Mechanical and physical regulation of fibroblast–myofibroblast transition: from cellular mechanoresponse to tissue pathology M D'Urso, NA Kurniawan Frontiers in bioengineering and biotechnology 8, 609653, 2020 | 208 | 2020 |
Factor XIII stiffens fibrin clots by causing fiber compaction NA Kurniawan, J Grimbergen, J Koopman, GH Koenderink Journal of Thrombosis and Haemostasis 12 (10), 1687-1696, 2014 | 118 | 2014 |
Early stiffening and softening of collagen: interplay of deformation mechanisms in biopolymer networks NA Kurniawan, LH Wong, R Rajagopalan Biomacromolecules 13 (3), 691-698, 2012 | 103 | 2012 |
Multi-scale strain-stiffening of semiflexible bundle networks IK Piechocka, KA Jansen, CP Broedersz, NA Kurniawan, FC MacKintosh, ... Soft matter 12 (7), 2145-2156, 2016 | 96 | 2016 |
Cell‐perceived substrate curvature dynamically coordinates the direction, speed, and persistence of stromal cell migration M Werner, A Petersen, NA Kurniawan, CVC Bouten Advanced Biosystems 3 (10), 1900080, 2019 | 83 | 2019 |
Curvature in biological systems: its quantification, emergence, and implications across the scales B Schamberger, R Ziege, K Anselme, M Ben Amar, M Bykowski, ... advanced materials 35 (13), 2206110, 2023 | 81 | 2023 |
Mesoscale substrate curvature overrules nanoscale contact guidance to direct bone marrow stromal cell migration M Werner, NA Kurniawan, G Korus, CVC Bouten, A Petersen Journal of The Royal Society Interface 15 (145), 20180162, 2018 | 75 | 2018 |
Porosity governs normal stresses in polymer gels HCG De Cagny, BE Vos, M Vahabi, NA Kurniawan, M Doi, ... Physical review letters 117 (21), 217802, 2016 | 75 | 2016 |
Cellular geometry sensing at different length scales and its implications for scaffold design M Werner, NA Kurniawan, CVC Bouten Materials 13 (4), 963, 2020 | 64 | 2020 |
Entropic forces drive cellular contact guidance ABC Buskermolen, H Suresh, SS Shishvan, A Vigliotti, A DeSimone, ... Biophysical journal 116 (10), 1994-2008, 2019 | 64 | 2019 |
Stimuli-responsive materials: A smart way to study dynamic cell responses M Bril, S Fredrich, NA Kurniawan Smart Materials in Medicine 3, 257-273, 2022 | 63 | 2022 |
Vascular mechanobiology: towards control of in situ regeneration EE Van Haaften, CVC Bouten, NA Kurniawan Cells 6 (3), 19, 2017 | 62 | 2017 |
Decoupling the effect of shear stress and stretch on tissue growth and remodeling in a vascular graft EE van Haaften, TB Wissing, MCM Rutten, JA Bulsink, K Gashi, ... Tissue Engineering Part C: Methods 24 (7), 418-429, 2018 | 60 | 2018 |
Mechanobiology of cell migration in the context of dynamic two-way cell–matrix interactions NA Kurniawan, PK Chaudhuri, CT Lim Journal of biomechanics 49 (8), 1355-1368, 2016 | 60 | 2016 |
Fibrin networks support recurring mechanical loads by adapting their structure across multiple scales NA Kurniawan, BE Vos, A Biebricher, GJL Wuite, EJG Peterman, ... Biophysical journal 111 (5), 1026-1034, 2016 | 59 | 2016 |
Cellular contact guidance emerges from gap avoidance ABC Buskermolen, T Ristori, D Mostert, MC van Turnhout, SS Shishvan, ... Cell Reports Physical Science 1 (5), 2020 | 58 | 2020 |
Hemodynamic loads distinctively impact the secretory profile of biomaterial-activated macrophages–implications for in situ vascular tissue engineering TB Wissing, EE van Haaften, SE Koch, BD Ippel, NA Kurniawan, ... Biomaterials science 8 (1), 132-147, 2020 | 57 | 2020 |
Layer-specific cell differentiation in bi-layered vascular grafts under flow perfusion I Pennings, EE van Haaften, T Jungst, JA Bulsink, AJWP Rosenberg, ... Biofabrication 12 (1), 015009, 2019 | 56 | 2019 |
Local dynamic mechanical analysis for heterogeneous soft matter using ferrule-top indentation H van Hoorn, NA Kurniawan, GH Koenderink, D Iannuzzi Soft Matter 12 (12), 3066-3073, 2016 | 55 | 2016 |
Buffers strongly modulate fibrin self-assembly into fibrous networks NA Kurniawan, THS van Kempen, S Sonneveld, TT Rosalina, BE Vos, ... Langmuir 33 (25), 6342-6352, 2017 | 52 | 2017 |