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2014 | OriginalPaper | Buchkapitel

30. Medical Applications

verfasst von : Tadashi Ihara

Erschienen in: Soft Actuators

Verlag: Springer Japan

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Abstract

Current applications of soft actuators in medical fields are discussed. Included here are polymer, elastomer, and gel actuators along with biocompatibility issues. The applications expands to a wide range of medical devices: artificial muscles, muscle alternatives, prosthetic devices, catheters, stents and surgical instruments. With the nature of medical applications, shown here are not only from articles but from many patent documents.

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Literatur
1.
Zurück zum Zitat Carpi F, Smela E (2009) Biomedical applications of electroactive polymer actuators. Wiley, ChichesterCrossRef Carpi F, Smela E (2009) Biomedical applications of electroactive polymer actuators. Wiley, ChichesterCrossRef
2.
Zurück zum Zitat Kim KJ, Tadokoro S (2007) Electroactive polymers for robotics applications: artificial muscles and sensors. Springer, LondonCrossRef Kim KJ, Tadokoro S (2007) Electroactive polymers for robotics applications: artificial muscles and sensors. Springer, LondonCrossRef
3.
Zurück zum Zitat Shahinpoor M, Kim KJ (2007) Artificial muscles: applications of advanced polymeric nanocomposites. CRC, Boca Raton Shahinpoor M, Kim KJ (2007) Artificial muscles: applications of advanced polymeric nanocomposites. CRC, Boca Raton
4.
Zurück zum Zitat Higuchi T, Suzumori K, Tadokoro S (2010) Next-generation actuators leading breakthroughs. Springer, LondonCrossRef Higuchi T, Suzumori K, Tadokoro S (2010) Next-generation actuators leading breakthroughs. Springer, LondonCrossRef
5.
Zurück zum Zitat Agency of Industrial Science and Technology, Ministry Of International Trade and Industry (1999) Polymeric actuators and process for producing the same. EP 0943402 A2, 1999 Agency of Industrial Science and Technology, Ministry Of International Trade and Industry (1999) Polymeric actuators and process for producing the same. EP 0943402 A2, 1999
6.
Zurück zum Zitat Boston Scientific Limited (2013) Localized drug delivery using drug-loaded nanocapsules and implantable device coated with the same. EP20040706932, 2013 Boston Scientific Limited (2013) Localized drug delivery using drug-loaded nanocapsules and implantable device coated with the same. EP20040706932, 2013
7.
Zurück zum Zitat Eidenschink T, Wise D, Sutermeister D, Prairie E, Alkhatib Y, Gregorich D, Jennings A, Heidner M, Godin D, Gunderson RC, Blix J, Jagger KA, Volk AK (2008) Medical balloon incorporating electroactive polymer and methods of making and using the same. US Patent Application 20080086081A1, Apr 10, 2008 Eidenschink T, Wise D, Sutermeister D, Prairie E, Alkhatib Y, Gregorich D, Jennings A, Heidner M, Godin D, Gunderson RC, Blix J, Jagger KA, Volk AK (2008) Medical balloon incorporating electroactive polymer and methods of making and using the same. US Patent Application 20080086081A1, Apr 10, 2008
8.
Zurück zum Zitat Weber J, Eidenschink T, Elizondo D, Simer L (2005) Electrically actuated medical devices. US Patent Application 0165439 Al, Jul 28, 2005 Weber J, Eidenschink T, Elizondo D, Simer L (2005) Electrically actuated medical devices. US Patent Application 0165439 Al, Jul 28, 2005
9.
Zurück zum Zitat Boston Scientific SciMed Inc. (2008) Electroactive polymer actuated medical devices. US Patent 6,969,395 B2. Mar 4, 2008 Boston Scientific SciMed Inc. (2008) Electroactive polymer actuated medical devices. US Patent 6,969,395 B2. Mar 4, 2008
10.
Zurück zum Zitat Boston Scientific SciMed, Inc. (2007) Protection by electroactive polymer sleeve. US Patent Application 0032851 Al, Feb 8, 2007 Boston Scientific SciMed, Inc. (2007) Protection by electroactive polymer sleeve. US Patent Application 0032851 Al, Feb 8, 2007
11.
Zurück zum Zitat Eidenschink T, Jagger KA, Sutermeister D, Volk AK, Wise D, Heidner M, Boston Scientific SciMed, Inc. (2008) Electroactive polymer radiopaque marker. US Patent Application 0021313 A1, Jan 24, 2008 Eidenschink T, Jagger KA, Sutermeister D, Volk AK, Wise D, Heidner M, Boston Scientific SciMed, Inc. (2008) Electroactive polymer radiopaque marker. US Patent Application 0021313 A1, Jan 24, 2008
12.
Zurück zum Zitat Soltanpour D, Shahinpoor M (2003) Implantable micro-pump assembly. US Patent 6,589,198 Bl, Jul 8, 2003 Soltanpour D, Shahinpoor M (2003) Implantable micro-pump assembly. US Patent 6,589,198 Bl, Jul 8, 2003
13.
Zurück zum Zitat Searete LLC (2007) Osmotic pump with remotely controlled osmotic flow rate. US Patent Application 0135797 Al, Jun 14, 2007 Searete LLC (2007) Osmotic pump with remotely controlled osmotic flow rate. US Patent Application 0135797 Al, Jun 14, 2007
14.
Zurück zum Zitat Ihara T, Nakamura T, Horiuchi T, Mukai T, Asaka K (2009) Simulated muscle type actuator using IPMC (2009). In: The 10th SICE system integration division annual conference, Tokyo, Dec. 24, 2009, pp 598–599 Ihara T, Nakamura T, Horiuchi T, Mukai T, Asaka K (2009) Simulated muscle type actuator using IPMC (2009). In: The 10th SICE system integration division annual conference, Tokyo, Dec. 24, 2009, pp 598–599
15.
Zurück zum Zitat Nakamura T, Ihara T, Horiuchi T, Mukai T, Asaka K (2009) Measurement and modeling of electro-chemical properties of ion polymer metal composite by complex impedance analysis. SICE J Contr Meas Syst Integ 2(6):373–378CrossRef Nakamura T, Ihara T, Horiuchi T, Mukai T, Asaka K (2009) Measurement and modeling of electro-chemical properties of ion polymer metal composite by complex impedance analysis. SICE J Contr Meas Syst Integ 2(6):373–378CrossRef
16.
Zurück zum Zitat Ihara T, Nakamura T, Ikada Y, Asaka K, Oguro K, Fujiwara N (2004) Application of a solid polymer electrolyte membrane-gold to an active graft. In: Proceedings of the 2nd international conference on artificial muscle, Ikeda, 2004 Ihara T, Nakamura T, Ikada Y, Asaka K, Oguro K, Fujiwara N (2004) Application of a solid polymer electrolyte membrane-gold to an active graft. In: Proceedings of the 2nd international conference on artificial muscle, Ikeda, 2004
17.
Zurück zum Zitat Shahinpoor M (2005) Bio-potential activation of artificial muscles. US Patent Application 0085925 Al, Apr 21, 2005 Shahinpoor M (2005) Bio-potential activation of artificial muscles. US Patent Application 0085925 Al, Apr 21, 2005
18.
Zurück zum Zitat Scorvo SK (2005) Adjustable orthotic brace. US Patent 6,969,365 B2, Nov 29, 2005 Scorvo SK (2005) Adjustable orthotic brace. US Patent 6,969,365 B2, Nov 29, 2005
19.
Zurück zum Zitat Mower MM, Roberts JL, Light ED (2006) Cardiac contractile augmentation device and method therefor. US Patent Application 0217774 Al, Sept 28, 2006 Mower MM, Roberts JL, Light ED (2006) Cardiac contractile augmentation device and method therefor. US Patent Application 0217774 Al, Sept 28, 2006
20.
Zurück zum Zitat Pavad Medical, Inc. (2007) Tethered airway implants and methods of using the same. US Patent Application 0246052 Al, Oct 25, 2007 Pavad Medical, Inc. (2007) Tethered airway implants and methods of using the same. US Patent Application 0246052 Al, Oct 25, 2007
21.
Zurück zum Zitat Pavad Medical, Inc. (2008) Self charging airway implants and methods of making and using the same. US Patent Application 0046022 Al, Feb 21, 2008 Pavad Medical, Inc. (2008) Self charging airway implants and methods of making and using the same. US Patent Application 0046022 Al, Feb 21, 2008
22.
Zurück zum Zitat Hegde AV, Choi GY, Buch WS (2006) Artificial sphincter. US Patent Application 0047180 Al, Mar 2, 2006 Hegde AV, Choi GY, Buch WS (2006) Artificial sphincter. US Patent Application 0047180 Al, Mar 2, 2006
23.
Zurück zum Zitat Shahinpooor M, Soltanpour D (2009) Surgical correction of ptosis by polymeric artificial muscles. US Patent 7,625,404B2, Dec 1, 2009 Shahinpooor M, Soltanpour D (2009) Surgical correction of ptosis by polymeric artificial muscles. US Patent 7,625,404B2, Dec 1, 2009
24.
Zurück zum Zitat Ethicon Endo-Surgery, Inc. (2006) Surgical instrument having fluid actuated opposing jaws. US Patent Application 0289600 Al, Dec 28, 2006 Ethicon Endo-Surgery, Inc. (2006) Surgical instrument having fluid actuated opposing jaws. US Patent Application 0289600 Al, Dec 28, 2006
25.
Zurück zum Zitat Boston Scientific SciMed, Inc. (2012) Electroactive polymer based artificial sphincters and artificial muscle patches. EP1503703A2, 2012 Boston Scientific SciMed, Inc. (2012) Electroactive polymer based artificial sphincters and artificial muscle patches. EP1503703A2, 2012
26.
Zurück zum Zitat Schena BM (2008) Haptic devices using electroactive polymers. US Patent 7339572 B2, 2008 Schena BM (2008) Haptic devices using electroactive polymers. US Patent 7339572 B2, 2008
27.
Zurück zum Zitat Schena BM, Immersion Corporation (2010) Haptic stylus utilizing an electroactive polymer. US Patent 7,679,611 B2, Mar 16, 2010 Schena BM, Immersion Corporation (2010) Haptic stylus utilizing an electroactive polymer. US Patent 7,679,611 B2, Mar 16, 2010
28.
Zurück zum Zitat Anderson IA, Gisby TA, McKay TG, O’Brien BM, Calius EP (2012) Multi-functional dielectric elastomer artificial muscles for soft and smart machines. J Appl Phys 112:041101CrossRef Anderson IA, Gisby TA, McKay TG, O’Brien BM, Calius EP (2012) Multi-functional dielectric elastomer artificial muscles for soft and smart machines. J Appl Phys 112:041101CrossRef
29.
Zurück zum Zitat Puchhammer G (2009) Hand prosthesis, EP20060828626, 2009 Puchhammer G (2009) Hand prosthesis, EP20060828626, 2009
30.
Zurück zum Zitat Tanaka T, Nishio I, Sun ST, Ueno-Nishio S (1982) Collapse of gels under an electric field. Science 218:467CrossRef Tanaka T, Nishio I, Sun ST, Ueno-Nishio S (1982) Collapse of gels under an electric field. Science 218:467CrossRef
31.
Zurück zum Zitat Ogawa N, Hashimoto M, Takasaki M, Hirai T (2009) Characteristics evaluation of PVC gel actuators. In: IEEE/RSJ international conference on intelligent robots and systems, Oct 2009 Ogawa N, Hashimoto M, Takasaki M, Hirai T (2009) Characteristics evaluation of PVC gel actuators. In: IEEE/RSJ international conference on intelligent robots and systems, Oct 2009
32.
Zurück zum Zitat Lions Eye Inst. Australia Inc. (1998) Ocular Socket Prosthesis. Patent WO1998008549 A1, Mar 5, 1998 Lions Eye Inst. Australia Inc. (1998) Ocular Socket Prosthesis. Patent WO1998008549 A1, Mar 5, 1998
33.
Zurück zum Zitat Chiarelli P, De Rossi D, Umezawa K (1989) Progress in the design of an artificial urethral sphincter. In: Proceedings of the 3rd Vienna international workshop on functional electrostimulation, Vienna, Sept 1989 Chiarelli P, De Rossi D, Umezawa K (1989) Progress in the design of an artificial urethral sphincter. In: Proceedings of the 3rd Vienna international workshop on functional electrostimulation, Vienna, Sept 1989
34.
Zurück zum Zitat Beebe DJ, Moore JS, Bauer JM, Yu Q, Liu RH, Devadoss C, Jo BH (2000) Functional hydrogel structures for autonomous flow control inside microfluidic channels. Nature 404:588–590CrossRef Beebe DJ, Moore JS, Bauer JM, Yu Q, Liu RH, Devadoss C, Jo BH (2000) Functional hydrogel structures for autonomous flow control inside microfluidic channels. Nature 404:588–590CrossRef
35.
Zurück zum Zitat Peppas NA, Bures P, Leobandung W, Ichikawa H (2000) Hydrogels in pharmaceutical formulations. Eur J Pharm Biopharm 50:27–46CrossRef Peppas NA, Bures P, Leobandung W, Ichikawa H (2000) Hydrogels in pharmaceutical formulations. Eur J Pharm Biopharm 50:27–46CrossRef
36.
Zurück zum Zitat Wang X, Gu X, Yuan C, Chen S, Zhang P, Zhang T, Yao J, Chen F, Chen G (2004) Evaluation of biocompatibility of polypyrrole in vitro and in vivo. J Biomed Mater Res A 68:411–422CrossRef Wang X, Gu X, Yuan C, Chen S, Zhang P, Zhang T, Yao J, Chen F, Chen G (2004) Evaluation of biocompatibility of polypyrrole in vitro and in vivo. J Biomed Mater Res A 68:411–422CrossRef
37.
Zurück zum Zitat Miriani RM, Abidian MR, Kipke DR (2008) Cytotoxic analysis of the conducting polymer PEDOT using myocytes. Proc IEEE Eng Med Biol Soc 1841–1844:2008 Miriani RM, Abidian MR, Kipke DR (2008) Cytotoxic analysis of the conducting polymer PEDOT using myocytes. Proc IEEE Eng Med Biol Soc 1841–1844:2008
38.
Zurück zum Zitat Ferraz N, Strømme M, Fellström B, Pradhan S, Nyholm L, Mihranyan A (2012) In vitro and in vivo toxicity of rinsed and aged nanocellulose-polypyrrole composites. J Biomed Mater Res A 100(8):2128–2138CrossRef Ferraz N, Strømme M, Fellström B, Pradhan S, Nyholm L, Mihranyan A (2012) In vitro and in vivo toxicity of rinsed and aged nanocellulose-polypyrrole composites. J Biomed Mater Res A 100(8):2128–2138CrossRef
39.
Zurück zum Zitat Moura RM, de Queiroz AA (2011) Dendronized polyaniline nanotubes for cardiac tissue engineering. Artif Organ 35(5):471–477CrossRef Moura RM, de Queiroz AA (2011) Dendronized polyaniline nanotubes for cardiac tissue engineering. Artif Organ 35(5):471–477CrossRef
Metadaten
Titel
Medical Applications
verfasst von
Tadashi Ihara
Copyright-Jahr
2014
Verlag
Springer Japan
DOI
https://doi.org/10.1007/978-4-431-54767-9_30

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