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Andy T Clark

Showing results (1-10 of 7) with videos related to

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Biomedical Physics & Engineering Express|August 7, 2025
Radiodynamic therapy as a potential strategy for metastatic control in small-cell lung cancer: a preclinical studyAndy T Clark, Dusica Cvetkovic, Dae-Myoung Yang, et al.
Advanced Materials (Deerfield Beach, Fla.)|October 19, 2020
Magneto-Driven Gradients of Diamagnetic Objects for Engineering Complex TissuesHannah M Zlotnick, Andy T Clark, Sarah E Gullbrand, et al.
Multifunctional Materials|March 2, 2023
Magnetic field tuning of mechanical properties of ultrasoft PDMS-based magnetorheological elastomers for biological applicationsAndy T Clark, Alexander Bennett, Emile Kraus, et al.
APL Materials|March 2, 2023
The effect of polymer stiffness on magnetization reversal of magnetorheological elastomersAndy T Clark, David Marchfield, Zheng Cao, et al.
ACS Applied Materials & Interfaces|April 28, 2021
Dynamic Tuning of Viscoelastic Hydrogels with Carbonyl Iron Microparticles Reveals the Rapid Response of Cells to Three-Dimensional Substrate MechanicsKiet A Tran, Emile Kraus, Andy T Clark, et al.
Physics in Medicine and Biology|January 18, 2008
A CMOS active pixel sensor system for laboratory- based x-ray diffraction studies of biological tissueSarah E Bohndiek, Emily J Cook, Costas D Arvanitis, et al.
ACS Applied Materials & Interfaces|May 11, 2019
Tunable and Reversible Substrate Stiffness Reveals a Dynamic Mechanosensitivity of CardiomyocytesElise A Corbin, Alexia Vite, Eliot G Peyster, et al.
Pageof 1

Showing results (1-10 of 7) with videos related to

Sort By:
Pageof 1
Biomedical Physics & Engineering Express|August 7, 2025
Radiodynamic therapy as a potential strategy for metastatic control in small-cell lung cancer: a preclinical studyAndy T Clark, Dusica Cvetkovic, Dae-Myoung Yang, et al.
Advanced Materials (Deerfield Beach, Fla.)|October 19, 2020
Magneto-Driven Gradients of Diamagnetic Objects for Engineering Complex TissuesHannah M Zlotnick, Andy T Clark, Sarah E Gullbrand, et al.
Multifunctional Materials|March 2, 2023
Magnetic field tuning of mechanical properties of ultrasoft PDMS-based magnetorheological elastomers for biological applicationsAndy T Clark, Alexander Bennett, Emile Kraus, et al.
APL Materials|March 2, 2023
The effect of polymer stiffness on magnetization reversal of magnetorheological elastomersAndy T Clark, David Marchfield, Zheng Cao, et al.
ACS Applied Materials & Interfaces|April 28, 2021
Dynamic Tuning of Viscoelastic Hydrogels with Carbonyl Iron Microparticles Reveals the Rapid Response of Cells to Three-Dimensional Substrate MechanicsKiet A Tran, Emile Kraus, Andy T Clark, et al.
Physics in Medicine and Biology|January 18, 2008
A CMOS active pixel sensor system for laboratory- based x-ray diffraction studies of biological tissueSarah E Bohndiek, Emily J Cook, Costas D Arvanitis, et al.
ACS Applied Materials & Interfaces|May 11, 2019
Tunable and Reversible Substrate Stiffness Reveals a Dynamic Mechanosensitivity of CardiomyocytesElise A Corbin, Alexia Vite, Eliot G Peyster, et al.
Pageof 1