2019 |
de Lange J, Quenneville CE. Evaluation of the distribution of forces on the foot under axial impact loading to assess variations among altered ankle postures between two ATD models. In: Proceedings of the 2019 International IRCOBI Conference on the Biomechanics of Injury. September 11-13, 2019; Florence, Italy.673-683. |
0 |
0 |
2020 |
de Lange J, Quenneville CE. Investigation of the biofidelity of the MIL-Lx foot. In: Proceedings of the 2020 International IRCOBI Conference on the Biomechanics of Injury. 2020; Munich, Germany.647-658. |
0 |
0 |
2020 |
Steinmann ND, de Lange JE, Quenneville CE. Quantification of loading to the upper limb behind a ballistic shield using a novel modified ATD arm. In: Proceedings of the 2020 International IRCOBI Conference on the Biomechanics of Injury. 2020; Munich, Germany.707-708. |
0 |
0 |
2022 |
de Lange JE, Burrows LJ, Binette J-S, Quenneville CE. Characterising the back-face deformation of ballistic shields using an augmented WorldSID upper limb. In: Proceedings of the 2022 International IRCOBI Conference on the Biomechanics of Injury. September 14-16, 2022; Porto, Portugal.461-469. |
0 |
0 |
2022 |
King ARA, Yu B, Quenneville CE. Design of a honeycomb energy absorbing structure for bicycle helmets. In: Proceedings of the 2022 International IRCOBI Conference on the Biomechanics of Injury. September 14-16, 2022; Porto, Portugal.924-925. |
0 |
0 |
2023 |
Burrows L, de Lange JE; Cheryl E. Quenneville. The injury tolerance of the upper extremity from behind-shield blunt trauma mechanisms. In: Proceedings of the 2023 International IRCOBI Conference on the Biomechanics of Injury. September 13-165, 2023; Cambridge, United Kingdom.607-608. |
0 |
0 |
2015 |
Smolen C, Quenneville CE. Quantifying the effect of ankle posture on the positions of bones of the foot/ankle complex. In: Proceedings of the 11th Ohio State University Injury Biomechanics Symposium. May 17-19, 2015; Columbus, OH. |
0 |
0 |
2016 |
Chakravarty A, Martinez A, Quenneville CE. The effect of occupant posture on the risk of fracture in the human tibia under dynamic impact loading. In: Proceedings of the 12th Ohio State University Injury Biomechanics Symposium. June 5-7, 2016; Columbus, OH. |
0 |
0 |
2016 |
Martinez A, Chakravarty A, Quenneville CE. The effect of impulse on the axial fracture tolerance of the isolated tibia during automotive and military impacts. In: Proceedings of the 12th Ohio State University Injury Biomechanics Symposium. June 5-7, 2016; Columbus, OH. |
0 |
0 |
2022 |
King ARA, Tyedmers A, Gonder S, Yu B, Quenneville CE. Design of a nature-inspired honeycomb bicycle helmet for prevention of traumatic brain injury. In: Proceedings of the 17th Ohio State University Injury Biomechanics Symposium. May 23-24, 2022; Columbus, OH. |
0 |
0 |
2017 |
Chakravarty AB, Martinez AA, Quenneville CE. The injury tolerance of the tibia under off-axis impact loading. Ann Biomed Eng. June 2017;45(6):1534-1542. |
5 |
0 |
2017 |
Smolen C, Quenneville CE. A finite element model of the foot/ankle to evaluate injury risk in various postures. Ann Biomed Eng. August 2017;45(8):1993-2008. |
1 |
1 |
2015 |
Muizelaar A, Winemaker MJ, Quenneville CE, Wohl GR. Preliminary testing of a novel bilateral plating technique for treating periprosthetic fractures of the distal femur. Clin Biomech (Bristol, Avon). November 2015;30(9):921926. |
2 |
2 |
2020 |
Gluek C, Zdero R, Quenneville CE. Evaluating the mechanical response of novel synthetic femurs for representing osteoporotic bone. J Biomech. October 9, 2020;111:110018. |
0 |
0 |
2010 |
Quenneville CE, Fraser GS, Dunning CE. Development of an apparatus to produce fractures from short-duration high-impulse loading with an application in the lower leg. J Biomech Eng. January 2010;132(1):014502. |
13 |
7 |
2019 |
Acharya I, Van Tuyl JT, de Lange J, Quenneville CE. A force-sensing insole to quantify impact loading to the foot. J Biomech Eng. February 2019;141(2):024501. |
2 |
0 |
2018 |
Martinez AA, Chakravarty AB, Quenneville CE. The effect of impact duration on the axial fracture tolerance of the isolated tibia during automotive and military impacts. J Mech Behav Biomed Mater. February 2018;78:315. |
8 |
1 |
2020 |
Jazinizadeh F, Mohammadi H, Quenneville CE. Comparing the fracture limits of the proximal femur under impact and quasi-static conditions in simulation of a sideways fall. J Mech Behav Biomed Mater. March 2020;103:103593. |
8 |
4 |
2021 |
Mohammadi H, Pietruszczak S, Quenneville CE. Numerical analysis of hip fracture due to a sideways fall. J Mech Behav Biomed Mater. March 2021;115:104283. |
0 |
0 |
2011 |
Quenneville CE, McLachlin SD, Greeley GS, Dunning CE. Injury tolerance criteria for short-duration axial impulse loading of the isolated tibia. J Trauma. January 2011;70(1):E13-E18. |
20 |
10 |
2020 |
Jazinizadeh F, Quenneville CE. Enhancing hip fracture risk prediction by statistical modeling and texture analysis on DXA images. Med Eng Phys. April 2020;78:14-20. |
2 |
0 |
2022 |
Djuricic A, Gee A, Schemitsch EH, Quenneville CE, Zdero R. Biomechanical design of a new percutaneous locked plate for comminuted proximal tibia fractures. Med Eng Phys. June 1, 2022;104:103801. |
0 |
0 |
2017 |
Quenneville CE, Fournier E, Shewchenko N. The effect of anthropomorphic test device lower leg surrogate selection on impact mitigating system evaluation in low- and high-rate loading conditions. Mil Med. September–October 2017;182(9-10):e1981-e1986. |
4 |
0 |
2020 |
Jazinizadeh F, Adachi JD, Quenneville CE. Advanced 2D image processing technique to predict hip fracture risk in an older population based on single DXA scans. Osteoporos Int. October 2020;31(10):1925-1933. |
4 |
3 |
2014 |
Burkhart TA, Quenneville CE, Dunning CE, Andrews DM. Development and validation of a distal radius finite element model to simulate impact loading indicative of a forward fall. Proc Inst Mech Eng Part H-J Eng Med. March 2014;228(3):258-271. |
5 |
3 |
2016 |
Vijayakumar V, Quenneville CE. Quantifying the regional variations in the mechanical properties of cancellous bone of the tibia using indentation testing and quantitative computed tomographic imaging. Proc Inst Mech Eng Part H-J Eng Med. June 2016;230(6):588-593. |
4 |
4 |
2016 |
Smolen C, Quenneville CE. The effect of ankle posture on the load pathway through the hindfoot. Proc Inst Mech Eng Part H-J Eng Med. November 2016;230(11):1024-1035. |
4 |
0 |
2016 |
Van Tuyl J, Burkhart TA, Quenneville CE. Effect of posture on forces and moments measured in a Hybrid III ATD lower leg. Traffic Inj Prev. May 18, 2016;17(4):381-385. |
2 |
0 |
2020 |
Cameron MW, Schemitsch EH, Zdero R, Quenneville CE. Biomechanical impact testing of synthetic versus human cadaveric tibias for predicting injury risk during pedestrian-vehicle collisions. Traffic Inj Prev. February 17, 2020;21(2):163-168. |
1 |
0 |