perspective.
Wippert, PM; Rector, M; Kuhn, G; Wuertz-Kozak, K
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Knee kinematics and kinetics are associated with early patellofemoral osteoarthritis following anterior cruciate ligament reconstruction.
Culvenor, AG; Perraton, L; Guermazi, A; Bryant, AL; Whitehead, TS; Morris, HG; Crossley, KM;
Osteoarthritis Cartilage. 2016; 24(9): 1548-1553.
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Bone mechanical properties and changes with osteoporosis.
Osterhoff, G; Morgan, EF; Shefelbine, SJ; Karim, L; McNamara, LM; Augat, P
INJURY. 2016; 47 Suppl 2: S11-S20.
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Failure of fracture fixation in osteoporotic bone.
von Rüden, C; Augat, P;
Injury. 2016; 47 Suppl 2: S3-S10.
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External knee adduction and flexion moments during gait and medial tibiofemoral disease progression in knee osteoarthritis.
Chang, AH; Moisio, KC; Chmiel, JS; Eckstein, F; Guermazi, A; Prasad, PV; Zhang, Y; Almagor, O; Belisle, L; Hayes, K; Sharma, L;
Osteoarthritis Cartilage. 2015; 23(7):1099-1106
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Effect of angular stability and other locking parameters on the mechanical performance of intramedullary nails.
Hoffmann, S; Gerber, C; von Oldenburg, G; Kessler, M; Stephan, D; Augat, P
BIOMED ENG-BIOMED TE. 2015; 60(2): 157-164.
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Bone healing of critical size defects of the rat femur after the application of bone marrow aspirate and two different rh-BMP7 concentrations.
Hogel, F; Hoffmann, S; Hungerer, S; Fleischacker, E; Ullamann, T; Betz, OB; Augat, P
EUR J TRAUMA EMERG S. 2015; 41(5): 557-563.
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[Patella dislocation: an algorithm for diagnostic and treatment considering the rotation].
Ateschrang, A; Freude, T; Grünwald, L; Schäffler, A; Stöckle, U; Schröter, S;
Z Orthop Unfall. 2014; 152(1): 59-67.
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Biomechanical methods for the assessment of fracture repair.
Augat, P; Faschingbauer, M; Seide, K; Tobita, K; Callary, SA; Solomon, LB; Holstein, JH
Injury. 2014; 45 Suppl 2:S32-S38
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The biomechanical characteristics of arthroscopic tibial inlay techniques for posterior cruciate ligament reconstruction: in vitro comparison of tibial graft tunnel placement.
Benedetto, KP; Hoffelner, T; Osti, M;
Int Orthop. 2014; 38(11): 2363-2368.
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Complex distal humerus fractures-comparison of polyaxial locking and nonlocking screw configurations-a preliminary biomechanical study.
Hungerer, S; Wipf, F; von Oldenburg, G; Augat, P; Penzkofer, R;
J Orthop Trauma. 2014; 28(3): 130-136.
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A novel methodology for generating 3D finite element models of the hip from 2D radiographs.
Thevenot, J; Koivumäki, J; Kuhn, V; Eckstein, F; Jämsä, T;
J Biomech. 2014; 47(2): 438-444.
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Lateral cortical notching in specific cases of delayed unions or nonunions after intertrochanteric and reversed fractures.
Biber, R; Bail, HJ; Stedtfeld, HW;
Arch Orthop Trauma Surg. 2013; 133(4): 49-501.
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Biomechanical evaluation of interlocking lag screw design in intramedullary nailing of unstable pertrochanteric fractures.
Hoffmann, S; Paetzold, R; Stephan, D; Püschel, K; Buehren, V; Augat, P;
J Orthop Trauma. 2013; 27(9):483-490
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Reamed intramedullary nailing of diaphyseal tibial fractures: comparison of compression and non-compression nailing
Högel, F; Gerber, C; Bühren, V; Augat, P;
European Journal of Trauma. 2013; 39: 73-77.
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Biomechanical comparison of intramedullar versus extramedullar stabilization of intra-articular tibial plateau fractures.
Högel, F; Hoffmann, S; Panzer, S; Wimber, J; Bühren, V; Augat, P;
Arch Orthop Trauma Surg. 2013; 133(1):59-64
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Distal radius fracture fixation with volar locking plates and additional bone augmentation in osteoporotic bone: a biomechanical study in a cadaveric model.
Högel, F; Mair, S; Eberle, S; Weninger, P; von Oldenburg, G; Augat, P;
Arch Orthop Trauma Surg. 2013; 133(1):51-57
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Biomechanical evaluation of subtalar fusion: the influence of screw configuration and placement.
Hungerer, S; Eberle, S; Lochner, S; Maier, M; Högel, F; Penzkofer, R; Augat, P;
J Foot Ankle Surg. 2013; 52(2):177-183
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Bupivacaine induces short-term alterations and impairment in rat tendons.
Lehner, C; Gehwolf, R; Hirzinger, C; Stephan, D; Augat, P; Tauber, M; Resch, H; Bauer, HC; Bauer, H; Tempfer, H;
Am J Sports Med. 2013; 41(6):1411-1418
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[Stability of volar fixed-angle plating for distal radius fractures : Failure modes in osteoporotic bone].
Mair, S; Weninger, P; Högel, F; Panzer, S; Augat, P;
Unfallchirurg. 2013; 116(4):338-344
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Comparison of revision strategies for failed C2-posterior cervical pedicle screws: a biomechanical study.
Mayer, M; Zenner, J; Bogner, R; Hitzl, W; Figl, M; von Keudell, A; Stephan, D; Penzkofer, R; Augat, P; Korn, G; Resch, H; Koller, H;
Eur Spine J. 2013; 22(1): 46-53.
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Biomechanical comparison of locked plate osteosynthesis, reamed and unreamed nailing in conventional interlocking technique, and unreamed angle stable nailing in distal tibia fractures.
Hoegel, FW; Hoffmann, S; Weninger, P; Buhren, V; Augat, P
J Trauma Acute Care Surg. 2012; 73(4):933-938
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Biomechanical comparison of two locking plate systems for the distal tibia
Hogel, F; Hoffmann, S; Weninger, P; Buhren, V; Augat, P
EUR J TRAUMA EMERG S. 2012; 38(1): 53-58.
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Cortical bone finite element models in the estimation of experimentally measured failure loads in the proximal femur.
Koivumäki, JE; Thevenot, J; Pulkkinen, P; Kuhn, V; Link, TM; Eckstein, F; Jämsä, T;
Bone. 2012; 51(4):737-740
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Ct-based finite element models can be used to estimate experimentally measured failure loads in the proximal femur.
Koivumäki, JE; Thevenot, J; Pulkkinen, P; Kuhn, V; Link, TM; Eckstein, F; Jämsä, T;
Bone. 2012; 50(4):824-829
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Decellularized cartilage matrix as a novel biomatrix for cartilage tissue-engineering applications.
Schwarz, S; Koerber, L; Elsaesser, AF; Goldberg-Bockhorn, E; Seitz, AM; Dürselen, L; Ignatius, A; Walther, P; Breiter, R; Rotter, N;
Tissue Eng Part A. 2012; 18(21-22):2195-2209
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A 5-mm femoral defect in female but not in male rats leads to a reproducible atrophic non-union.
Mehta, M; Schell, H; Schwarz, C; Peters, A; Schmidt-Bleek, K; Ellinghaus, A; Bail, HJ; Duda, GN; Lienau, J;
Arch Orthop Trauma Surg. 2011; 131(1): 121-129.
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Biomechanical comparison of the end plate design of three vertebral body replacement systems
Penzkofer, R; Hofberger, S; Spiegl, U; Schilling, C; Schultz, R; Augat, P; Gonschorek, O
ARCH ORTHOP TRAUM SU. 2011; 131(9): 1253-1259.
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A biomechanical evaluation of orthopaedic implants for hip fractures by finite element analysis and in-vitro tests.
Eberle, S; Gerber, C; von Oldenburg, G; Högel, F; Augat, P;
Proc Inst Mech Eng H. 2010; 224(10): 1141-1152.
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Does femoral strain distribution coincide with the occurrence of cervical versus trochanteric hip fractures? An experimental finite element study
Koivumaki, JEM; Thevenot, J; Pulkkinen, P; Salmi, JA; Kuhn, V; Lochmuller, EM; Link, TM; Eckstein, F; Jamsa, T
MED BIOL ENG COMPUT. 2010; 48(7): 711-717.
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Anatomical plate configuration affects mechanical performance in distal humerus fractures.
Penzkofer, R; Hungerer, S; Wipf, F; von Oldenburg, G; Augat, P;
CLIN BIOMECH. 2010; 25(10): 972-978.
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The Impact of Cervical Pedicle Screws for Primary Stability in Multilevel Posterior Cervical Stabilizations
Schmidt, R; Koller, H; Wilke, HJ; Brade, J; Zenner, J; Meier, O; Ferraris, L; Mayer, M
SPINE. 2010; 35(22): E1167-E1171.
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The effect of repetitive pilot-hole use on the insertion torque and pullout strength of vertebral system screws.
Defino, HL; Rosa, RC; Silva, P; Shimano, AC; Volpon, JB; de Paula, FJ; Schleicher, P; Schnake, K; Kandziora, F;
Spine (Phila Pa 1976). 2009; 34(9):871-876
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Biomechanics of the hip and the proximal femur
Eberle, S; Augat, P
Osteologie. 2009; 18: 78-82.
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Influence of intramedullary nail diameter and locking mode on the stability of tibial shaft fracture fixation.
Penzkofer, R; Maier, M; Nolte, A; von Oldenburg, G; Püschel, K; Bühren, V; Augat, P;
ARCH ORTHOP TRAUM SU. 2009; 129(4): 525-531.
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In vivo remodeling of intervertebral discs in response to short- and long-term dynamic compression.
Wuertz, K; Godburn, K; MacLean, JJ; Barbir, A; Donnelly, JS; Roughley, PJ; Alini, M; Iatridis, JC;
J Orthop Res. 2009; 27(9):1235-1242
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Interfragmentary movement in diaphyseal tibia fractures fixed with locked intramedullary nails.
Augat, P; Penzkofer, R; Nolte, A; Maier, M; Panzer, S; v Oldenburg, G; Pueschl, K; Simon, U; Bühren, V;
J Orthop Trauma. 2008; 22(1):30-36
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Temporary distraction and compression of a diaphyseal osteotomy accelerates bone healing.
Claes, L; Augat, P; Schorlemmer, S; Konrads, C; Ignatius, A; Ehrnthaller, C;
J ORTHOP RES. 2008; 26(6): 772-777.
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Krenn, MH; Ambrosetti-Giudici, S; Pfenniger, A; Burger, J; Piotrowski, WP
NEUROSURGERY. 2008; 63(4): 309-313.
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Experimental hip fracture load can be predicted from plain radiography by combined analysis of trabecular bone structure and bone geometry.
Pulkkinen, P; Jämsä, T; Lochmüller, EM; Kuhn, V; Nieminen, MT; Eckstein, F;
Osteoporos Int. 2008; 19(4):547-558
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Mechanical induction of critically delayed bone healing in sheep: radiological and biomechanical results.
Schell, H; Thompson, MS; Bail, HJ; Hoffmann, JE; Schill, A; Duda, GN; Lienau, J;
J Biomech. 2008; 41(14): 3066-3072.
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Biomechanical comparison of two side plate fixation techniques in an unstable intertrochanteric osteotomy model: Sliding Hip Screw and Percutaneous Compression Plate.
Krischak, GD; Augat, P; Beck, A; Arand, M; Baier, B; Blakytny, R; Gebhard, F; Claes, L;
CLIN BIOMECH. 2007; 22(10): 1112-1118.
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The role of cortical bone and its microstructure in bone strength
Augat, P; Schorlemmer, S
AGE AGEING. 2006; 35: 27-31.
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The effects of exercise on human articular cartilage.
Eckstein, F; Hudelmaier, M; Putz, R;
J ANAT. 2006; 208(4): 491-512.
Mechanics and mechano-biology of fracture healing in normal and osteoporotic bone.
Augat, P; Simon, U; Liedert, A; Claes, L;
OSTEOPOROSIS INT. 2005; 16 Suppl 2: S36-S43.
Biocompatibility and functionality of the degradable polymer alkylene bis(dilactoyl)-methacrylate for screw augmentation in vivo
Ignatius, AA; Augat, P; Hollstein, E; Schorlemmer, S; Peraus, M; Pokinskyj, P; Claes, L
J BIOMED MATER RES B. 2005; 75B(1): 128-136.
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Inhibition of cortical and cancellous bone formation in glucocorticoid-treated OVX sheep.
Schorlemmer, S; Ignatius, A; Claes, L; Augat, P;
Bone. 2005; 37(4):491-496
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[Vertebral body replacement in spine surgery].
Kandziora, F; Schnake, KJ; Klostermann, CK; Haas, NP;
Unfallchirurg. 2004; 107(5):354-371
Shear movement at the fracture site delays healing in a diaphyseal fracture model.
Augat, P; Burger, J; Schorlemmer, S; Henke, T; Peraus, M; Claes, L;
J ORTHOPAED RES. 2003; 21(6): 1011-1017.
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Glucocorticoid-treated sheep as a model for osteopenic trabecular bone in biomaterials research
Augat, P; Schorlemmer, S; Gohl, C; Iwabu, S; Ignatius, A; Claes, L
J BIOMED MATER RES A. 2003; 66A(3): 457-462.
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Influence of diclofenac (group of nonsteroidal anti-inflammatory drugs) on fracture healing.
Beck, A; Krischak, G; Sorg, T; Augat, P; Farker, K; Merkel, U; Kinzl, L; Claes, L;
ARCH ORTHOP TRAUM SU. 2003; 123(7): 327-332.
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Glucocorticoid treatment of ovariectomized sheep affects mineral density, structure, and mechanical properties of cancellous bone.
Schorlemmer, S; Gohl, C; Iwabu, S; Ignatius, A; Claes, L; Augat, P;
J BONE MINER RES. 2003; 18(11): 2010-2015.
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A modified hip screw incorporating injected cement for the fixation of osteoporotic trochanteric fractures
Augat, P; Rapp, S; Claes, L
J ORTHOP TRAUMA. 2002; 16(5): 311-316.
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[Experimental fusion of the sheep cervical spine. Part I: Effect of cage design on interbody fusion].
Kandziora, F; Pflugmacher, R; Scholz, M; Schäfer, J; Schollmeier, G; Schnake, KJ; Bail, H; Duda, G; Haas, NP;
Chirurg. 2002; 73(9):909-917
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Effects of one-plane and two-plane external fixation on sheep osteotomy healing and complications
Krischak, GD; Janousek, A; Wolf, S; Augat, P; Kinzl, L; Claes, LE
CLIN BIOMECH. 2002; 17(6): 470-476.
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Correlation of bone mineral density with strength and microstructural parameters of cortical bone in vitro
Wachter, NJ; Krischak, GD; Mentzel, M; Sarkar, MR; Ebinger, T; Kinzl, L; Claes, L; Augat, P
BONE. 2002; 31(1): 90-95.
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Mechanical stimulation by external application of cyclic tensile strains does not effectively enhance bone healing
Augat, P; Merk, J; Wolf, S; Claes, L
J ORTHOP TRAUMA. 2001; 15(1): 54-60.
Full papers/articles (Journal)
Comparison between sheep and human cervical spines: an anatomic, radiographic, bone mineral density, and biomechanical study.
Kandziora, F; Pflugmacher, R; Scholz, M; Schnake, K; Lucke, M; Schröder, R; Mittlmeier, T;
Spine (Phila Pa 1976). 2001; 26(9):1028-1037
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[Mechanical comparison of biodegradable intervertebral lumbar cages].
Khodadadyan-Klostermann, C; Kandziora, F; Schnake, KJ; Lewandrowski, KU; Wise, D; Weiler, A; Haas, NP;
Chirurg. 2001; 72(12):1431-1438
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Predictive value of Singh index and bone mineral density measured by quantitative computed tomography in determining the local cancellous bone quality of the proximal femur
Wachter, NJ; Augat, P; Hoellen, IP; Krischak, GD; Sarkar, MR; Mentzel, M; Kinzl, L; Claes, L
CLIN BIOMECH. 2001; 16(3): 257-262.
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Prediction of strength of cortical bone in vitro by microcomputed tomography
Wachter, NJ; Augat, P; Krischak, GD; Sarkar, MR; Mentzel, M; Kinzl, L; Claes, L
CLIN BIOMECH. 2001; 16(3): 252-256.
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Predictive value of bone mineral density and morphology determined by peripheral quantitative computed tomography for cancellous bone strength of the proximal femur
Wachter, NJ; Augat, P; Mentzel, M; Sarkar, MR; Krischak, GD; Kinzl, L; Claes, LE
BONE. 2001; 28(1): 133-139.
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Mechanical factors influencing callus healing
Claes, L; Wolf, S; Augat, P
CHIRURG. 2000; 71(9): 989-994.
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Predictive value of bone mineral density and Singh Index for the in vitro mechanical properties of cancellous bone in the femoral head
Krischak, GD; Augat, P; Wachter, NJ; Kinzl, L; Claes, LE
CLIN BIOMECH. 1999; 14(5): 346-351.
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The distribution of cartilage thickness within the joints of the lower limb of elderly individuals.
Adam, C; Eckstein, F; Milz, S; Putz, R;
J Anat. 1998; 193 ( Pt 2): 203-214.
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The distribution of cartilage thickness in the knee-joints of old-aged individuals -- measurement by A-mode ultrasound.
Adam, C; Eckstein, F; Milz, S; Schulte, E; Becker, C; Putz, R;
Clin Biomech (Bristol, Avon). 1998; 13(1): 1-10.
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Anisotropy of the elastic modulus of trabecular bone specimens from different anatomical locations
Augat, P; Link, T; Lang, TF; Lin, JC; Majumdar, S; Genant, HK
MED ENG PHYS. 1998; 20(2): 124-131.
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Morphometric texture analysis of spinal trabecular bone structure assessed using orthogonal radiographic projections
Ouyang, XL; Majumdar, S; Link, TM; Lu, Y; Augat, P; Lin, J; Newitt, D; Genant, HK
MED PHYS. 1998; 25(10): 2037-2045.
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Quantitative assessment of experimental fracture repair by peripheral computed tomography.
Augat, P; Merk, J; Genant, HK; Claes, L;
Calcif Tissue Int. 1997; 60(2): 194-199.
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Volumetric quantitative computed tomography of the proximal femur: Precision and relation to bone strength
Lang, TF; Keyak, JH; Heitz, MW; Augat, P; Lu, Y; Mathur, A; Genant, HK
BONE. 1997; 21(1): 101-108.
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A calculation of the forces acting on the human acetabulum during walking. Based On in vivo force measurements, kinematic analysis and morphometry.
Witte, H; Eckstein, F; Recknagel, S;
Acta Anat (Basel). 1997; 160(4): 269-280.
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Computer-aided three dimensional assessment of knee-joint cartilage with magnetic resonance imaging.
Muensterer, OJ; Eckstein, F; Hahn, D; Putz, R;
Clin Biomech (Bristol, Avon). 1996; 11(5): 260-266.
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CLIN BIOMECH. 1995; 10(5): 227-234.
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The potential of magnetic resonance imaging (MRI) for quantifying articular cartilage thickness -- a methodological study.
Eckstein, F; Sittek, H; Milz, S; Schulte, E; Kiefer, B; Reiser, M; Putz, R;
Clin Biomech (Bristol, Avon). 1995; 10(8): 434-440.
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