[1] Jin ZM, Yan YX, Luo XJ, Tao JW. A study on the Dynamic Pressure Comfort of Tight Seamless
Sportswear. J. Fiber Bioengineering Informatics, 2008, 1(3): 217-224.
[2] Lin, YL, et al. An optimized design of compression sportswear fabric using numerical simulation
and the response surface method. Tex Res J. 2012, 82(2): 108-116.
[3] Zhang YP, Long HR. The Biaxial Tensile Elastic Properties of Plain Knitted Fabrics. J. Fiber
Bioengineering Informatics. 2010, 3(1): 27-31.
[4] Haruko M, Hiroko M, Kazuo U. A study of clothing pressure developed by the girdle. Journal of
Japan Research Association for Textile End-Uses, 1991, 32(9): 424-438.
[5] Haruko M, Hiroko M, Kazuo U. A study of clothing pressure developed by the brassiere. Journal
of Japan Research Association for Textile End-Uses, 1991, 32(9): 416-423.
[6] Deepti Gupta. Functional clothing-difinition and classification. Indian J Fabre Text Res, 2011, 36:
321-326.
[7] Elder HM, Fisher S, Hutchison G, Beattie S. A psychological scale for fabric stiffness. The Journal
of Textile Institute, 1985, 76(6): 442-449.
[8] Sasaki K, Miyashita K, Edamura M, et al. Evaluation of foundation comfort based on the sensory
evaluation and dynamic clothing pressure measurement. Journal of the Japan Research Association
for Textile End-Uses, 1997, 38(2): 109-114.
[9] Chan, AP, Fan, JT. Effect of clothing pressure on the tightness sensation of girdles. International
Journal of Clothing Science and Technology, 2002, 14(2): 100-110.
[10] Yoshio S, Kazuya S, Keiichi W. Dynamic measurement of clothing pressure on the body in a
brassiere. Sen-I Gakkaishi, 1993, 49(1): 57-62.
[11] Wang Q, Chen DS, Wei Q. Situation and prospects of the researches on clothing pressure effects
on body. Journal of Textile Research, 2009, 30(4): 139-144.
[12] Lu YH, Dai XQ. Effect of External Pressure on skin blood flow at lower limb in different postures.
J. Fiber Bioengineering Informatics, 2010, 3(1): 22-26.
[13] D Gupta, R Chattopadhyay, M Bera. Comfort properties of pressure garment in extended state.
Indian J Fabre Text Res, 2011, 36: 415-421.
[14] Hui CL, Ng SF. Model to predict interfacial pressures in multilayer elastic fabric tubes. Text Res
J, 2001, 71(8): 683-687.
[15] Toyonori N, et al. Comfort pressure evaluation of men's socks using an elastic optical fiber.Text
Res J, 1998, 68(6): 435-440.
[16] Hui CL, Ng SF. Theoretical analysis of tension and pressure decay of a tubular elastic fabric. Text
Res J. 2003, 73(3): 268-272.
[17] Dan R, Fan XR, Chen DS, Wang Q. Numerical Simulation of the Relationship between Pressure
and Displacement for the Top Part of Men's Socks. Text Res J, 2011, 81(2): 128-136.
[18] Dan R, Fan XR, Chen DS, Wang Q. Study on pressure at top part of man's socks using finite
element method. Journal of Textile Research, 2011, 32(1): 105-110.
[19] Dan R, Fan XR, Chen DS, Wang Q. Study on dynamic pressure and displacement at top part of
men's socks using FEM. Journal of Textile Research, 2011, 32(11): 106-112.
[20] Wang Q, Chen DS, Dan R, Wei QF. A study on mathematic model to describe the distribution of
curvature radius on lower leg cross-section at top part of men's socks. Paper presented at the Textile
Bioengineering and Informatics Symposium Proceedings. Shanghai, China, 2010: 1492-1496.
[21] Nakamura N, Morooka H, Morooka H. Influence of pressure intensity and width of belt on com-
pressive feeling and sensitivity of abdomen. Sen'i Gakkaishi, 2004, 60(12): 386-391.
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