Modeling the Effect of Adverse Environmental Conditions and Clothing on Temperature Rise in a Human Body Exposed to Radio Frequency Electromagnetic Fields
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Stephen M. Moore | Steve Iskra | Andrew W. Wood | Robert L. McIntosh | A. Wood | R. McIntosh | S. Iskra | Stephen M. Moore
[1] P. A. Mason,et al. A high-resolution voxel model for predicting local tissue temperatures in humans subjected to warm and hot environments. , 2009, Journal of biomechanical engineering.
[2] Ingvar Holmér,et al. Apparent latent heat of evaporation from clothing: attenuation and "heat pipe" effects. , 2008, Journal of applied physiology.
[3] Paolo Bernardi,et al. SAR distribution and temperature increase in an anatomical model of the human eye exposed to the field radiated by the user antenna in a wireless LAN , 1998 .
[4] Jianlei Niu,et al. Thermal comfort models: A review and numerical investigation , 2012 .
[5] S. Tanabe,et al. Evaluation of thermal comfort using combined multi-node thermoregulation (65MN) and radiation models and computational fluid dynamics (CFD) , 2002 .
[6] K. Lomas,et al. A computer model of human thermoregulation for a wide range of environmental conditions: the passive system. , 1999, Journal of applied physiology.
[7] Kenneth R Foster,et al. Modeling thermal responses in human subjects following extended exposure to radiofrequency energy , 2004, Biomedical engineering online.
[8] Niels Kuster,et al. The Virtual Family—development of surface-based anatomical models of two adults and two children for dosimetric simulations , 2010, Physics in medicine and biology.
[9] George Havenith,et al. A simple theoretical model of heat and moisture transport in multi-layer garments in cool ambient air , 2009, European Journal of Applied Physiology.
[10] Shuzo Murakami,et al. Combined simulation of airflow, radiation and moisture transport for heat release from a human body , 2000 .
[11] Yi Li,et al. A Transient 3-D Thermal Model for Clothed Human Body Considering More Real Geometry , 2013, J. Comput..
[12] Standard Ashrae. Thermal Environmental Conditions for Human Occupancy , 1992 .
[13] Paolo Bernardi,et al. Specific absorption rate and temperature elevation in a subject exposed in the far-field of radio-frequency sources operating in the 10-900-MHz range , 2003, IEEE Transactions on Biomedical Engineering.
[14] Huaxiong Huang,et al. Numerical study of heat and moisture transfer in textile materials by a finite volume method , 2008 .
[15] Yi Li,et al. A MODEL OF COUPLED LIQUID MOISTURE AND HEAT TRANSFER IN POROUS TEXTILES WITH CONSIDERATION OF GRAVITY , 2003 .
[16] N. Taylor,et al. Regional variations in transepidermal water loss, eccrine sweat gland density, sweat secretion rates and electrolyte composition in resting and exercising humans , 2013, Extreme Physiology & Medicine.
[17] Edward Arens,et al. Indoor Environmental Quality ( IEQ ) Title A model of human physiology and comfort for assessing complex thermal environments , 2001 .
[18] R. Luebbers,et al. The Finite Difference Time Domain Method for Electromagnetics , 1993 .
[19] J. A. J. Stolwijk,et al. Temperature regulation in man — A theoretical study , 1966, Pflüger's Archiv für die gesamte Physiologie des Menschen und der Tiere.
[20] K. Lomas,et al. Computer prediction of human thermoregulatory and temperature responses to a wide range of environmental conditions , 2001, International journal of biometeorology.
[21] George Havenith,et al. UTCI-Fiala multi-node model of human heat transfer and temperature regulation , 2012, International Journal of Biometeorology.
[22] L. Muller,et al. Temperature measurement in intensive care patients: comparison of urinary bladder, oesophageal, rectal, axillary, and inguinal methods versus pulmonary artery core method , 2003, Intensive Care Medicine.
[23] A. Ahlbom. Guidelines for limiting exposure to time-varying electric, magnetic, and electromagnetic fields (up to 300 GHz) , 1998 .
[24] N. Ghaddar,et al. A new transient bioheat model of the human body and its integration to clothing models , 2007 .
[25] Kenneth R Foster,et al. Thermal aspects of exposure to radiofrequency energy: Report of a workshop , 2011, International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group.
[26] Yi Li,et al. AN IMPROVED MATHEMATICAL SIMULATION OF THE COUPLED DIFFUSION OF MOISTURE AND HEAT IN WOOL FABRIC , 1999 .
[27] P. A. Mason,et al. High-resolution simulations of the thermophysiological effects of human exposure to 100 MHz RF energy , 2013, Physics in medicine and biology.
[28] C. Gabriel. Compilation of the Dielectric Properties of Body Tissues at RF and Microwave Frequencies. , 1996 .
[29] B. Jones. Transient interaction between the human and the thermal environment , 1992 .
[30] A. P. Gagge,et al. An Effective Temperature Scale Based on a Simple Model of Human Physiological Regulatiry Response , 1972 .
[31] Baris Ozerdem,et al. A numerical simulation study for the human passive thermal system , 2008 .
[32] J D Hardy,et al. Partitional calorimetric studies of responses of man to thermal transients. , 1966, Journal of applied physiology.
[33] Byron W. Jones,et al. Transient response of the human-clothing system , 1993 .
[34] Li Yi,et al. Effect of clothing material on thermal responses of the human body , 2005 .
[35] O. Fujiwara,et al. FDTD analysis of body-core temperature elevation in children and adults for whole-body exposure , 2008, Physics in medicine and biology.
[36] Devashish Shrivastava,et al. A generic bioheat transfer thermal model for a perfused tissue. , 2009, Journal of biomechanical engineering.
[37] Ingvar Holmér,et al. The thermal insulation difference of clothing ensembles on the dry and perspiration manikins , 2010 .
[38] V M Spitzer,et al. The Visible Human data set: an image resource for anatomical visualization. , 1995, Medinfo. MEDINFO.
[39] Robert L. McIntosh,et al. A COMPREHENSIVE TISSUE PROPERTIES DATABASE PROVIDED FOR THE THERMAL ASSESSMENT OF A HUMAN AT REST , 2010 .
[40] Muhsin Kilic,et al. Modelling airflow, heat transfer and moisture transport around a standing human body by computational fluid dynamics , 2008 .
[41] Ieee Standards Board. IEEE standard for safety levels with respect to human exposure to radio frequency electromagnetic fields, 3kHz to 300 GHz , 1992 .
[42] Shuzo Murakami,et al. CFD analysis of wind environment around a human body , 1999 .
[43] O. Fujiwara,et al. FDTD analysis of human body-core temperature elevation due to RF far-field energy prescribed in the ICNIRP guidelines , 2007, Physics in medicine and biology.
[44] H. H. Penns. Analysis of tissue and arterial blood temperatures in the resting human forearm , 1948 .