• Title/Summary/Keyword: 미세자극

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Effect of Microcurrent stimulation and Combined exercise on Body composition and Blood lipid profile in Young obese women (미세전류자극과 복합운동이 비만 여대생의 체성분과 혈중지질성분 변화에 미치는 효과)

  • Yong-Taek Rhim
    • Journal of the Korean Applied Science and Technology
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    • v.40 no.5
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    • pp.1104-1115
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    • 2023
  • The present study aims to verify the usefulness of microcurrent stimulation as an effective intervention for managing body shape. Thirty female college students with a percentage body fat of 30% or more participated as subjects and belonged to the one of three groups; control group, combined exercise group, microcurrent stimulation group. Based on the results of analyzing the measurement data from pre- and post-intervention for four weeks for each group, the following conclusions were obtained. There was no statistically significant difference in all measured variables in the control group. However, waist circumference and TC were significantly reduced in the combined exercise group, and also weight, percentage body fat, waist circumference, and apolipoprotein were significantly reduced in microcurrent stimulation group. Considering the above conclusions, it can be suggested that microcurrent stimulation could be an effective intervention to improve body composition and blood lipid profile to have a healthy body.

Effects of Microcurrent and High Voltage Pulsed Galvanic Current Stimulation on Fibular Fracture Healing of the Rabbits (미세전류자극과 고전압 맥동직류 통전이 토끼의 비골 골절치유에 미치는 효과)

  • Ko, Seung-Hyun;Yoon, Bum-Chul;Kim, Ji-Sung;Min, Kyung-Ok
    • The Journal of the Korea Contents Association
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    • v.11 no.10
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    • pp.286-292
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    • 2011
  • This study investigated the degree of fracture healing using cathode stimulation of microcurrent, cathode and anode stimulation of High Voltage Pulsed Galvanic Current (HVPGC). Measures were performed by X-ray test and Hematoxylin-Eosin stain and Masson's trichrome stain and osteocalcin-positive immunoreactivity. In the measure of X-ray, microcurrent stimulation group revealed more rapid recovery than the groups of HVPGC's cathode and anode stimulation in bone union degrees. Microcurrent group showed significant difference statistically (p<0.05). However, the groups of HVPGC's cathode and anode stimulation didn't show significant difference statistically(p>0.05). In the histologic examination with Hematoxylin-Eosin and Masson's trichrome, microcurrent stimulation group was observed more proliferation of irregular woven bones than the groups of HVPGC's cathode and anode stimulation. Osteocalcin-positive immunoreactivity was observed more osteoblast, osteocyte, osteoclast, bone matrix than the groups of HVPGC's cathode and anode stimulation. Microcurrent stimulation can be considered an effective way during healing of fresh fracture and it can show more effective method than HVPGC's cathode and anode stimulation in the fracture healing.

Analysis and Usefulness of Microelectrode Recording during Deep Brain Stimulation Surgery in Movement Disorders (이상운동질환에 대한 뇌심부자극 수술 중에 미세전극 기록의 분석과 유용성)

  • Baek, Jae-Seung;Park, Sang-Ku;Kim, Dong-Jun;Park, Chan-Woo;Lim, Sung-Hyuk;Hyun, Soon-Chul
    • Korean Journal of Clinical Laboratory Science
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    • v.51 no.4
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    • pp.468-474
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    • 2019
  • Deep brain stimulation (DBS) is an effective surgical procedure for treating drug refractory movement disorders, and DBS involves delivering high frequency electrical stimulation to deep brain nuclei. Microelectrode recording (MER) is a complementary test that can precisely identify the location of deep brain nuclei, along with MRI correlation, during DBS surgery to improve the surgical outcome and minimize side effects. The purpose of this paper is to analyze the neuro-physiological waveforms and identify the usefulness of MER by analyzing the MER performed during DBS surgery for treating movement disorders. We retrospectively reviewed 28 patients who underwent MER during DBS surgery for movement disorders from January to December 2018. Of the 28 patients, 38 MERs for the subthalamic nucleus (STN), 10 MERs for the globuspallidusinternus (Gpi), and 4 MERs for the ventral intermediate thalamic nucleus (VIM) were performed. In all the cases, the target sites were found and micro-stimulations were used to check for side effects and to readjust the target sites. The clinical symptoms of all 28 patients improved after surgery. In conclusion, MER is a useful test that employs neuro-physiological waveforms to accurately identify the deep brain nuclei, along with MRI correlation, to improve the DBS surgical outcomes for movement disorders and to minimize side effects.

Fabrication and application of cell-based microfluidic chip for eye-irritation test of chemicals (화학 물질의 안자극 시험용 세포 기반 미세유체 칩의 제작 및 응용)

  • Cho, Sujin;Rhee, Seog Woo
    • Analytical Science and Technology
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    • v.34 no.6
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    • pp.275-283
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    • 2021
  • This study presents the development of cell-based microfluidic chips for the performance of acute eye irritation tests due to chemicals and examined some of their applications. Microfluidic chips were fabricated by photolithography and soft lithography, and they had three compartments with different areas for cell culture. Rabbit corneal epithelial cells were used for the eye irritation test. The death of cells cultured inside the chip was monitored at regular time intervals after treatment with an aqueous solution of chemicals, and the cell death rate constants were calculated based on the viability curve. The performance of the microfluidic chip was verified by examining the effects of cell-cell junctions, cell-substrate adhesion, and initial cell numbers compared to cell death rates. Eye irritation tests were performed at various concentrations of an aqueous solution of sodium dodecyl sulfate (SDS), a standard substance for the eye irritant test. The cells were exposed to the SDS aqueous solution for 300 s, and the resulting eye irritation was assessed by cell viability. Finally, the equation for calculating the toxicity score (TS) was derived based on the weighting factor for each compartment in the chip. The cell-based microfluidic chip developed in this study may be used for eye irritation tests from chemicals used in cosmetics and pharmaceuticals.

Resonance May Elucidate New Bone Formation Induced by Low amplitude and High frequency Mechanical Stimuli (고주파 미세자극에 의한 뼈의 생성에 관한 모델링)

  • Yoon, Young June;Kim, Moon-Hwan;Bae, Cheol-Soo
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.1 no.3
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    • pp.27-32
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    • 2008
  • Bone is a self-assembly material. It is known that the low amplitude and high frequency mechanical stimulus, which is much less amplitude but higher frequency than those induced by the normal activity, can induce new bone formation. The vibrating resonance is employed to elucidate why new bone is formed by this kind of mechanical stimulus. For example, as 30 Hz and $5{\mu}{\epsilon}$ mechanical stimulus is applied at the wall of canaliculus (the tiny tube type pathway of bone fluid flow and the diameter of canaliculus is less than 200nm), the osteocytic cell membrane experiences $1,000{\mu}{\epsilon}$ strain due to the vibrating resonance. Two experiments will follow after this pilot study; (1) observing the MAPK pathway of osteocytes by using in-vitro cell culture and (2) visualizing the actin filament network in the osteocytes by using the imaging technique, such as confocal laser scanning microscope.

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The Effects of Microcurrent Stimulation on Erector Spinae Fatigue Index (미세전류 자극이 척주세움근의 피로지수에 미치는 영향)

  • Kang, Da-Haeng
    • Journal of Digital Convergence
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    • v.11 no.11
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    • pp.545-551
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    • 2013
  • This study aimed to compare the effects of microcurrent stimulation and rest on the fatigue index by applying both to subjects who had accumulated fatigue after performing short-duration physical activity. The experiment was performed at S University from December 2012 to February 2013, on 22 healthy men in their 20s, who were right-handed, and without peripheral or musculoskeletal diseases. All subjects lifted a 10-kg box lift and lower 100 times in 15 minutes. Immediately after that, muscle fatigue index (Median Frequency: MF) and blood fatigue index (Creatine Kinase Lactate: CK, Lactate Dehydrogenase: LDH) were measured by using surface electromyography. The subjects were divided into two groups, and microcurrent stimulation and rest were mediated to the experimental and control groups, respectively, for 20 minutes. After intervention, muscle fatigue index and blood fatigue index were measured and the changes in the accumulated fatigue index were compared. Both groups manifested significantly decreased cumulative fatigue after applying the mediation compared to the pre-intervention level (p < .05), the only exception being the fatigue index of the left erector spinae in the rest group. Compared to the rest group, the microcurrent stimulation group showed a significant decrease in muscle fatigue index (p < .05) but no significant differences were found in the blood fatigue index. Given the results of this study, microcurrent stimulation is considered to be helpful in muscle fatigue recovery for workers who have to perform repetitive movements lifting weights, and additional studies on the correlations of the fatigue recovery with respect to the long-term follow-up of fatigue index and mediation time are necessary.

꼬막, Tegillarca granosa 외투강 기관계의 미세구조 I. 외투막 (Mantle)

  • 마경화;박정준;이정식
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2001.10a
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    • pp.339-340
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    • 2001
  • 이매패류의 의투막은 외부의 자극에 생물학적으로 처음 반응하는 기관계로서 자극을 외투강 기관계와 내장 기관계에 전달함과 동시에 외투강내의 모든 기관계를 이차적으로 보호하는 구조이다. 이매패류의 외투막은 자극수용, 외투강내 물질수송 및 패각형성 등 중요 기능을 가지고 있다 (Neff, 1972b; Wilbur, 1972, 1985; Machin,1977; Crrenshaw, 1980). 이매패류 외투막의 구조에 관해서는 Lyonsiidae의 일부 종(Prezant, 1981)과 Crassostrea (Morrison, 1993)등에 관한 일부 보고가 있을 뿐이다. (중략)

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Effects of Volatile Organic Compounds exposed at Working Environment on the Micronucleus Frequencies in Tradescantia Pollen Mother Cells (실내 작업환경 중 휘발성 유기화학물질이 자주달개비 미세핵생성률에 미치는 영향)

  • 신해식;김진규;이진홍;이재환;이정주
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.11a
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    • pp.207-208
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    • 2002
  • 휘발성 유기화학물질 (VOCs)이 인체의 건강에 미치는 영향은 아직까지도 명확하게 밝혀지진 않았지만 대부분의 물질이 재실자에게 자극과 불쾌감을 유발하며, 여러 종류의 발암성 물질을 포함하고 있는 것으로 알려지고 있다 휘발성 유기화학물질 중에서 80% 정도가 인체의 호흡기관을 자극하고 눈의 통증이나 자극을 유발하며, 이중에서 25% 정도는 발암성 물질로 파악되고 있다. (중략)

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The effects of electrical current from a micro-electrical device on tooth movement (초소형 전기장치에 의한 미세 전류가 치아이동에 미치는 효과)

  • Kim, Dong-Hwan;Park, Young-Guk;Kang, Seung-Gu
    • The korean journal of orthodontics
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    • v.38 no.5
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    • pp.337-346
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    • 2008
  • Objective: The purpose of this study was to determine whether an exogenous electric current to the alveolar bone surrounding a tooth being orthodontically treated can enhance tooth movement in human and to verify the effect of electric currents on tooth movement in a clinical aspect. Methods: This study was performed on 7 female orthodontic patients. The electric appliance was set in the maxilla to provide a direct electric current of $20{\mu}A$. The maxillary canine on one side was assigned as the experimental side, and the other as control. The experimental canine was provided with orthodontic force and electric current. The control side was given orthodontic force only. Electrical current was applied to experimental canines for 5 hours a day. The amount of canine movement was measured with an electronic caliper every week. Results: The amount of orthodontic tooth movement in the experimental side during 4 weeks was greater by 30% compared to that of the control side. The amount of increase in tooth movement in the experimental side was statistically significant. The amount of tooth movement in the experimental side during the first two weeks was !Bleater than that in the following two weeks. The amount of weekly tooth movement in the control side was decreased gradually. Conclusions: These results suggested that the exogenous electric current from the miniature electric device might accelerate orthodontic tooth movement by one third and have the potential to reduce orthodontic treatment duration.