The Development of Supporting Device for Direct Moxibustion

Article information

J Korean Med. 2017;38(1):1-7
Publication date (electronic) : 2017 March 31
doi : https://doi.org/10.13048/jkm.17001
1Dept. of Electrical Engineering, Pukyoung National Univ.
2Dept. of Sasang Constitutional Medicine, College of Korean Medicine, Dong-eui Univ.
Correspondence to:김종원(Jong Won Kim) 울산광역시 남구 중앙로 282 동의대 울산한방병원 사상체질과 Tel:+82-52-226-8102, Fax:+82-52-226-0664, E-mail: jwonkim@deu.ac.kr
Received 2016 September 22; Revised 2016 December 1; Accepted 2016 December 18.

Abstract

Objectives

This paper is focused on the development of supporting device for the direct moxibustion. This device makes one help to do moxibustion on one’s head and back for oneself. Without this device, one can’t avoid the other’s help to do moxibustion on one’s head and back.

Methods

The design protocols of the supporting device for the direct moxibustion are determined. And 3 dimensional simulation using Ultimaker’s 3D printer was carried out. The parts of the supporting device for direct moxibustion are followings: 1. preparing of the main parts which are divided into an acupuncture touching sting and moxa holder. 2. preparing a grip part.

Results

3 different lengths of the acupuncture touching sting such as 3mm, 4mm, and 5mm were experimented for the perfect burning of moxa. Among them, the acupuncture touching sting with 4mm length was best for the perfect burning and for the organic functional tests.

Conclusion

The supporting device for direct moxibustion will be helpful to minimize of the burning of skin, the pain, and the smoke.

Fig. 1

3D drawing for moxibustion supporting device

Fig. 2

3D drawing for main part(11)

*11-1: acupuncture-touching sting

†11-2: moxa-holder

Fig. 3

Experimental materials(down view)

Fig. 4

Perfect burning test(up and side view)

Fig. 5

Direct moxibustion using the supporting tool at Baihui (GV20)

Fig. 6

Direct moxibustion using the supporting tool

Fig. 7

Thermograph of the direct moxibustion using the supporting tool

Fig. 8

Comparison of the moxa sizes between a direct and an indirect moxibustion method

Organic Functional Test (N=2)

References

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6. Abo D. All Branches of Knowledge for 100 Age Health Seoul: JoongAngSaengHwal press; 2009. p. 173–4.
7. Industry-Academic Cooperation Foundation of Pukyong National University. Supporting Device for Direct Moxibustion. Korea Patent Pending 20-2016-0001547[Internet] Busan: Korea Intellectual Property Rights Information Service; 2016. Available at: URL: http://kpat.kipris.or.kr/kpat/searchLogina.do?next=MainSearch. Accessed September 1, 2016.
8. Choi YH, Yoon Ij. A Clinical Case Study on Intersection Syndrome with Direct Moxibustion. J Oriental Rehab Med 2011;21(1):149–153.
9. Kobayashi K. Induction of heat shock protein by moxibustion. The American journal of Chinese medicine 1995;23:327–30.
10. Fukuda F, Shinbra H, Yoshimoto K, Yano T, Kuriyama K. Effect of moxibustion on Dopaminergic and Seronergic System of Nucleus Accumbens. Neurochemical research 2005;30:1607–13.

Article information Continued

Fig. 1

3D drawing for moxibustion supporting device

Fig. 2

3D drawing for main part(11)

*11-1: acupuncture-touching sting

†11-2: moxa-holder

Fig. 3

Experimental materials(down view)

Fig. 4

Perfect burning test(up and side view)

Fig. 5

Direct moxibustion using the supporting tool at Baihui (GV20)

Fig. 6

Direct moxibustion using the supporting tool

Fig. 7

Thermograph of the direct moxibustion using the supporting tool

Fig. 8

Comparison of the moxa sizes between a direct and an indirect moxibustion method

Table 1

Organic Functional Test (N=2)

Height Fixation power Burning power Amount of moxibustion
3mm fair fair Good
4mm good good Good
5mm good good Fair