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1
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0021526089
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Theory and Experiment for the Effect of Vascular Microstructure on Surface Tissue Heat Transfer—Part 1: Anatomical Foundation and Mode) Conceptualization
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Weinbaum, S., Jiji, L. M., and Lemons, D. E., “Theory and Experiment for the Effect of Vascular Microstructure on Surface Tissue Heat Transfer—Part 1: Anatomical Foundation and Mode Conceptualization,” ASME Journal of Biomecmanjcal Engineering, Vol. 106, 1984, pp. 321-330.
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(1984)
ASME Journal of Biomecmanjcal Engineering
, vol.106
, pp. 321-330
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Weinbaum, S.1
Jiji, L.M.2
Lemons, D.E.3
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2
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0022060772
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A New Simplified Bioheat Equation for the Effect of Blood Flow on Local Average Tissue Temperature
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Weinbaum, S., and Jiji, L. M., “A New Simplified Bioheat Equation for the Effect of Blood Flow on Local Average Tissue Temperature,” ASME Journal of Biomechanical Engineering, Vol. 107, 1985, pp. 131-139.
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(1985)
ASME Journal of Biomechanical Engineering
, vol.107
, pp. 131-139
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Weinbaum, S.1
Jiji, L.M.2
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3
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0023237485
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The Significance of Vessel Size and Type in Vascular Heat Transfer
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Lemons, D. E., Chicn, S., Crawshaw, L. I., Weinbaum, S., and Jiji, L. M., “The Significance of Vessel Size and Type in Vascular Heat Transfer,” Am. J. Physiol., Vol. 253, 1987, pp. R128-135.
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(1987)
Am. J. Physiol.
, vol.253
, pp. R128-R135
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Lemons, D.E.1
Chicn, S.2
Crawshaw, L.I.3
Weinbaum, S.4
Jiji, L.M.5
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4
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0018851429
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Microvascular Contributions in Tissue Heat Transfer
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Chen, M. M., and Holmes, K. R., “Microvascular Contributions in Tissue Heat Transfer,” Ann. N. Y. Acad. Sci., Vol. 335, 1980, pp. 137-150.
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(1980)
Ann. N. Y. Acad. Sci.
, vol.335
, pp. 137-150
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Chen, M.M.1
Holmes, K.R.2
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6
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0016026342
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A Shape Factor Scheme for Point Source Configurations
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Hahnc, E., and Grigull, U., “A Shape Factor Scheme for Point Source Configurations,” Int. J. Heat Mass Transfer, Vol. 17, 1974, pp. 267-273.
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(1974)
Int. J. Heat Mass Transfer
, vol.17
, pp. 267-273
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Hahnc, E.1
Grigull, U.2
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7
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0016057345
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Thermal Resistance of a Buried Cylinder with Constant Flux Boundary Condition, ASME
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Thiyagarajan, R., and Yovanovich, M. M., “Thermal Resistance of a Buried Cylinder with Constant Flux Boundary Condition,” ASME Journal of Heat Transfer, Vol. 96, 1974, pp. 249-250.
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(1974)
Journal of Heat Transfer
, vol.96
, pp. 249-250
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Thiyagarajan, R.1
Yovanovich, M.M.2
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8
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0020203895
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Heat Losses from a Fluid Flowing in a Buried Pipe
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Bau, H. H., and Sadhal, S. S., “Heat Losses from a Fluid Flowing in a Buried Pipe,” Int. J. Heat Mass Transfer, Vol. 25, 1982, pp. 1621-1629.
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(1982)
Int. J. Heat Mass Transfer
, vol.25
, pp. 1621-1629
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Bau, H.H.1
Sadhal, S.S.2
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9
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0020806180
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Conductive Heat Transfer Between Eccentric Cylinders with Boundary Conditions of the Third Kind
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DiFclice, R. F., Jr., and Bau, H. H., “Conductive Heat Transfer Between Eccentric Cylinders with Boundary Conditions of the Third Kind,” ASME Journal of Heat Transfer, Vol. 105, 1983, pp. 678-680.
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(1983)
ASME Journal of Heat Transfer
, vol.105
, pp. 678-680
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Difclice, R.F.1
Bau, H.H.2
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10
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0022761269
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Small-scale Temperature Fluctuations in Perfused Tissue During Local Hyperthermia
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Baish, J. W., Ayyaswamy, P. S., and Foster, K. R., “Small-scale Temperature Fluctuations in Perfused Tissue During Local Hyperthermia,” ASME Journal of Biomechanical Engineering, Vol. 108, 1986, pp. 246-250.
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(1986)
ASME Journal of Biomechanical Engineering
, vol.108
, pp. 246-250
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Baish, J.W.1
Ayyaswamy, P.S.2
Foster, K.R.3
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11
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0023963903
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On the Generalization of the Weinbaum-Jiji Bioheat Equation to Microvessels of Unequal Size: The Relation Between the Near Field and Local Average Tissue Temperatures
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Zhu, M., Weinbaum, S., Jiji, L. M., and Lemons, D. E., “On the Generalization of the Weinbaum-Jiji Bioheat Equation to Microvessels of Unequal Size: the Relation Between the Near Field and Local Average Tissue Temperatures,” ASME Journal of Biomechanical Engineering, Vol. 110, 1988, pp. 74-81.
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(1988)
ASME Journal of Biomechanical Engineering
, vol.110
, pp. 74-81
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Zhu, M.1
Weinbaum, S.2
Jiji, L.M.3
Lemons, D.E.4
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12
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0025505622
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Heat Exchange Between Unequal Countercurrent Vessels Asymmetrically Embedded in a Cylinder with Surface Convection
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Zhu, M., Weinbaum, S., and Jiji, L. M., “Heat Exchange Between Unequal Countercurrent Vessels Asymmetrically Embedded in a Cylinder with Surface Convection,” Int. J. Heat Mass Transfer, Vol. 33, 1990, pp. 2275-2284.
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(1990)
Int. J. Heat Mass Transfer
, vol.33
, pp. 2275-2284
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Zhu, M.1
Weinbaum, S.2
Jiji, L.M.3
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13
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0024058969
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An Analytical Solution Countercurrent Heat Transfer Between Parallel Vessels with a Linear Axial Temperature Gradient
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Wissler, E. H., “An Analytical Solution Countercurrent Heat Transfer Between Parallel Vessels with a Linear Axial Temperature Gradient,” ASME Journal of Biomechanical Engineering, Vol. 110, 1988, pp. 254-256.
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(1988)
ASME Journal of Biomechanical Engineering
, vol.110
, pp. 254-256
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Wissler, E.H.1
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14
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0027560579
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A New Analytic Technique for 3-D Heat Transfer from a Cylinder with Two or More Axially Interacting Eccentrically Embedded Vessels with Application to Countercurrent Blood Flow
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Wu, Y. L., Weinbaum, S., and Jiji, L. M., “A New Analytic Technique for 3-D Heat Transfer from a Cylinder with Two or More Axially Interacting Eccentrically Embedded Vessels with Application to Countercurrent Blood Flow,” Int. J. Heat Mass Transfer, Vol. 36, 1993, pp. 1073-1083.
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(1993)
Int. J. Heat Mass Transfer
, vol.36
, pp. 1073-1083
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Wu, Y.L.1
Weinbaum, S.2
Jiji, L.M.3
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15
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85024612900
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Microvascular Thermal Equilibration in Rat Crcmaster Muscle, submitted to
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Zhu, L., Lemons, D. E., and Weinbaum, S., “Microvascular Thermal Equilibration in Rat Crcmaster Muscle,” submitted to Phys. Med. Biol. (1995).
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(1995)
Phys. Med. Biol
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Zhu, L.1
Lemons, D.E.2
Weinbaum, S.3
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16
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0028926631
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A New Approach for Predicting the Enhancement in the Effective Conductivity of Perfused Muscle Tissue Due to Hyperthermia
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press
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Zhu, L., Lemons, D. E., and Weinbaum, S., “A New Approach for Predicting the Enhancement in the Effective Conductivity of Perfused Muscle Tissue Due to Hyperthermia,” Annals of Biomedical Engineering, in press (1995).
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(1995)
Annals of Biomedical Engineering
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Zhu, L.1
Lemons, D.E.2
Weinbaum, S.3
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