How animals move: an integrative view MH Dickinson, CT Farley, RJ Full, MAR Koehl, R Kram, S Lehman science 288 (5463), 100-106, 2000 | 1870 | 2000 |
Energetics of running: a new perspective R Kram, CR Taylor Nature 346 (6281), 265-267, 1990 | 951 | 1990 |
Mechanical work for step-to-step transitions is a major determinant of the metabolic cost of human walking JM Donelan, R Kram, AD Kuo Journal of experimental biology 205 (23), 3717-3727, 2002 | 934 | 2002 |
Effects of obesity and sex on the energetic cost and preferred speed of walking RC Browning, EA Baker, JA Herron, R Kram Journal of applied physiology 100 (2), 390-398, 2006 | 826 | 2006 |
Mechanical and metabolic determinants of the preferred step width in human walking J Maxwell Donelan, R Kram, K Arthur D Proceedings of the Royal Society of London. Series B: Biological Sciences …, 2001 | 700 | 2001 |
Simultaneous positive and negative external mechanical work in human walking JM Donelan, R Kram, AD Kuo Journal of biomechanics 35 (1), 117-124, 2002 | 684 | 2002 |
The effects of adding mass to the legs on the energetics and biomechanics of walking RC Browning, JR Modica, R Kram, A Goswami Medicine & Science in Sports & Exercise 39 (3), 515-525, 2007 | 641 | 2007 |
Effects of obesity on the biomechanics of walking at different speeds RC Browning, R Kram Medicine & Science in Sports & Exercise 39 (9), 1632-1641, 2007 | 521 | 2007 |
Mechanical and metabolic requirements for active lateral stabilization in human walking JM Donelan, DW Shipman, R Kram, AD Kuo Journal of biomechanics 37 (6), 827-835, 2004 | 521 | 2004 |
Ground reaction forces during downhill and uphill running JS Gottschall, R Kram Journal of biomechanics 38 (3), 445-452, 2005 | 459 | 2005 |
Stride length in distance running: velocity, body dimensions, and added mass effects PR Cavanagh, R Kram Med Sci Sports Exerc 21 (4), 467-79, 1989 | 404 | 1989 |
Metabolic cost of generating muscular force in human walking: insights from load-carrying and speed experiments TM Griffin, TJ Roberts, R Kram Journal of applied physiology 95 (1), 172-183, 2003 | 382 | 2003 |
A comparison of the energetic cost of running in marathon racing shoes W Hoogkamer, S Kipp, JH Frank, EM Farina, G Luo, R Kram Sports Medicine 48 (4), 1009-1019, 2018 | 366 | 2018 |
Energetics of bipedal running: I. Metabolic cost of generating force TJ Roberts, R Kram, PG Weyand, CR Taylor Journal of Experimental Biology 201 (19), 2745-2751, 1998 | 348 | 1998 |
Energy cost and muscular activity required for propulsion during walking JS Gottschall, R Kram Journal of Applied Physiology 94 (5), 1766-1772, 2003 | 339 | 2003 |
Effect of reduced gravity on the preferred walk–run transition speed R Kram, A Domingo, DP Ferriss Journal of Experimental Biology 200 (4), 821-826, 1997 | 333 | 1997 |
Mechanics of running under simulated low gravity JP He, R Kram, TA McMahon Journal of Applied Physiology 71 (3), 863-870, 1991 | 328 | 1991 |
Force treadmill for measuring vertical and horizontal ground reaction forces R Kram, TM Griffin, JM Donelan, YH Chang Journal of applied physiology 85 (2), 764-769, 1998 | 314 | 1998 |
Energetic cost and preferred speed of walking in obese vs. normal weight women RC Browning, R Kram Obesity research 13 (5), 891-899, 2005 | 304 | 2005 |
Metabolic cost of running barefoot versus shod: is lighter better? JR Franz, CM Wierzbinski, R Kram Medicine & Science in Sports & Exercise 44 (8), 1519-1525, 2012 | 300 | 2012 |