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Exploration of New Electroacupuncture Needle Material
by
Cho, Seong-Jin
, Choi, Kwang-Ho
, Choi, Sun-Mi
, Ryu, Yeon Hee
, Kim, Yu Kyoung
, Lee, Chang Hoon
, Lee, Sanghun
, Yeon, Sun Hee
, Lee, Sae-Bhom
in
Acupuncture
/ Biocompatibility
/ Corrosion
/ Cytotoxicity
/ Cytotoxicity testing
/ Electroacupuncture
/ Electrodes
/ Medical research
/ Medicine
/ Research methodology
/ Scanning electron microscopy
/ Stainless steel
/ Titanium alloys
/ Wire
2012
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Exploration of New Electroacupuncture Needle Material
by
Cho, Seong-Jin
, Choi, Kwang-Ho
, Choi, Sun-Mi
, Ryu, Yeon Hee
, Kim, Yu Kyoung
, Lee, Chang Hoon
, Lee, Sanghun
, Yeon, Sun Hee
, Lee, Sae-Bhom
in
Acupuncture
/ Biocompatibility
/ Corrosion
/ Cytotoxicity
/ Cytotoxicity testing
/ Electroacupuncture
/ Electrodes
/ Medical research
/ Medicine
/ Research methodology
/ Scanning electron microscopy
/ Stainless steel
/ Titanium alloys
/ Wire
2012
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Do you wish to request the book?
Exploration of New Electroacupuncture Needle Material
by
Cho, Seong-Jin
, Choi, Kwang-Ho
, Choi, Sun-Mi
, Ryu, Yeon Hee
, Kim, Yu Kyoung
, Lee, Chang Hoon
, Lee, Sanghun
, Yeon, Sun Hee
, Lee, Sae-Bhom
in
Acupuncture
/ Biocompatibility
/ Corrosion
/ Cytotoxicity
/ Cytotoxicity testing
/ Electroacupuncture
/ Electrodes
/ Medical research
/ Medicine
/ Research methodology
/ Scanning electron microscopy
/ Stainless steel
/ Titanium alloys
/ Wire
2012
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Journal Article
Exploration of New Electroacupuncture Needle Material
2012
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Overview
Background. Electro Acupuncture (EA) uses the acupuncture needle as an electrode to apply low-frequency stimulation. For its safe operation, it is essential to prevent any corrosion of the acupuncture needle. Objective. The aim of this study is to find an available material and determine the possibility of producing a standard EA needle that is biocompatible. Methods. Biocompatibility was tested by an MTT assay and cytotoxicity testing. Corrosion was observed with a scanning electron microscope (SEM) after 0.5 mA, 60 min stimulation. The straightness was measured using a gap length of 100 mm, and tensile testing was performed by imposing a maximum tensile load. Results. Phosphor bronze, Ni coated SS304, were deemed inappropriate materials because of mild-to-moderate cytotoxicity and corrosion. Ti-6Al-4V and SS316 showed no cytotoxicity or corrosion. Ti-6Al-4V has a 70 times higher cost and 2.5 times lower conductivity than SS316. The results of both straightness and tensile testing confirmed that SS316 can be manufactured as a standard product. Conclusion. As a result, we confirmed that SS316 can be used a new EA electrode material. We hope that a further study of the maximum capacity of low-frequency stimulation using an SS316 for safe operation.
Publisher
Hindawi Publishing Corporation,John Wiley & Sons, Inc
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