• Title/Summary/Keyword: Microcurrent

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The effects of microcurrent stimulation for gait improvement (미세전류 자극이 보행 개선에 미치는 효과)

  • Yu, Jae-Young;Jeong, Jin-Gyu
    • The Journal of the Korea institute of electronic communication sciences
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    • v.9 no.11
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    • pp.1283-1290
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    • 2014
  • This study was conducted to apply microcurrents of $500{\mu}A$ effective for ATP generation to leg muscles to which delayed onset muscle soreness (DOMS) had been induced in order to examine whether the microcurrent stimulation was effective for gait improvement. Forty subjects were randomly assigned to an experimental group of 20 subjects and a placebo group of 20 subjects. Microcurrents were applied immediately after inducing DOMS and 24 hours and 48 hours thereafter and changes in the center of pressure (COP), cadence, and affected stance phases were measured. According to the results of the measurement, changes in the COP, cadence, and affected stance phases at 48 hours after the induction of DOMS were statistically significant compared to the values before the induction. The COP of the experimental group became statistically significantly lower and the ratio of affected stance phases of the experimental group became statistically significantly higher compared to the placebo group at 48 hours after the induction of DOMS. Therefore, $500{\mu}A$ microcurrents showed effects for gait improvement by promoting the recovery and healing of damaged muscles.

Effects of Specific Frequency and Application Timing of Microcurrent on the Mechanical Property of Muscle Caused by Delayed Onset Muscle Soreness (미세전류 특정 주파수와 적용시기에 따른 지연성근육통 유발로 인한 근육의 기계적 특성변화)

  • Lee, Jeongwoo;Lee, Seul;Doo, Yeongtaek
    • Journal of The Korean Society of Integrative Medicine
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    • v.7 no.2
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    • pp.11-17
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    • 2019
  • Purpose : The purpose of this study was to determine the effects of specific frequency and application timing of microcurrent (MC) on the mechanical property of muscle caused by delayed onset muscle soreness (DOMS). Methods : The subjects were 32 healthy adults with 8 subjects randomly assigned to four groups (I; 40 Hz MC while inducing DOMS, II; 40 Hz MC immediately after inducing DOMS, III; 284 Hz MC while inducing DOMS, IV; 284 Hz MC immediately after inducing DOMS). DOMS is applied to the biceps brachii muscle while MC was applied at an intensity of $300{\mu}A$ for 10 minutes. The mechanical properties of muscle were measured before and immediately after DOMS. Results : In terms of muscle tone, there were significant differences in interaction effects between time and groups. Regarding muscle elasticity and stiffness, there were no significant differences in interaction effects between time and groups but there were only significant differences in main effects based on time. Conclusion : The results indicated that 40 Hz MC had an effect on reducing muscle tone regardless of application timing. However, both 40 Hz and 284 Hz MC did not trigger changes in muscle elasticity and stiffness regardless of application timing.

The Effects of Microcurrent Stimulation on the Astrocytes Proliferation at Injured Brain of Rabbit (극저전류자극이 손상된 토끼 뇌의 별아교세포 증식에 미치는 효과)

  • Kim, Ji-Sung;Min, Kyoung-Ok
    • Journal of Korean Physical Therapy Science
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    • v.9 no.3
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    • pp.107-119
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    • 2002
  • Astrocyte, which shares the greatest part of the brain (about 25%), is a land of glial cell that composes the central nervous system along with microglia, ependymal cell and oligodendroglia. It has 7-9nm of fibers in its cytoplasma, which are composed of glial fibrillary acidic protein (GFAP) and vimentin. As for the functions of the astrocyte, it has, so far, been supposed that the astrocyte will play a cytoskeletal role in maintaining the structure of the cerebrum, play a role as a blood-brain barrier so that it can induce migration of the neuron in its development and substances in the blood cannot go into the nervous tissue, and a role of immunology and phagocytosis. However, it was revealed today that it will be a role in preventing expansion of injury by attaching itself to the connective tissue such as the vessel and the pia mater when the nervous tissue or the arachnoid is injured. Microcurrent stimulation can control current, on the basis of A unit. That is, with such devices using it, it is possible to sense, from the outside, the injured current(wound current) of the lesion and to change it into the normal current, thereby promoting the restoration of the cells. In order to examine the effects of microcurrent stimulation on the injured astrocytes in the rabbits, this study was conducted with 24 New Zealand White Rabbit as its subjects, which were divided into 8 animals of the experiment group and 16 animals of the control group. After the animals in the experiment group were fixed to the stereotaxic apparatus, their hair was removed and their premotor area(association area) perforated by the micro-drill for skull-perforation with the depth of 8mm from the scalp. In one week after the injury, 4 animals in the control group and 8 animals in the experiment group were sacrificed and examined with immunohistochemical method. And in three weeks, the remaining 4 animals in the control group and 8 animals in the experiment group were also sacrificed and examined with the same way. The conclusion has been drawn as follows : In the control group sacrificed in one week after the injury, the astrocytes somewhat increased, compared with the normal animals, and in the group sacrificed in three weeks after the injury, they increased more (p < 0.05). The experiment group A in one week showed a little increase, but there was no significant differences, but the experiment group in three weeks showed more increase, compared with the experiment group in one week (p < 0.05). The experiment group B in one week showed more increase than the control group or the experiment group A, and the experiment group in three weeks showed more increase than the experiment group in one week (p < 0.05). Among the astrocytes, fibrous astrocytes were mostly observed, increasing as they are close to the lesion, and decreasing as they are remote from it. The findings show that microcurrent can cause the astrocytes to proliferate and that it will be more effective to stimulate the cervical part somewhat remote from the lesion rather than to directly stimulate the part of the lesion. Thus, microcurrent stimulation can be one of the methods that can activate the reaction of astrocytes, which is one of the mechanism for treating cerebral injury with hemorrhage. Therefore, this study will be used as basic research data for promoting restoration of functions in the patient with injury in the central nervous system.

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A Study On Hardware Design for High Speed High Precision Neutron Measurement (고속 고정밀 중성자 측정을 위한 하드웨어 설계에 관한 연구)

  • Jang, Kyeong-Uk;Lee, Joo-Hyun;Lee, Seung-Ho
    • Journal of IKEEE
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    • v.20 no.1
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    • pp.61-67
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    • 2016
  • In this paper, a hardware design method is proposed for high speed high precision neutron radiation measurements. Our system is fabricated to use a high performance A/D Converter for digital data conversion of high precision and high speed analog signals. Using a neutron sensor, incident neutron radiation particles are detected; a precision microcurrent measurement module is also included: this module allows for more precise and rapid neutron radiation measurement design. The high speed high precision neutron measurement hardware system is composed of the neutron sensor, variable high voltage generator, microcurrent precision measurement component, embedded system, and display screen. The neutron sensor detects neutron radiation using high density polyethylene. The variable high voltage generator functions as a 0 ~ 2KV variable high voltage generator that is robust against heat and noise; this generator allows the neutron sensor to perform normally. The microcurrent precision measurement component employs a high performance A/D Converter to precisely and swiftly measure the high precision high speed microcurrent signal from the neutron sensor and to convert this analog signal into a digital one. The embedded system component performs multiple functions including neutron radiation measurement for high speed high precision neutron measurements, variable high voltage generator control, wired and wireless communications control, and data recording. Experiments using the proposed high speed high precision neutron measurement hardware shows that the hardware exhibits superior performance compared to that of conventional equipment with regard to measurement uncertainty, neutron measurement rate, accuracy, and neutron measurement range.

A Comparison of the Inhibitive Effect of High Voltage Pulsed Current Stimulation and Microcurrent Electrical Neuromuscular Stimulation on Bacterial Growth (고전압 맥동전류 자극과 미세전류 신경근 자극의 세균성장 억제효과 비교)

  • Kang, Eun-Jin;Roh, Jung-Suk;Lee, Jae-Seung;Yi, Chung-Hwi;Kim, Tae-Ho
    • Physical Therapy Korea
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    • v.3 no.1
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    • pp.12-23
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    • 1996
  • High Voltage Pulsed Current Stimulation(HVPCS) and Microcurrent Electrical Neuromuscular Stimulation(MENS) have been used to promote the healing of decubitus ulcer and surgical wounds. The benefits of HVPCS and MENS are thought to include an inhibitive effect on bacterial growth. The purpose of this study was to compare the inhibitive effect of two different electrical stimulation techniques growth in vitro. Using agarose-based media, the two bacterial species Staphylococcus aureus, Esherichia coli - which are commonly isolated from open wounds were incubated in an incubator for 24 hours following exposure to HVPCS(400 V, 120 pps, $70{\mu}s$) and MENS($100{\mu}A$, 0.3 Hz). We then measured the zone of inhibition around each electrode. Both HVPCS and MENS produced an inhibitive effect on bacterial growth in this vitro study. However MENS was more effective than HVPCS.

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The Effects of Microcurrent Stimulation on Recovery of Function and Pain in Chronic Low Back Pain (만성요통 환자에 대한 미세전류자극 치료가 통증 및 기능 회복에 미치는 영향)

  • Oh, Hyen-Ju;Kim, Jong-Youl;Park, Rae-Joon
    • Journal of the Korean Society of Physical Medicine
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    • v.3 no.1
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    • pp.47-56
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    • 2008
  • Purpose : This study observed the recovery of function and pain on the eletrostimulation therapy(transcutaneous electrical nerve stimulation(TENS) and micro current therapy(MT)). Methods : Subjects were assigned randomly either experimental group(n=17) who were taken TENS or the control group(n=20) who were taken MT. Also subjects were assessed for pain(Visual Analog Scale; VAS) and function(Oswestry LBP disability index). Results : The VAS has a statistically significant difference with each groups(p<.05), but there was no statistically significant difference with intergroup during treatment period(p>.05). The Oswestry LBP disability index has a statistically significant difference with each groups(p<.05), also there was a statistically significant difference with intergroup during treatment period(p<.05). Conclusion : The efficancy of microcurrent therapy used in this study should be futher investigated in a long period study and objective study outcomes.

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Review of Various Treatments Applied to Patients with Chronic Low Back Pain (만성 요통환자들에게 적용하는 다양한 치료법들에 대한 고찰)

  • Ma, Sang-Yeol;Kim, Eun-Mi;Kim, Hye Lee;Lee, Jae-Hong
    • PNF and Movement
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    • v.10 no.2
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    • pp.47-54
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    • 2012
  • Purpose : The purpose of this study was investigated to find the approach in the various method for patients with chronic low back pain. Methods : For research purposes that meet the search was focused papers. Treatments include PNF, chiropractic, joint mobilization, microcurrent, electroacupuncture, stabilizing exercise, resistance exercise, aquatic rehabilitation exercise, lumbar flexion and extension exercise were included as Gymball exercise. Results : Treatment with the three major manual therapy, electrical therapy and therapeutic exercise were divided. The result of applying manual therapy increased balance, increased strength, stability increased and decreased pain. The result of applying the electrical therapy increased flexibility, and decreased pain. The result of applying therapeutic exercise increases muscle strength, reduced pain, and decreased body fat. Conclusion : Previous studies by examining the effects of chronic low back pain treatment was intended to help in the selection and application Aquatic therapy, manual therapy, electrical therapy for patients with chronic low back pain with pain reduction was found to be effective.

Effects of Wearing a Microcurrent Wrist Guard on Pain Scale, Range of Motion, and Muscle Strength in Elderly Women with Carpal Tunnel Syndrome (미세전류 손목 보호대 착용이 손목터널증후군 노인 여성의 통증 척도, 관절가동범위 및 근력에 미치는 영향)

  • Hyesun Park;Jinhee Park;Jooyong Kim
    • Journal of Fashion Business
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    • v.27 no.5
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    • pp.1-12
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    • 2023
  • The purpose of this study was to investigate impact of wearing low-level current wrist guards on pain scale, range of motion (ROM), and muscle strength in elderly women with Carpal Tunnel Syndrome (CTS). Subjects were 12 elderly women aged between 65 and 85 years who were diagnosed with CTS symptoms. Measurements included grip strength and wrist ROM. Wrist ROM was assessed through flexion and dorsiflexion. Wrist guards were worn. After two weeks, pain level was assessed using the Visual Analogue Scale (VAS). Results showed a significant reduction in VAS score in the MES group after stimulation, whereas there was no difference in the control group. However, there was no significant difference in ROM between the MES group and the control group. Grip strength increased in the MES group after two weeks (p ≤ 0.001). In conclusion, clinical trials suggest that MES wrist guards might be provided as an adjunctive treatment method for CTS patients. This study provides foundational data for the design and use of auxiliary devices such as gloves in the field of MES research for pain reduction, ROM improvement, and muscle strength enhancement resulting from CTS.

Microcurrent Effect with Inverse Proportional Characteristics between the Concentration and Degree of Movement of the Carrier (케리어의 농도와 이동도 사이의 반비례 특성을 갖는 미소전류 효과)

  • Oh, Teresa
    • Journal of the Semiconductor & Display Technology
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    • v.18 no.1
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    • pp.70-73
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    • 2019
  • It was confirmed that current flowing in thin films below nm increases conductivity in diffusion currents by holes rather than electric currents by electrons. ZTO thin film, which was heat treated at $150^{\circ}C$, increased electron concentration, and thus increased capacitances. However, it was found that low current movement would be difficult as the degree of movement was reduced. Therefore, it was found that diffusion currents were more advantageous than drift currents by electrons in order to allow low current to be produced in very thin films of nm class.

The Effect of Microcurrent Electrical Stimulation on Muscle Atrophy Suppression in a Sciatic Nerve Injured Rat Model; Comparative Study by Current Intensity (좌골신경손상 쥐 모델을 이용한 미세전류 자극의 근위축 억제 효과 확인 및 자극 세기 별 비교)

  • Hwang, Donghyun;Kim, Seohyun;Lee, Hana;Jang, Seungjun;Kim, Sebin;kim, Tackjoong;Choi, Sooim;Kwak, Hoyoung;Kim, Han Sung
    • Journal of Biomedical Engineering Research
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    • v.38 no.4
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    • pp.175-182
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    • 2017
  • Microcurrent electrical stimulation(MES) has been used to accelerate recovery of atrophied skeletal muscle. However, convincing stimulation parameters for suppressing muscle atrophy due to injured sciatic nerve remains unclear. The objective of this study was to investigate the effective intensity of MES on restraining muscle atrophy with rat model underwent sciatic nerve injury(SNI). Twenty-5-week-old Sprague Dawley male rats were equally assigned to five groups : Control group(Control, CON, n = 4), Denervation group(Denervation, D, n = 4), Denervation with MES of $22{\mu}A$ group(Denervation + $22{\mu}A$, D+22, n = 4), Denervation with MES of $100{\mu}A$ group (Denervation + $100{\mu}A$, D+100 n = 4), Denervation with MES of $400{\mu}A$ group(Denervation + $400{\mu}A$, D+400, n = 4). To induce muscle atrophy, all rats in the D, D+22, D+100, and D+400 groups, were subjected to sciatic nerve injury on their right hindlimb and allowed to have 1 week of resting period. Following this period, rats underwent daily MES(60 min/ a day, 5times/1week) for 4 weeks. After that, we investigate morphological changes in muscle volume by using in vivo micro-computed tomography at week 0, 1, 3 and 5. After 5 weeks, the muscle volume had the highest value in D+400 group, and also noticeably increased in D+100 group compared to it in D group. The results of this study imply that MES with current intensities between $100-400{\mu}A$ can suppress muscle atrophy effectively.