A Unique Electrical Thermal Stimulation System Comparable to Moxibustion of Subcutaneous Tissue

Moxibustion strengthens immunity and it is an effective treatment modality, but, depending on the material quantity, shape, and composition, the thermal strength and intensity can be difficult to control, which may cause pain or epidermal burns. To overcome these limitations, a heat stimulating syst...

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Main Authors: Hyoun-Seok Myoung, Kyoung-Joung Lee
Format: Article
Language:English
Published: Hindawi Limited 2014-01-01
Series:Evidence-Based Complementary and Alternative Medicine
Online Access:http://dx.doi.org/10.1155/2014/518313
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spelling doaj-ece0a763efc547669f656eba673e1b6c2020-11-24T22:58:01ZengHindawi LimitedEvidence-Based Complementary and Alternative Medicine1741-427X1741-42882014-01-01201410.1155/2014/518313518313A Unique Electrical Thermal Stimulation System Comparable to Moxibustion of Subcutaneous TissueHyoun-Seok Myoung0Kyoung-Joung Lee1Department of Biomedical Engineering, Yonsei University, 234 Maeji, Heungeop, Wonju, Gangwon-do 220-842, Republic of KoreaDepartment of Biomedical Engineering, Yonsei University, 234 Maeji, Heungeop, Wonju, Gangwon-do 220-842, Republic of KoreaMoxibustion strengthens immunity and it is an effective treatment modality, but, depending on the material quantity, shape, and composition, the thermal strength and intensity can be difficult to control, which may cause pain or epidermal burns. To overcome these limitations, a heat stimulating system which is able to control the thermal intensity was developed. The temperature distributions on epidermis, at 5 mm and 10 mm of depth, in rabbit femoral tissue were compared between moxibustion and the electric thermal stimulation system. The stimulation system consists of a high radio frequency dielectric heating equipment (2 MHz frequency, maximum power 200 W), isolation probe, isolation plate, negative pressure generator, and a temperature assessment system. The temperature was modulated by controlling the stimulation pulse duty ratio, repetition number, and output. There were 95% and 91% temperature distribution correlations between moxibustion and the thermal stimulus at 5 mm and 10 mm of depth in tissue, respectively. Moreover, the epidermal temperature in thermal stimulation was lower than that in moxibustion. These results showed that heat loss by the electric thermal stimulation system is less than that by the traditional moxibustion method. Furthermore, the proposed electric thermal stimulation did not cause adverse effects, such as suppuration or blisters, and also provided subcutaneous stimulation comparable to moxibustion.http://dx.doi.org/10.1155/2014/518313
collection DOAJ
language English
format Article
sources DOAJ
author Hyoun-Seok Myoung
Kyoung-Joung Lee
spellingShingle Hyoun-Seok Myoung
Kyoung-Joung Lee
A Unique Electrical Thermal Stimulation System Comparable to Moxibustion of Subcutaneous Tissue
Evidence-Based Complementary and Alternative Medicine
author_facet Hyoun-Seok Myoung
Kyoung-Joung Lee
author_sort Hyoun-Seok Myoung
title A Unique Electrical Thermal Stimulation System Comparable to Moxibustion of Subcutaneous Tissue
title_short A Unique Electrical Thermal Stimulation System Comparable to Moxibustion of Subcutaneous Tissue
title_full A Unique Electrical Thermal Stimulation System Comparable to Moxibustion of Subcutaneous Tissue
title_fullStr A Unique Electrical Thermal Stimulation System Comparable to Moxibustion of Subcutaneous Tissue
title_full_unstemmed A Unique Electrical Thermal Stimulation System Comparable to Moxibustion of Subcutaneous Tissue
title_sort unique electrical thermal stimulation system comparable to moxibustion of subcutaneous tissue
publisher Hindawi Limited
series Evidence-Based Complementary and Alternative Medicine
issn 1741-427X
1741-4288
publishDate 2014-01-01
description Moxibustion strengthens immunity and it is an effective treatment modality, but, depending on the material quantity, shape, and composition, the thermal strength and intensity can be difficult to control, which may cause pain or epidermal burns. To overcome these limitations, a heat stimulating system which is able to control the thermal intensity was developed. The temperature distributions on epidermis, at 5 mm and 10 mm of depth, in rabbit femoral tissue were compared between moxibustion and the electric thermal stimulation system. The stimulation system consists of a high radio frequency dielectric heating equipment (2 MHz frequency, maximum power 200 W), isolation probe, isolation plate, negative pressure generator, and a temperature assessment system. The temperature was modulated by controlling the stimulation pulse duty ratio, repetition number, and output. There were 95% and 91% temperature distribution correlations between moxibustion and the thermal stimulus at 5 mm and 10 mm of depth in tissue, respectively. Moreover, the epidermal temperature in thermal stimulation was lower than that in moxibustion. These results showed that heat loss by the electric thermal stimulation system is less than that by the traditional moxibustion method. Furthermore, the proposed electric thermal stimulation did not cause adverse effects, such as suppuration or blisters, and also provided subcutaneous stimulation comparable to moxibustion.
url http://dx.doi.org/10.1155/2014/518313
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