Browse by Research Project Code

Up a level
Export as [feed] Atom [feed] RSS 1.0 [feed] RSS 2.0

Ferraro, R., Guido, S., Caserta, S. and Tassieri, M. (2024) i-Rheo-optical assay: Measuring the viscoelastic properties of multicellular spheroids. Materials Today Bio, (doi: 10.1016/j.mtbio.2024.101066) (In Press)

Matheson, A. B., Mendonca, T., Smith, M. G., Sutcliffe, B., Fernandez, A. J., Paterson, L., Dalgarno, P. A., Wright, A. J. and Tassieri, M. (2024) Fully angularly resolved 3D microrheology with optical tweezers. Rheologica Acta, 63, pp. 205-217. (doi: 10.1007/s00397-024-01435-1) (PMID:38440195) (PMCID:PMC10908627)

Hardiman, W., Clark, M., Friel, C., Huett, A., Pérez-Cota, F., Setchfield, K., Wright, A. J. and Tassieri, M. (2023) Living cells as a biological analog of optical tweezers – a non-invasive microrheology approach. Acta Biomaterialia, 166, pp. 317-325. (doi: 10.1016/j.actbio.2023.04.039) (PMID:37137402)

Smith, M. G., Radford, J. , Febrianto, E. , Ramírez, J., O'Mahony, H., Matheson, A. B., Gibson, G. M. , Faccio, D. and Tassieri, M. (2023) Machine learning opens a doorway for microrheology with optical tweezers in living systems. AIP Advances, 13(7), 075315. (doi: 10.1063/5.0161014)

Mendonca, T. et al. (2023) OptoRheo: simultaneous in situ micro-mechanical sensing and imaging of live 3D biological systems. Communications Biology, 6, 463. (doi: 10.1038/s42003-023-04780-8)

Ferraro, R., Guido, S., Caserta, S. and Tassieri, M. (2023) Compressional stress stiffening & softening of soft hydrogels - how to avoid artefacts in their rheological characterisation. Soft Matter, 19(11), pp. 2053-2057. (doi: 10.1039/D3SM00077J) (PMID:36866743)

Matheson, A. B., Mendonca, T., Gibson, G. M. , Dalgarno, P. A., Wright, A. J., Paterson, L. and Tassieri, M. (2021) Microrheology with an anisotropic optical trap. Frontiers in Physics, 9, 621512. (doi: 10.3389/fphy.2021.621512)

Matheson, A. B., Paterson, L., Wright, A. J., Mendonca, T., Tassieri, M. and Dalgarno, P. A. (2021) Optical tweezers with integrated multiplane microscopy (OpTIMuM): a new tool for 3D microrheology. Scientific Reports, 11, 5614. (doi: 10.1038/s41598-021-85013-y) (PMID:33692443) (PMCID:PMC7946888)

Guadayol, Ò., Mendonca, T., Segura-Noguera, M., Wright, A. J., Tassieri, M. and Humphries, S. (2021) Microrheology reveals microscale viscosity gradients in planktonic systems. Proceedings of the National Academy of Sciences of the United States of America, 118(1), e2011389118. (doi: 10.1073/pnas.2011389118)

Matheson, A. B., Paterson, L., Wright, A. J., Mendonca, T., Tassieri, M. and Dalgarno, P. A. (2021) Optical Tweezers with Integrated Multiplane Microscopy (OpTIMuM) – a new tool for 3D microrheology. Scientific Reports, 11, 5614. (doi: 10.1038/s41598-021-85013-y) (PMID:33692443) (PMCID:PMC7946888)

Smith, M. G., Tassieri, M. and Gibson, G. M. (2021) i-RheoFT: Fourier transforming sampled functions without artefacts. Scientific Reports, 11, 24047.

Ciccone, G., Dobre, O. , Gibson, G. M. , Rey, J. M., Gonzalez-Garcia, C., Vassalli, M. , Salmeron-Sanchez, M. and Tassieri, M. (2020) What caging force cells feel in 3D hydrogels: a rheological perspective. Advanced Healthcare Materials, 9(17), 2000517. (doi: 10.1002/adhm.202000517) (PMID:32696605)

Rivas-Barbosa, R., Escobedo-Sánchez, M. A., Tassieri, M. and Laurati, M. (2020) i-Rheo: determining the linear viscoelastic moduli of colloidal dispersions from step-stress measurements. Physical Chemistry Chemical Physics, 22, pp. 3839-3848. (doi: 10.1039/C9CP06191F)

Ashworth, J.C. et al. (2020) Peptide gels of fully-defined composition and mechanics for probing cell-cell and cell-matrix interactions in vitro. Matrix Biology, 85-86, pp. 15-33. (doi: 10.1016/j.matbio.2019.06.009) (PMID:31295578)

Tassieri, M. (2019) Microrheology with optical tweezers: Peaks and troughs. Current Opinion in Colloid and Interface Science, 43, pp. 39-51. (doi: 10.1016/j.cocis.2019.02.006)

Moreno-Guerra, J. A., Romero-Sánchez, I. C., Martinez-Borquez, A., Tassieri, M. , Stiakakis, E. and Laurati, M. (2019) Model-free Rheo-AFM probes the viscoelasticity of tunable DNA soft colloids. Small, 15(42), 1904136. (doi: 10.1002/smll.201904136) (PMID:31460707)

Khalid, M. A. , Ray, A., Cohen, S., Tassieri, M. , Demčenko, A. , Tseng, D., Reboud, J. , Ozcan, A. and Cooper, J. M. (2019) Computational image analysis of guided acoustic waves enables rheological assessment of sub-nanoliter volumes. ACS Nano, 13(10), pp. 11062-11069. (doi: 10.1021/acsnano.9b03219) (PMID:31490647)

This list was generated on Thu Apr 25 05:01:27 2024 BST.