Research graph
References from Analysing Ergonomy with a MoCap System and Exoskeleton. Local targets link to admitted publications; unresolved targets remain external evidence.
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Occupational Low Back Disorder Causation and Control
10.1080/001401300409080 · 2000 · External reference
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Comparison of Eight Published Static Finite Element Models of the Intact Lumbar Spine: Predictive Power of Models Improves When Combined Together
10.1016/j.jbiomech.2014.04.002 · 2014 · External reference
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SPEXOR Passive Spinal Exoskeleton Decreases Metabolic Cost during Symmetric Repetitive Lifting
10.1007/s00421-019-04284-6 · 2020 · External reference
10.20944/preprints202204.0024.v1
10.20944/preprints202204.0024.v1 · External reference
Manual Palletizing Simulation: Time and Ergonomic Study
10.1007/s12008-025-02474-5 · 2026 · External reference
The Effects of Operator Position, Pallet Orientation, and Palletizing Condition on Low Back Loads in Manual Bag Palletizing Operations
10.1016/j.ergon.2015.03.005 · 2015 · External reference
Effects of Industrial Back-Support Exoskeletons on Body Loading and User Experience: An Updated Systematic Review
10.1080/00140139.2020.1870162 · 2021 · External reference
10.3389/fbioe.2021.765257
10.3389/fbioe.2021.765257 · External reference
The Effects of a Passive Exoskeleton on Muscle Activity, Discomfort and Endurance Time in Forward Bending Work
10.1016/j.apergo.2015.12.003 · 2016 · External reference
A Passive Exoskeleton Reduces Peak and Mean EMG during Symmetric and Asymmetric Lifting
10.1016/j.jelekin.2019.05.003 · 2019 · External reference
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10.3389/frobt.2018.00072
10.3389/frobt.2018.00072 · External reference
The Effect of a Passive Trunk Exoskeleton on Functional Performance in Healthy Individuals
10.1016/j.apergo.2018.04.007 · 2018 · External reference
Subjektive Evaluation industrieller Exoskelette im Rahmen von Feldstudien an ausgewählten Arbeitsplätzen
10.1007/s41449-018-0122-y · 2018 · External reference
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Evaluation of the Physiological Benefits of a Passive Back-Support Exoskeleton during Lifting and Working in Forward Leaning Postures
10.1016/j.jbiomech.2023.111489 · 2023 · External reference
Effects of Back-Support Exoskeletons with Different Functional Mechanisms on Trunk Muscle Activity and Kinematics
10.1017/wtc.2023.5 · 2023 · External reference
10.3390/app14135564
10.3390/app14135564 · External reference
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Position and Orientation in Space of Bones during Movement: Anatomical Frame Definition and Determination
10.1016/0268-0033(95)91394-t · 1995 · External reference
ISB Recommendation on Definitions of Joint Coordinate System of Various Joints for the Reporting of Human Joint Motion—Part I: Ankle, Hip, and Spine
10.1016/s0021-9290(01)00222-6 · 2002 · External reference
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10.3390/biomechanics6010015
10.3390/biomechanics6010015 · External reference
10.3390/s22020436
10.3390/s22020436 · External reference
10.20944/preprints202505.2023.v1
10.20944/preprints202505.2023.v1 · External reference
Lower Extremity Exoskeletons and Active Orthoses: Challenges and State-of-the-Art
10.1109/tro.2008.915453 · 2008 · External reference
State of the Art and Future Directions for Lower Limb Robotic Exoskeletons
10.1109/tnsre.2016.2521160 · 2017 · External reference
Validation of Inertial Measurement Units with an Optoelectronic System for Whole-Body Motion Analysis
10.1007/s11517-016-1537-2 · 2017 · External reference
A Review of 3D Human Pose Estimation Algorithms for Markerless Motion Capture
10.1016/j.cviu.2021.103275 · 2021 · External reference
The Validity and Usability of Markerless Motion Capture and Inertial Measurement Units for Quantifying Dynamic Movements
10.1249/mss.0000000000003579 · 2025 · External reference
25 Years of Lower Limb Joint Kinematics by Using Inertial and Magnetic Sensors: A Review of Methodological Approaches
10.1016/j.gaitpost.2016.11.008 · 2017 · External reference
10.3390/s25134004
10.3390/s25134004 · External reference
SPEXOR Passive Spinal Exoskeleton Decreases Metabolic Cost during Symmetric Repetitive Lifting
10.1007/s00421-019-04284-6 · ExternalCitation · doi-reference
Validation of Inertial Measurement Units with an Optoelectronic System for Whole-Body Motion Analysis
10.1007/s11517-016-1537-2 · ExternalCitation · doi-reference
Manual Palletizing Simulation: Time and Ergonomic Study
10.1007/s12008-025-02474-5 · ExternalCitation · doi-reference
Subjektive Evaluation industrieller Exoskelette im Rahmen von Feldstudien an ausgewählten Arbeitsplätzen
10.1007/s41449-018-0122-y · ExternalCitation · doi-reference
Position and Orientation in Space of Bones during Movement: Anatomical Frame Definition and Determination
10.1016/0268-0033(95)91394-t · ExternalCitation · doi-reference
The Effects of a Passive Exoskeleton on Muscle Activity, Discomfort and Endurance Time in Forward Bending Work
10.1016/j.apergo.2015.12.003 · ExternalCitation · doi-reference
The Effect of a Passive Trunk Exoskeleton on Functional Performance in Healthy Individuals
10.1016/j.apergo.2018.04.007 · ExternalCitation · doi-reference
A Review of 3D Human Pose Estimation Algorithms for Markerless Motion Capture
10.1016/j.cviu.2021.103275 · ExternalCitation · doi-reference
The Effects of Operator Position, Pallet Orientation, and Palletizing Condition on Low Back Loads in Manual Bag Palletizing Operations
10.1016/j.ergon.2015.03.005 · ExternalCitation · doi-reference
25 Years of Lower Limb Joint Kinematics by Using Inertial and Magnetic Sensors: A Review of Methodological Approaches
10.1016/j.gaitpost.2016.11.008 · ExternalCitation · doi-reference
Comparison of Eight Published Static Finite Element Models of the Intact Lumbar Spine: Predictive Power of Models Improves When Combined Together
10.1016/j.jbiomech.2014.04.002 · ExternalCitation · doi-reference
Evaluation of the Physiological Benefits of a Passive Back-Support Exoskeleton during Lifting and Working in Forward Leaning Postures
10.1016/j.jbiomech.2023.111489 · ExternalCitation · doi-reference
A Passive Exoskeleton Reduces Peak and Mean EMG during Symmetric and Asymmetric Lifting
10.1016/j.jelekin.2019.05.003 · ExternalCitation · doi-reference
ISB Recommendation on Definitions of Joint Coordinate System of Various Joints for the Reporting of Human Joint Motion—Part I: Ankle, Hip, and Spine
10.1016/s0021-9290(01)00222-6 · ExternalCitation · doi-reference
Effects of Back-Support Exoskeletons with Different Functional Mechanisms on Trunk Muscle Activity and Kinematics
10.1017/wtc.2023.5 · ExternalCitation · doi-reference
Occupational Low Back Disorder Causation and Control
10.1080/001401300409080 · ExternalCitation · doi-reference
Effects of Industrial Back-Support Exoskeletons on Body Loading and User Experience: An Updated Systematic Review
10.1080/00140139.2020.1870162 · ExternalCitation · doi-reference
State of the Art and Future Directions for Lower Limb Robotic Exoskeletons
10.1109/tnsre.2016.2521160 · ExternalCitation · doi-reference
Lower Extremity Exoskeletons and Active Orthoses: Challenges and State-of-the-Art
10.1109/tro.2008.915453 · ExternalCitation · doi-reference
The Validity and Usability of Markerless Motion Capture and Inertial Measurement Units for Quantifying Dynamic Movements
10.1249/mss.0000000000003579 · ExternalCitation · doi-reference
10.20944/preprints202204.0024.v1
10.20944/preprints202204.0024.v1 · ExternalCitation · doi-reference
10.20944/preprints202505.2023.v1
10.20944/preprints202505.2023.v1 · ExternalCitation · doi-reference
10.3389/fbioe.2021.765257
10.3389/fbioe.2021.765257 · ExternalCitation · doi-reference
10.3389/frobt.2018.00072
10.3389/frobt.2018.00072 · ExternalCitation · doi-reference
10.3390/app14135564
10.3390/app14135564 · ExternalCitation · doi-reference
10.3390/biomechanics6010015
10.3390/biomechanics6010015 · ExternalCitation · doi-reference
10.3390/s22020436
10.3390/s22020436 · ExternalCitation · doi-reference
10.3390/s25134004
10.3390/s25134004 · ExternalCitation · doi-reference