The effect of two sock fabrics on physiological parameters associated with blister incidence: a laboratory study.
暂无分享,去创建一个
René M Rossi | C. P. Bogerd | P. A. Brühwiler | Paul A Brühwiler | Ivo Rechsteiner | R. Rossi | Ivo Rechsteiner | B. Wüst | Cornelis Peter Bogerd | Benno Wüst
[2] B. V. Holcombe,et al. Moisture Buffering Behavior of Hygroscopic Fabric During Wear , 1992 .
[3] K. Herring,et al. Friction blisters and sock fiber composition. A double-blind study. , 1990, Journal of the American Podiatric Medical Association.
[4] Ludovic Koehl,et al. Textile, Physiological, and Sensorial Parameters in Sock Comfort , 2010 .
[5] E. Witvrouw,et al. Sock systems to prevent foot blisters and the impact on overuse injuries of the knee joint. , 2009, Military medicine.
[6] H S Wiley,et al. Studies on blisters produced by friction. I. Results of linear rubbing and twisting technics. , 1966, The Journal of investigative dermatology.
[7] M B Sulzberger,et al. The friction blister. , 1972, Military medicine.
[8] C. E. Witt,et al. Injuries and risk factors in a 100-mile (161-km) infantry road march. , 1999, Preventive medicine.
[9] N. Ramanathan,et al. A NEW WEIGHTING SYSTEM FOR MEAN SURFACE TEMPERATURE OF THE HUMAN BODY. , 1964, Journal of applied physiology.
[10] S Derler,et al. Influence of epidermal hydration on the friction of human skin against textiles , 2008, Journal of The Royal Society Interface.
[11] J. Knapik,et al. Influence of an antiperspirant on foot blister incidence during cross-country hiking. , 1998, Journal of the American Academy of Dermatology.
[12] K. Reynolds,et al. Injuries associated with strenuous road marching. , 1992, Military medicine.
[13] J. Stolwijk,et al. Skin Friction and Fabric Sensations in Neutral and Warm Environments , 1986 .
[14] René M Rossi,et al. Analysis of Steam Formation and Migration in Firefighters’ Protective Clothing Using X-Ray Radiography , 2010, International journal of occupational safety and ergonomics : JOSE.
[15] I. Ciesielska,et al. Influence of different kind of clothing material on selected cardiovascular, respiratory and psychomotor parameters during moderate physical exercise. , 2009, International journal of occupational medicine and environmental health.
[16] Ingvar Holmér,et al. Heat Exchange and Thermal Insulation Compared in Woolen and Nylon Garments During Wear Trials , 1985 .
[17] S. Derler,et al. Friction of human skin against smooth and rough glass as a function of the contact pressure , 2009 .
[18] W. Johnson,et al. Soldier performance and strenuous road marching: influence of load mass and load distribution. , 1997, Military medicine.
[19] H. Tokura,et al. Effects of Moisture Absorption of Clothing on Pitching Speed of Amateur Baseball Players in Hot Environmental Conditions , 2006 .
[20] N. Burlion,et al. X-ray microtomography: Application to microstructure analysis of a cementitious material during leaching process , 2006 .
[21] Joanne N. Caldwell,et al. The sweating foot: local differences in sweat secretion during exercise-induced hyperthermia. , 2006, Aviation, space, and environmental medicine.
[22] Herring Km,et al. Friction blisters and sock fiber composition. A double-blind study , 1990 .
[23] Chi-Yuang Yu,et al. Foot surface area database and estimation formula. , 2009, Applied ergonomics.
[24] Jan Carmeliet,et al. Analysis of moisture flow in porous materials using microfocus X-ray radiography , 2006 .
[25] J. Weiner,et al. The regional distribution of sweating , 1945, The Journal of physiology.
[26] George Havenith,et al. Regional foot sweat rates during a 65 minute uphill walk with a backpack. , 2007 .
[27] Tijani Gharbi,et al. Influence of the hydrophobic and hydrophilic characteristics of sliding and slider surfaces on friction coefficient: in vivo human skin friction comparison , 2004, Skin research and technology : official journal of International Society for Bioengineering and the Skin (ISBS) [and] International Society for Digital Imaging of Skin (ISDIS) [and] International Society for Skin Imaging.
[28] A. Wong,et al. Impact of Fabric Moisture Transport Properties on Physiological Responses when Wearing Protective Clothing , 2008 .
[29] X. W. Feng,et al. Effects of fabric surface energy on human thermophysiological responses during exercise and recovery , 2007 .
[30] C. Schwartz,et al. Investigation of the influence of textiles and surface treatments on blistering using a novel simulant , 2012, Skin research and technology : official journal of International Society for Bioengineering and the Skin (ISBS) [and] International Society for Digital Imaging of Skin (ISDIS) [and] International Society for Skin Imaging.
[31] Friction blisters and sock fiber composition: Herring KM, Richie DH J Am Ped Med Assn 80:63–71 Feb 1990 , 1990 .
[32] D. DuBois,et al. FIFTH PAPER THE MEASUREMENT OF THE SURFACE AREA OF MAN , 1915 .
[33] R Nielsen,et al. The impact of activity level on sweat accumulation and thermal comfort using different underwear. , 1995, Ergonomics.
[34] H Tokura,et al. Effects of two kinds of clothing made from hydrophobic and hydrophilic fabrics on local sweating rates at an ambient temperature of 37 degrees C. , 1995, Ergonomics.
[35] M. Hamlet,et al. Influence of boot-sock systems on frequency and severity of foot blisters. , 1996, Military medicine.
[36] Richard G. Lomax,et al. Physiological and comfort effects of commercial wicking clothing under a bulletproof vest , 2007 .
[37] R. Rossi,et al. Experiments and modelling of skin-knitted fabric friction , 2010 .
[38] M. Hamlet,et al. Efficacy of antiperspirants on feet. , 1992, Military medicine.
[39] Textiles - Domestic washing and drying procedures for textile testing , 2022 .
[40] Yuichi Yanai,et al. Physiological significance of hydrophilic and hydrophobic textile materials during intermittent exercise in humans under the influence of warm ambient temperature with and without wind , 1998, European Journal of Applied Physiology and Occupational Physiology.
[41] R M Laing,et al. Differences in wearer response to garments for outdoor activity , 2008, Ergonomics.
[42] H I Maibach,et al. Frictional properties of human forearm and vulvar skin: influence of age and correlation with transepidermal water loss and capacitance. , 1990, Dermatologica.
[43] P. Naylor. EXPERIMENTAL FRICTION BLISTERS. , 1955, The British journal of dermatology.
[44] E. H. Gans,et al. Skin friction coefficient: changes induced by skin hydration and emollient application and correlation with perceived skin feel , 1981 .
[45] Andres Laib,et al. X-Ray Tomography Measurements of the Moisture Distribution in Multilayered Clothing Systems , 2006 .
[46] D. Hoeffler. Friction blisters and cellulitis in a navy recruit population. , 1975, Military medicine.
[47] P. Kenins,et al. Influence of Fiber Type and Moisture on Measured Fabric-to-Skin Friction , 1994 .