1.
Diller, K. R., and Klutke, G. A., 1993, β€œAccuracy Analysis of the Henriques Model for Predicting Thermal Burn Injury,” Advances in Bio Heat and Mass Transfer, ASME HTD 268, pp. 117–123.
2.
Rastegar, S., Chard, A. M., and Azeemi, A., 1993, β€œAn Analysis of the Kinetics of Single-Rate and Multi-Rate Thermal Damage in Laser Irradiation of Biological Tissue,” Advances in Bio Heat and Mass Transfer, ASME HTD 268, pp. 137–140.
3.
Pearce, J., and Thomsen, S., 1995, β€œRate Process Analysis of Thermal Damage,” in: Optical-Thermal Response of Laser-Irradiated Tissue, A. J. Welch and M. J. C. van Gemert, eds., Plenum Press, New York.
4.
Wright
,
Neil T.
,
Chen
,
S.
, and
Humphrey
,
J. D.
,
1998
, β€œ
Time-Temperature Equivalence Applied to Heat-Induced Changes of Cells and Proteins
,”
ASME J. Biomech. Eng.
,
120
, pp.
22
–
26
.
5.
Weir
,
C. E.
,
1949
, β€œ
Rate of Shrinkage of Tendon Collagenβ€”Heat, Entropy, and Free Energy of Activation of the Shrinkage of Untreated Tendon. Effect of Acid, Salt, Pickle, and Tannage on the Activation of Tendon Collagen
,”
Journal of the American Leather Chemists Association
,
44
, pp.
108
–
140
.
6.
Boedtker
,
H.
, and
Doty
,
P.
,
1956
, β€œ
The Native and Denatured State of Soluble Collagen
,”
J. Am. Chem. Soc.
,
78
, pp.
4267
–
4280
.
7.
Mixter, G., Jr., DeLhery, G. P., Derksen, W. L., and Monahan, T. I., 1963, β€œThe Influence of Time on the Death of HeLa Cells at Elevated Temperature,” Temperature: Its Measurement and Control in Science and Industry, 3, C. M. Herzfeld, ed., Reinhold Publishing, pp. 177–182.
8.
Moussa
,
N. A.
,
McGrath
,
J. J.
,
Cravalho
,
E. G.
, and
Asimacopoulos
,
P. J.
,
1977
, β€œ
Kinetics of Thermal injury in cells
,”
ASME J. Biomech. Eng.
,
99
, pp.
155
–
159
.
9.
Roti Roti
,
J. L.
,
Henle
,
K. J.
, and
Winward
,
R. T.
,
1979
, β€œ
The Kinetics of Increase in Chromatin Protein Content in Heated Cells: A Possible Role in Cell Killing
,”
Radiat. Res.
,
78
, pp.
522
–
531
.
10.
Henriques
,
F. C.
, Jr.
,
1947
, β€œ
Studies of Thermal Injury V.: The Predictability and the Significance of Thermally Induced Rate Processes Leading to Irreversible Epidermal Injury
,”
Arch. Pathol.
,
43
, pp.
489
–
502
.
11.
Takata
,
A.
,
1974
, β€œ
Development of Criterion for Skin Burns
,”
Aerosp. Med.
,
45
, pp.
634
–
637
.
12.
Dewey
,
W. C.
,
1989
, β€œ
The Search for Critical Cellular Targets Damaged by Heat
,”
Radiat. Res.
,
120
, pp.
191
–
204
.
13.
Lepock
,
J. R.
,
Frey
,
H. E.
, and
Ritchie
,
K. P.
,
1993
, β€œ
Protein Denaturation in Intact Hepatocytes and Isolated Cellular Organelles During Heat Shock
,”
J. Cell Biol.
,
166
(
6
), pp.
1267
–
1276
.
14.
Konings
,
A. W. T.
,
1988
, β€œ
Membranes as Targets for Hyperthermic Cell Killing
,”
Recent Results Cancer Res.
,
109
, pp.
9
–
21
.
15.
Kampinga
,
H. H.
,
1993
, β€œ
Thermotolerance in Mammalian Cells: Protein Denaturation and Aggregation, and Stress Proteins
,”
J. Cell. Sci.
,
104
, pp.
11
–
17
.
16.
Burge
,
R. E.
, and
Hynes
,
R. D.
,
1959
, β€œ
The Thermal Denaturation of Collagen in Solution and its Structural Implications
,”
J. Mol. Biol.
,
1
,
155
–
164
.
17.
Thomsen
,
S.
,
Pearce
,
J. A.
, and
Cheong
,
W-F.
,
1989
, β€œ
Changes in Birefringence as Markers of Thermal Damage in Tissues
,”
IEEE Trans. Biomed. Eng.
,
36
, pp.
1174
–
1179
.
18.
Pearce
,
J.
,
Cheong
,
W. F.
,
Pandit
,
K.
,
McMurray
,
T.
, and
Thomsen
,
S.
,
1991
, β€œ
Kinetic Models of Coagulation Processes
,”
Proc. SPIE
,
1422
, pp.
27
–
31
.
19.
Maitland
,
D. J.
, and
Walsh
,
J. T.
,
1997
, β€œ
Quantitative Measurements of Linear Birefringence During Heating of Native Collagen
,”
Lasers Surg. Med.
,
20
, pp.
310
–
318
.
20.
Chen
,
S. S.
,
Wright
,
N. T.
, and
Humphrey
,
J. D.
,
1998
, β€œ
Heat-induced Changes in the Mechanics of a Collagenous Tissue: Isothermal Isotonic Shrinkage
,”
ASME J. Biomech. Eng.
,
120
, pp.
382
–
388
.
21.
Moran
,
K.
,
Anderson
,
P.
,
Hutcheson
,
J.
, and
Flock
,
S.
,
2000
, β€œ
Thermally Induced Shrinkage of Joint Capsule
,”
Clin. Orthop. Relat. Res.
,
381
, pp.
248
–
255
.
22.
Miles
,
C. A.
,
1993
, β€œ
Kinetics of Collagen Denaturation in Mammalian Lens Capsules Studied by Differential Scanning Calorimetry
,”
Int. J. Biol. Macromol.
,
15
, pp.
265
–
271
.
23.
Miles
,
C. A.
,
Burjanadze
,
T. V.
, and
Bailey
,
A. J.
,
1995
, β€œ
The Kinetics of the Thermal Denaturation of Collagen in Unrestrained Rat Tail Tendon Determined by Differential Scanning Calorimetry
,”
J. Mol. Biol.
,
245
, pp.
437
–
446
.
24.
Hormann
,
H.
, and
Schlebusch
,
H.
,
1971
, β€œ
Reversible and Irreversible Denaturation of Collagen Fibers
,”
Biochemistry
,
10
, pp.
932
–
937
.
25.
Borrelli
,
M. J.
,
Thompson
,
L. L.
,
Cain
,
C. A.
, and
Dewey
,
W. C.
,
1990
, β€œ
Time-Temperature Analysis of Cell Killing of BHK Cells Heated at Temperatures in the Ranges of 43.5Β°C to 57Β°C
,”
Int. J. Radiat. Oncol., Biol., Phys.
,
19
, pp.
389
–
399
.
26.
Bhowmick
,
S
,
Swanlund
,
D. J.
, and
Bischof
,
J. C.
,
2000
, β€œ
Supraphysiological Thermal Injury in Dunning AT-1 Prostate Tumor Cells
,”
ASME J. Biomech. Eng.
,
122
, pp.
51
–
59
.
27.
Lumry
,
R.
, and
Eyring
,
H.
,
1954
, β€œ
Conformation Changes of Proteins
,”
J. Phys. Chem.
,
58
, pp.
110
–
120
.
28.
Lepock
,
J. R.
,
Ritchie
,
K. P.
,
Kolios
,
M. C.
,
Rodahl
,
A. M.
,
Heinz
,
K. A.
, and
Kruuv
,
J.
,
1992
, β€œ
Influence of Transition Rates and Scan Rate on Kinetic Simulations of Differential Scanning Calorimetry Profiles of Reversible and Irreversible Protein Denaturation
,”
Biochemistry
,
31
, pp.
12706
–
12712
.
29.
Sanchez-Ruiz
,
J. M.
,
1992
, β€œ
Theoretical Analysis of Lumry-Eyring Models in Differential Scanning Calorimetry
,”
Biophys. J.
,
61
, pp.
921
–
935
.
30.
Plaza del Pino
,
I. M.
,
Ibarra-Molero
,
B.
, and
Sanchez-Ruiz
,
J. M.
,
2000
, β€œ
Lower Kinetic Limit to Protein Thermal Stability: A Proposal Regarding Protein Stability In Vivo and Its Relation with Misfolding Diseases
,”
Proteins: Struct., Funct., Genet.
,
40
, pp.
58
–
70
.
31.
Glasstone, S., Laidler, K. J., and Eyring, H., 1941, The Theory of Rate Processes, McGraw-Hill, New York.
32.
Atkins, P. W., 1998, Physical Chemistry, Freeman, New York, pp. 776–777.
33.
Laidler, K. J., 1987, Chemical Kinetics, 3rd, Harper Collins, New York.
34.
Chen
,
B. L.
,
Baase
,
W. A.
, and
Schellman
,
J. A.
,
1989
, β€œ
Low-Temperature Unfolding of a Mutant of Phage T4 Lysozyme. 2. Kinetic Investigations
,”
Biochemistry
,
28
, pp.
691
–
699
.
35.
Hammes, G. C., 2000, Thermodynamics and Kinetics for the Biological Sciences, John Wiley & Sons, New York.
36.
Miles
,
C. A.
, and
Ghelashvili
,
M.
,
1999
, β€œ
Polymer-in-a-Box Mechanism for the Thermal Stabilization of Collagen Molecules in Fibers
,”
Biophys. J.
,
76
, pp.
3243
–
3252
.
37.
Doi, M., and Edwards, S. F., 1986, The Theory of Polymer Dynamics, pp. 205–216, Oxford University Press, Oxford.
38.
Pearce
,
J.
,
Thomsen
,
S.
,
Vijverberg
,
H.
, and
McMurray
,
T.
,
1993
, β€œ
Kinetics of Birefringence Changes in Thermally Coagulated Rat Skin Collagen
,”
Proc. SPIE
,
1876
, pp.
180
–
186
.
39.
Pearce, J., Liao, and W. H., and Thomsen, S., 1998, β€œThe Kinetics of Thermal Damage: Estimation and Evaluation of Model Coefficients,” Advances in Heat and Mass Transfer in Biotechnology, ASME, HTD-362/BED-40, pp. 71–75.
40.
Kampmeier
,
J.
,
Radt
,
B.
,
Birngruber
,
R.
, and
Brinkmann
,
R.
,
2000
, β€œ
Thermal and Biomechanical Parameters of Porcine Cornea
,”
Cornea
,
19
, pp.
355
–
363
.
41.
Gustavison, K. H., 1956, The Chemistry and Reactivity of Collagen, Academic Press, New York.
42.
Moussa
,
N. A.
,
Tell
,
E. N.
, and
Cravalho
,
E. G.
,
1979
, β€œ
Time Progression of Hemolysis of erythrocyte populations exposed to Supraphysiological Temperature
,”
ASME J. Biomech. Eng.
,
101
, pp.
213
–
217
43.
Padanilam, J. T., Bischof, J. C., Lee, R. C., Cravalho, E. G., Tompkins, R. G., Yarmush, M. L., and Toner, M., 1993, β€œEffects of Supraphysiological Temperatures on the Plasma Membrane of Isolated Skeletal Muscle Cells,” Advances in Bioheat and Mass Transfer: Microscale Analysis of Thermal Injury Processes, Instrumentation, Modeling, and Clinical Applications, ASME HTD 268, pp. 69–72.
44.
Pearce, J., and Thomsen, S., 1992, β€œKinetic Models of Tissue Fusion Processes,” Proceedings of Laser Surgery: Advanced Characterization, Therapeutics, and Systems III, SPIE 1643, pp. 251–260.
45.
Chen
,
S. S.
,
Wright
,
N. T.
, and
Humphrey
,
J. D.
,
1997
, β€œ
Heat-induced Changes in the Mechanics of a Collagenous Tissue: Free Shrinkage
,”
ASME J. Biomech. Eng.
,
119
, pp.
372
–
378
.
46.
Laidler, K. J., and Bunting P. S., 1973, The Chemical Kinetics of Enzyme Action, Clarendon Press, Oxford.
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