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Friction mechanisms of hairy fabrics
Bocquet, R., Tourlonias, M., Bueno, M. A., Derler, S., & Rossi, R. (2012). Friction mechanisms of hairy fabrics. In R. Hufenus & R. Rossi (Eds.), The Fiber Society 2012 spring conference. Fiber research for tomorrow's applications (pp. 313-314). Empa; The Fiber Society.
Heat loss and moisture retention variations of boot membranes and sock fabrics: a foot manikin study
Bogerd, C. P., Brühwiler, P. A., & Rossi, R. M. (2012). Heat loss and moisture retention variations of boot membranes and sock fabrics: a foot manikin study. International Journal of Industrial Ergonomics, 42(2), 212-218. https://doi.org/10.1016/j.ergon.2012.01.001
The effect of two sock fabrics on perception and physiological parameters associated with blister incidence: a field study
Bogerd, C. P., Niedermann, R., Brühwiler, P. A., & Rossi, R. M. (2012). The effect of two sock fabrics on perception and physiological parameters associated with blister incidence: a field study. Annals of Occupational Hygiene, 56(4), 481-488. https://doi.org/10.1093/annhyg/mer127
Brush model to predict the friction of hairy textile fabrics from indentation measurements
Camillieri, B., Bueno, M. A., Rossi, R. M., & Derler, S. (2012). Brush model to predict the friction of hairy textile fabrics from indentation measurements. Wear, 296(1-2), 519-527. https://doi.org/10.1016/j.wear.2012.07.027
A straightforward synthesis of fluorescent and temperature-responsive nanogels
Crespy, D., Zuber, S., Turshatov, A., Landfester, K., & Popa, A. M. (2012). A straightforward synthesis of fluorescent and temperature-responsive nanogels. Journal of Polymer Science. Part A: Polymer Chemistry, 50(6), 1043-1048. https://doi.org/10.1002/pola.25875
Colloid-electrospinning: fabrication of multicompartment nanofibers by the electrospinning of organic or/and inorganic dispersions and emulsions
Crespy, D., Friedemann, K., & Popa, A. M. (2012). Colloid-electrospinning: fabrication of multicompartment nanofibers by the electrospinning of organic or/and inorganic dispersions and emulsions. Macromolecular Rapid Communications, 33(23), 1978-1995. https://doi.org/10.1002/marc.201200549
Medical textiles with low friction for decubitus prevention
Derler, S., Rao, A., Ballistreri, P., Huber, R., Scheel-Sailer, A., & Rossi, R. M. (2012). Medical textiles with low friction for decubitus prevention. Tribology International, 46(1), 208-214. https://doi.org/10.1016/j.triboint.2011.03.011
Tribology of skin: review and analysis of experimental results for the friction coefficient of human skin
Derler, S., & Gerhardt, L. C. (2012). Tribology of skin: review and analysis of experimental results for the friction coefficient of human skin. Tribology Letters, 45(1), 1-27. https://doi.org/10.1007/s11249-011-9854-y
Polymer optical fibers as gas sensors
Dorrestijn, M., Camerlo, A., Widmer, S., Rossi, R. M., Korent Urek, Š., Viltužnik, B., … Scherer, L. J. (2012). Polymer optical fibers as gas sensors (pp. 448-449). Presented at the 14th international meeting on chemical sensors (IMCS 2012). https://doi.org/10.5162/IMCS2012/5.2.5
Assessment of biophysical skin properties at different body sites in hospitalized old patients: results of a pilot study
Fiedler, M., Gerhardt, L. C., Derler, S., Bischofberger, G., Hürny, C., & Münzer, T. (2012). Assessment of biophysical skin properties at different body sites in hospitalized old patients: results of a pilot study. Gerontology, 58(6), 513-517. https://doi.org/10.1159/000336623
Development of PET fibers for photocatalytic degradation of organic molecules
Fortunato, G., Tenniche, A., Gottardo, L., Reifler, F. A., Michalow, K., & Hufenus, R. (2012). Development of PET fibers for photocatalytic degradation of organic molecules. In R. Hufenus & R. Rossi (Eds.), The Fiber Society 2012 spring conference. Fiber research for tomorrow's applications. St. Gallen, Switzerland: Empa; The Fiber Society.
Reinforcement of polymeric submicrometer-sized fibers by microfibrillated cellulose
Fortunato, G., Zimmermann, T., Lübben, J., Bordeanu, N., & Hufenus, R. (2012). Reinforcement of polymeric submicrometer-sized fibers by microfibrillated cellulose. Macromolecular Materials and Engineering, 297(6), 576-584. https://doi.org/10.1002/mame.201100408
Stretching bioreactor for dynamic engineering of muscle tissues
Giraud, M. N., Bertschi, D., Guex, A. G., Fouassier, C., Romano, F., Näther, S., … Tevaearai, H. T. (2012). Stretching bioreactor for dynamic engineering of muscle tissues. In T. Ishikawa & M. Yamamoto (Eds.), Tissue engineering. Fundamentals, techniques and applications (pp. 57-73). Nova Science Publishers, Inc.
Biodegradable fibres for cardiac repair
Guex, G., Frobert, A., Cook, S., Fortunato, G., Körner, E., Hegemann, D., … Giraud, M. N. (2012). Biodegradable fibres for cardiac repair. In R. Hufenus & R. Rossi (Eds.), Fiber Society 2012 Spring Conference: Fiber Research for Tomorrow's Applications. The Fiber Society 2012 spring conference. Fiber research for tomorrow's applications. St. Gallen, Switzerland: Empa; The Fiber Society.
Fine-tuning of substrate architecture and surface chemistry promotes muscle tissue development
Guex, A. G., Kocher, F. M., Fortunato, G., Körner, E., Hegemann, D., Carrel, T. P., … Giraud, M. N. (2012). Fine-tuning of substrate architecture and surface chemistry promotes muscle tissue development. Acta Biomaterialia, 8(4), 1481-1489. https://doi.org/10.1016/j.actbio.2011.12.033
End-of-life indicators based on temperature switchable nanobombs
Hamberger, A., Popa, A. M., Rossi, R. M., Kattnig, D. R., Hinderberger, D., Landfester, K., & Crespy, D. (2012). End-of-life indicators based on temperature switchable nanobombs. Journal of Materials Chemistry, 22(19), 9909-9920. https://doi.org/10.1039/C2JM30333G
Base fiber technologies for smart textiles
Hufenus, R., Hegemann, D., Gaan, S., Reifler, F. A., & Scherer, L. J. (2012). Base fiber technologies for smart textiles (p. (2 pp.). Presented at the Fiber society 2012 fall meeting and technical conference. Rediscovering fibers in the 21st century. .
The Fiber Society 2012 spring conference. Fiber research for tomorrow's applications
Hufenus, R., & Rossi, R. (2012). The Fiber Society 2012 spring conference. Fiber research for tomorrow's applications. (R. Hufenus & R. Rossi, Eds.). The Fiber Society 2012 spring conference. St. Gallen, Switzerland: Empa; The Fiber Society.
Tuneable force sensor based on flexible polymeric optical fibres
Krehel, M., Rossi, R. M., Bona, G. L., & Scherer, L. J. (2012). Tuneable force sensor based on flexible polymeric optical fibres (p. (2 pp.). Presented at the Fiber society 2012 fall meeting and technical conference. Rediscovering fibers in the 21st century. .
Can we trust experimental standard deviations?
Meyer, V. R. (2012). Can we trust experimental standard deviations? LC-GC Europe, 25(8), 417-424.