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1
Thigh loaded wearable resistance increases sagittal plane rotational work of the thigh resulting in slower 50-m sprint times
Macadam, P.
,
Cronin, J. B.
,
Uthoff, A. M.
,
Nagahara, R.
,
Zois, J.
,
Diewald, S.
,
Tinwala, F.
,
Neville, J.
Published in
Sports Biomechanics
(2022)
“…
Zois, J
.…”
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2
Effects of forearm wearable resistance during accelerated sprints: From a standing start position
Uthoff, A. M.
,
Macadam, P.
,
Zois, J.
,
Nagahara, R.
,
Neville, J.
,
Cronin, J. B.
Published in
Journal of Sports Sciences
(2021)
“…
Zois, J
.…”
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3
Acceleration mechanics during forward and backward running: A comparison of step kinematics and kinetics over the first 20 m
Uthoff, A.
,
Zois, J.
,
Van Den Tillaar, R.
,
Nagahara, R.
Published in
Journal of Sports Sciences
(2021)
“…
Zois, J
.…”
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4
Force-velocity profile changes with forearm wearable resistance during standing start sprinting
Macadam, P.
,
Mishra, M.
,
Feser, E. H.
,
Uthoff, A. M.
,
Cronin, J. B.
,
Zois, J.
,
Nagahara, R.
,
Tinwala, F.
Published in
European Journal of Sport Science
(2020)
“…
Zois, J
.…”
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Related Subjects
biomechanics
short-distance running
sprint
acceleration
start
track and field
velocity
wearable
analysis
auxiliary device
change of direction
movement
movement action
muscle
resistance
running
soccer
speed
strength
technology
test
training
training effect
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