Bibliography

125

separately, as the human body does as well. No material has so far been reported with

the same functionality as skin.

Bibliography

[1]

Sharma A. Medical Biochemistry: Molecules to Disease. iBooks, https://itunes.apple.com/us/book/

medical-biochemistry-molecules/id1119168051?mt=11. 2016.

[2]

Dhaka A, Viswanath V, Patapoutian A. Annual Review of Neuroscience. 2006;29:136–161.

[3]

Nagy I, Santha P, Jancso G, Urban L. European Journal of Pharmacology. 2004;500:351–369.

[4]

Frey NV, Gavrin JR. Thomas Hematopoietoc Cell Transplantation. 2009;1570–1588.

[5]

Nakamura K, Morrison SF. Nature Neuroscience. 2008;11:62–71.

[6]

Cannon B, Nedergaard J. Physiological Reviews. 2004;84.

[7]

Schmidt R, Schmelz M, Torebjork HE, Handwerker HO. Neuroscience. 2009;98:793–800.

[8]

Marshall KL, Lumpkin EA. In: López-Larrea C, editor. Sensing in Nature. Landes Bioscience and

Springer Science+Business Media; 2012.

[9]

Cobo R, García-Piqueras J, García-Mesa Y, Feito J, García-Suárez O, Vega JA. International Journal of

Molecular Sciences. 2020;21:6221. https://doi.org/10.3390/ijms21176221.

[10] Reinisch CM, Tschachler E. Annals of Neurology. 2005;58:88–95.

[11]

Khodorova A, Montmayeur JP, Strichartz G. The Journal of Pain. 2009;10:4–28.

[12] Suzuki M. In: Mechanically gated channels and their regulation. 6 2012;103–157.

[13] Katta S, Krieg M, Goodman MB. Annual Review of Cell and Developmental Biology. 2015;31:347–371.

[14] Halata Z, Grim M, Baumann KI. Expert Review of Dermatology. 2010;5:109–116.

[15] Ratner BD. Biomaterials Science: An Introduction to Materials in Medicine. San Diego: Academic

Press; 1996.

[16] Garg HG, Longaker MT. Scarless Wound Healing. New York, NY: Marcel Dekker, Inc.; 2000.

[17]

Clark RAF. The Molecular and Cellular Biology of Wound Repair. 2nd ed. New York, NY: Kluwer

Academic Publishers; 1996.

[18] Ramsden E. Sensor Magazine, 2000. http://www.sensorsmag.com/components/temperature-

measurement.

[19] Lee HS, Chung J, Hwang GT, Jeong CK, Jung Y, Kwak JH, Kang H, Byun M, Kim WD, Hur S, Oh SH, Lee KJ.

Advanced Functional Materials. 2014;24:6914–6921.

[20] Hwang GT, Byun M, Jeong CK, Lee KJ. Advanced Healthcare Materials. 2015;4:646–658.

[21] Lee WS, Lee SS. Sensors and Actuators A. 2008;144:367–373.

[22] Uchino K. Science and Technology of Advanced Materials. 2015;16:046001-046001–046001-046016.

[23] Eklund P, Kerdsongpanya S, Alling B. Journal of Materials Chemistry C: Materials for Optical and

Electronic Devices. 2016;4:3905–3914.

[24] Stevenson T, Martin DG, Cowin PI, Blumfield A, Bell AJ, Comyn TP, Weaver PM. Journal of Materials

Science: Materials in Electronics. 2015;26:9256–9267.

[25] Rajabi AH, Jaffe M, Arinzeh TL. Acta Biomaterialia. 2015;24:12–23.

[26] Batth A, Mueller A, Rakesh L, Mellinger A. In: Proceedings, Conference on Electrical Insulation and

Dielectric Phenomena (CEIDP). 2012.

[27] Zhang Y, Miki N. Journal of Micromechanics and Microengineering.

2010;20:085012-085011–085012-085017.

[28] Kim D, Lee DK, Yoon J, Hahm D, Lee B, Oh E, Kim G, Seo J, Kim H, Hong Y. ACS Applied Materials

Interfaces. 2021;13:53111–53119.

[29] Hu Y, Qi K, Chang L, Liu J, Yang L, Huang M, Wu G, Lu P, Chen W, Wu Y. Journal of Materials Chemistry

C. 2019;7:6879.