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Lab on a Chip
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February 5, 2014
Dynamically reconfigurable fibre optical spanner
Thorsten Kolb, Sahradha Albert, Michael Haug, et al.
Journal of Biophotonics
|
April 16, 2014
Optofluidic rotation of living cells for single-cell tomography
Thorsten Kolb, Sahradha Albert, Michael Haug, et al.
International Journal of Molecular Sciences
|
June 19, 2024
Levosimendan's Effects on Length-Dependent Activation in Murine Fast-Twitch Skeletal Muscle
Michael Haug, Mena Michael, Paul Ritter, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
|
June 27, 2026
Integrated Opto-Biomechatronics For Single Muscle Fibre Structure-Function Assessment: The MyoRobot 3.0
Michael Haug, Moritz Hellmann, Larysa Kovbasyuk, et al.
Cells
|
December 11, 2022
Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres-Active and Passive Force Assessments with the <i>Myorobot</i>
Mena Michael, Larisa Kovbasyuk, Paul Ritter, et al.
IEEE Transactions on Bio-Medical Engineering
|
June 16, 2021
Structure-Function Relationships in Muscle Fibres: MyoRobot Online Assessment of Muscle Fibre Elasticity and Sarcomere Length Distributions
Michael Haug, Paul Ritter, Mena Michael, et al.
The International Journal of Biochemistry & Cell Biology
|
July 1, 2019
Single muscle fibre biomechanics and biomechatronics - The challenges, the pitfalls and the future
Oliver Friedrich, Michael Haug, B Reischl, et al.
Journal of Biophotonics
|
May 10, 2017
Optomechanical measurement of the role of lamins in whole cell deformability
Thorsten Kolb, Julia Kraxner, Kai Skodzek, et al.
International Journal of Molecular Sciences
|
August 6, 2020
Growing Old Too Early: Skeletal Muscle Single Fiber Biomechanics in Ageing R349P Desmin Knock-in Mice Using the <i>MyoRobot</i> Technology
Charlotte Pollmann, Michael Haug, Barbara Reischl, et al.
International Journal of Molecular Sciences
|
September 23, 2022
Myofibrillar Lattice Remodeling Is a Structural Cytoskeletal Predictor of Diaphragm Muscle Weakness in a Fibrotic <i>mdx</i> (<i>mdx Cmah</i>) Model
Paul Ritter, Stefanie Nübler, Andreas Buttgereit, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 18) with videos related to
Sort By:
Page
of 2
Lab on a Chip
|
February 5, 2014
Dynamically reconfigurable fibre optical spanner
Thorsten Kolb, Sahradha Albert, Michael Haug, et al.
Journal of Biophotonics
|
April 16, 2014
Optofluidic rotation of living cells for single-cell tomography
Thorsten Kolb, Sahradha Albert, Michael Haug, et al.
International Journal of Molecular Sciences
|
June 19, 2024
Levosimendan's Effects on Length-Dependent Activation in Murine Fast-Twitch Skeletal Muscle
Michael Haug, Mena Michael, Paul Ritter, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
|
June 27, 2026
Integrated Opto-Biomechatronics For Single Muscle Fibre Structure-Function Assessment: The MyoRobot 3.0
Michael Haug, Moritz Hellmann, Larysa Kovbasyuk, et al.
Cells
|
December 11, 2022
Redox Balance Differentially Affects Biomechanics in Permeabilized Single Muscle Fibres-Active and Passive Force Assessments with the <i>Myorobot</i>
Mena Michael, Larisa Kovbasyuk, Paul Ritter, et al.
IEEE Transactions on Bio-Medical Engineering
|
June 16, 2021
Structure-Function Relationships in Muscle Fibres: MyoRobot Online Assessment of Muscle Fibre Elasticity and Sarcomere Length Distributions
Michael Haug, Paul Ritter, Mena Michael, et al.
The International Journal of Biochemistry & Cell Biology
|
July 1, 2019
Single muscle fibre biomechanics and biomechatronics - The challenges, the pitfalls and the future
Oliver Friedrich, Michael Haug, B Reischl, et al.
Journal of Biophotonics
|
May 10, 2017
Optomechanical measurement of the role of lamins in whole cell deformability
Thorsten Kolb, Julia Kraxner, Kai Skodzek, et al.
International Journal of Molecular Sciences
|
August 6, 2020
Growing Old Too Early: Skeletal Muscle Single Fiber Biomechanics in Ageing R349P Desmin Knock-in Mice Using the <i>MyoRobot</i> Technology
Charlotte Pollmann, Michael Haug, Barbara Reischl, et al.
International Journal of Molecular Sciences
|
September 23, 2022
Myofibrillar Lattice Remodeling Is a Structural Cytoskeletal Predictor of Diaphragm Muscle Weakness in a Fibrotic <i>mdx</i> (<i>mdx Cmah</i>) Model
Paul Ritter, Stefanie Nübler, Andreas Buttgereit, et al.
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of 2