Human upper-limb force capacities evaluation with robotic models for ergonomic applications: effect of elbow flexion.

scientific article published on 27 July 2015

Human upper-limb force capacities evaluation with robotic models for ergonomic applications: effect of elbow flexion. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1080/10255842.2015.1034117
P698PubMed publication ID26214374
P5875ResearchGate publication ID280537527

P50authorNasser RezzougQ57549713
P2093author name stringVincent Hernandez
Julien Jacquier-Bret
Philippe Gorce
P2860cites workIsokinetic and isometric muscle strength in a healthy population with special reference to age and gender.Q44479077
Effect of lifting height and load mass on low back loading.Q47228811
Estimating physical assistance need using a musculoskeletal model.Q51265395
Rotation sequence as an important factor in shoulder kinematics.Q53264492
A robotics toolbox for MATLABQ58627106
Rotational strength, range of motion, and function in people with unaffected shoulders from various stages of lifeQ28388124
A mathematical approach to the mechanical capabilities of limbs and fingersQ33731049
Muscle redundancy does not imply robustness to muscle dysfunctionQ34171998
ISB recommendation on definitions of joint coordinate systems of various joints for the reporting of human joint motion--Part II: shoulder, elbow, wrist and hand.Q36103667
Active and passive contributions to joint kinetics during walking in older adultsQ37243148
Applications of biomechanics for prevention of work-related musculoskeletal disordersQ37421582
Complete 3D kinematics of upper extremity functional tasksQ40219612
P433issue4
P921main subjectergonomicsQ1750812
P304page(s)440-449
P577publication date2015-07-27
P1433published inComputer Methods in Biomechanics and Biomedical EngineeringQ15751255
P1476titleHuman upper-limb force capacities evaluation with robotic models for ergonomic applications: effect of elbow flexion.
P478volume19

Reverse relations

Q58115361A survey of human shoulder functional kinematic representationscites workP2860

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