CHICKENS ON THE CHEAP: BROILER CHICKEN WALKING MECHANICS

Heather Paxton , John R. Hutchinson , Sandra A. Corr , Monica A. Daley
Comparative Biochemistry and Physiology A-molecular & Integrative Physiology 153 ( 2)

2009
Coping mechanisms for rough terrain running in Guinea fowl (Numida meleagris)

Aleksandra V. Birn-Jeffery , Monica A. Daley
Comparative Biochemistry and Physiology A-molecular & Integrative Physiology 153 ( 2)

2009
Does a crouched leg posture enhance running stability and robustness

Yvonne Blum , Aleksandra Birn-Jeffery , Monica A. Daley , Andre Seyfarth
Journal of Theoretical Biology 281 ( 1) 97 -106

31
2011
Data from: Kinematic trajectories in response to speed perturbations in walking suggest modular task-level control of leg angle and length

M. Janneke Schwaner , Kiisa Nishikawa , Monica A. Daley
Dryad: https://doi.org/10.5061/dryad.k0p2ngfbb

2022
A PHYSIOLOGIST’S PERSPECTIVE ON ROBOTIC EXOSKELETONS FOR HUMAN LOCOMOTION

DANIEL P. FERRIS , GREGORY S. SAWICKI , MONICA A. DALEY
International Journal of Humanoid Robotics 4 ( 3) 507 -528

139
2007
Locomotor-ventilatory interactions in running humans

Monica Ann Daley
Department of Biology, University of Utah

1999
Effects of tendon-network mechanisms on avian terrestrial locomotion

F Bribiesca-Contreras , MA Daley , A Badri-Sprowitz
Integrative And Comparative Biology 61 E89 -E90

2021
Ground-bird running in non-rigid terrain: deducing task-level priorities in locomotion

C Hubicki , A Sproewitz , J Hurst , MA Daley
Integrative and Comparative Biology 54

2014
Kinematic trajectories in response to speed perturbations in walking suggest modular task-level control of leg angle and length

MJ Schwaner , KC Nishikawa , MA Daley
Integrative and Comparative Biology 62 ( 5) 1306 -1319

6
2022
A new muscle model including a titin element

SW Jeong , NA Rice , MA Daley , KC Nishikawa
INTEGRATIVE AND COMPARATIVE BIOLOGY 61 E415 -E416

2021
Predicting in vivo muscle force in running guinea fowl using a muscle model based on the winding filament hypothesis

CW Whitney , MA Daley , K Nishikawa
INTEGRATIVE AND COMPARATIVE BIOLOGY 58 E251 -E251

2018
Predicting in vivo muscle force in running guinea fowl using a muscle model based on the winding filament hypothesis.

CD Whitney , KC Nishikawa , MA Daley
INTEGRATIVE AND COMPARATIVE BIOLOGY 57 E178 -E178

2017
Intrinsic muscle dynamics power stability in the absence of autogenic proprioceptive feedback

JC Gordon , JA Carr , AA Biewener , MA Daley
Integrative and Comparative Biology 56

2016
Guinea fowl running in rough terrain with reduced proprioceptive feedback

JC Gordon , MA Daley , J Carr , NC Holt
Integrative and Comparative Biology 54

2014
Leg Muscles That Mediate

MA Daley , AA Biewener
Version doi: 10.1098/rstb. 2010.0338

2011
Distal hindlimb muscles play a key role in stability of running over rough terrain

MA Daley , AA Biewener
INTEGRATIVE AND COMPARATIVE BIOLOGY 46 E30 -E30

2006