• 제목/요약/키워드: laser stimulation

검색결과 96건 처리시간 0.019초

GaAsAl 레이저 자극이 흰쥐의 압통역치에 미치는 영향 (Effects of GaAsAl Laser on the Pressure Pain Threshold in Rats)

  • 송영화;이영구;임종수
    • 대한물리치료과학회지
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    • 제7권2호
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    • pp.533-543
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    • 2000
  • This study was designed to evaluate the analgesic effect of low power GaAsAl laser on the pain threshold of mechanical stimulation using different treatment points, acupuncture point (zusanli) and non-acupuncture points(back). Furthermore, we investigated the analgesic effect of low power GaAsAl laser using the different duration and intensity of laser in mechanical stimulation induced pain behavior. The results were summarized as follows: 1. The threshold of mechanical stimulation was significantly increased by GaAsAl laser stimulation into zusanli point after 15 and 30 min after laser stimulation(P<05). However, the laser stimulation into non-acupoint did not affect the pain threshold of mechanical stimulation. with dose dependent manner. 2. In order to investigate the analgesic effects of BV depending upon different intensities of laser stimulation, the experimental animals were divided into three groups: 3 mW treated group, 6 mW treated group and 10 mW treated group. The low power GaAsAl laser stimulation was applied into zusanli acupoint for 30 min with different intensity of laser stimulation. Six and ten mW of laser stimulation significantly increased the pain threshold of mechanical stimulation at 15 min after laser stimulation as compared to that of control group(P<.05). Moreover, the analgesic effect of 10 mW laser stimulation was maintained for 30 min after laser stimulation (P<.05). 3. Finally, we tested the analgesic effect of 10 mW laser stimulation using different duration such as 10 min, 30 min or 1 hr after application of mechanical stimulation. In 30 min treatment group, the pain threshold of mechanical stimulation was increased at 15min and 30min after laser stimulation(P<.05). However, laser stimulation for 60 min dramatically increased the pain threshold of mechanical stimulation at 0 min after laser stimulation and the analgesic effect of laser stimulation was observed until 1 hr after laser stimulation. In conclusion, these data apparently demonstrate that low power GaAsAl laser has analgesic effect on mechanical induced pain model in rats. In addition, the treated point, intensity and duration of laser stimulation should be concerned before clinical application for pain management purpose.

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다발성 관절염 실험동물 모델에서 저출력 GaAlAs 레이저 자극의 진통효능 및 통증관련 척수내 신경세포의 활성변화에 관한 연구 (The effect of low power GaAlAs laser stimulation on anti-nociception and spinal neuronal activity related to pain sensation in the polyarthritis of rats)

  • 장문경;최영덕;박봉순
    • 대한물리치료과학회지
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    • 제10권1호
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    • pp.180-189
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    • 2003
  • The experiments were designated to evaluate the anti-nociceptive effect of low power laser stimulation on acupoint or non-acupoint using arthrogenic solution induced poly arthritis animal model. Evaluation of potential antinociceptive effect of low power laser on arthritis has employed measurements of the foot bending test, the development of either thermal or mechanical hyperalgesia following the arthritis induction. The analysis of thermal hyperalgesia includes Hargreaves's method. Randall-Sellitto test was utilized for evaluating mechanical hyperalgesia. In addition, the antinociceptive effect of low power laser stimulation on arthritis induced spinal Fos expression was analyzed using a computerized image analysis system. The results were summerized as follows: 1. In laser stimulation on acupoint treated animal, laser stimulation dramatically inhibited the development of pain in foot bending test as compared to those of non acupoint treated animal group and non treated animal group. 2. The threshold of thermal stimulation was significantly increased by low power laser stimulation on acupoint as compared to that of non treated control group. 3. Laser stimulation on acupoint dramatically attenuated the development of mechanical hyperalgesia as compared to that of non treated group. 4. Low power laser stimulation on acupoint significantly suppressed arthritis induced Fos expression in the lumbar spinal cord at 3 week post arthritis induction. In conclusion, the results of the present study demonstrated that low power laser stimulation on acupoint has potent anti-nociceptive effect on arthritis. Additional supporting data for an antinociceptive effect of laser stimulation was obtained using Fos immunohistochemical analysis on spinal cord section. Those data indicated that laser stimulation induced antinociception was mediated by suppression of spinal neuron activity in pain sensation.

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GaAsAl 레이저가 물리적 통증반응과 관련된 척수내 신경세포의 활성에 미치는 영향 (Effects of GaAsAl laser on the spinal neuronal activity induced by noxious mechanical stimulation)

  • 송영화;이영구;임종수
    • 대한물리치료과학회지
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    • 제7권2호
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    • pp.545-558
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    • 2000
  • The present study was designed to investigate the effect of low power GaAsAl laser on Fos expression in the spinal cord induced by noxious mechanical stimulation. Noxious mechanical stimulation was applied to the right hind paw following 30min of low power laser treatment using different intensity and treatment point and the resulting Fos expression in the spinal cord dorsal horn was compared to that obtained in rats exposed only to the noxious mechanical stimulation. The results were summarized as follows: 1. In intact control rats, only a few Fos like immunoreactive(Fos-IR) neurons were evident in the lumbar spinal cord dorsal horn. Similarly, following prolonged inhalation anesthesia, Fos-IR neurons were absent in the dorsal horn of the lumbar spinal cord. In animals treated with noxious mechanical stimulation, neurons with nuclei exhibiting Fos immunostaining were distributied mainly in the medial half of ipsilateral laminae I-V at lumbar segments L3-5. These findings directly indicated that prolonged anesthesia used in this study did not affect the Fos expression in the spinal cord dorsal horn of intact animals and noxious mechanical stimulation treated animals. 2. In acupoint treated animals, 10mW of laser stimulation, not 3mW intensity, significantly reduced the number of Fos immunoreactive neurons in the spinal dorsal horn induced by noxious mechanical stimulation(P<.01). However, the supressive effect of low power laser stimulatin was not observed in 3m Wand 10m W of laser stimulation into non-acupoint. These data indicate that 10mW of low power laser stimulation into acupoint is capable of inhibiting the expression of Fos in the dorsal horn induced by noxious mechanical stimulation. In conclusion, these findings raise the possibility that low power laser stimulation into acupoint may be a promising alternative medicine therapy for the mechanical stimulation induced pain in the clinical field.

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저출력 레이저 자극에 의한 척수내 신경세포의 활성변화 (The spinal neuronal activity induced by low power laser stimulation)

  • 오경환;최영덕;임종수
    • 대한물리치료과학회지
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    • 제8권2호
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    • pp.1005-1013
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    • 2001
  • The present study was designed to investigate the effect of low power GaAlAs laser on spinal Fos expression related to the anti-nociceptive effect of laser stimulation. Low power GaAlAs laser was applied to either acupoint or non-acupoint for 2 hour under light inhalation anesthesia. Spinal Fos expression in the dorsal horn was compared to that obtained in inhalation anesthesia control group. Furthermore, we analyzed the effect of the local treatment of lidocaine on the spinal Fos expression evoked by low power GaAlAs laser stimulation. The results were summarized as follows: 1. In the normal animals, only a few Fos like immunoreactive(Fos-IR) neurons were evident in the lumbar spinal cord dorsal horn. Similarly, following prolonged inhalation anesthesia, Fos-IR neurons were absent in the dorsal horn of the lumbar spinal cord. In animals treated with laser stimulation, Fos immunoreactive neurons were increased mainly in the medial half of ipsilateral laminae I-III at lumbar segments L3-5. These findings directly indicated that prolonged anesthesia used in this study did not affect the Fos expression in the spinal cord dorsal horn of intact animals and low power laser stimulation dramatically produced Fos expression in the spinal cord laminae that are related to the anti-nociceptive effect of laser stimulation. 2. In acupoint stimulated animals, 10mW of laser stimulation, not 3mW and 6mW intensity, significantly increased the number of Fos immunoreactive neurons in the spinal dorsal horn(p<0.05). However, laser stimulation on acupoint more dramatically increased the number of Fos immunoreactive neurons in the spinal cord rather than laser stimulatin on non acupoint. These result suggested that laser stimulatin on acupoint was more effective treatment to activate the spinal neuron than non acupoint stimulation. 3. The local treatment of lidocaine totally suppressed the activity of spinal neurons that were induced by lower power 1aser stimulation. These data indicated that the anti-nociceptive effect of laser stimulation was absolutely dependent upon the peripheral nerve activity in the stimulated location. In conclusion, these data indicate that 10mW of low power laser stimulation into acupoint is capable of inducing the spinal Fos expression in the dorsal horn related to the anti-nociceptive effect of laser stimulation, Furthermore, the induction of spinal Fos expression was totally related to the peripheral nerve activity in the laser stimulated area.

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Optical Stimulation and Pacing of the Embryonic Chicken Heart via Thulium Laser Irradiation

  • Chung, Hong;Chung, Euiheon
    • Current Optics and Photonics
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    • 제3권1호
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    • pp.1-7
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    • 2019
  • Optical stimulation provides a promising alternative to electrical stimulation to selectively modulate tissue. However, developing noninvasive techniques to directly stimulate excitable tissue without introducing genetic modifications and minimizing cellular stress remains an ongoing challenge. Infrared (IR) light has been used to achieve optical pacing for electrophysiological studies in embryonic quail and mammalian hearts. Here, we demonstrate optical stimulation and pacing of the embryonic chicken heart using a pulsed infrared thulium laser with a wavelength of 1927 nm. By recording stereomicroscope outputs and quantifying heart rates and movements through video processing, we found that heart rate increases instantly following irradiation with a large spot size and high radiant exposure. Targeting the atrium using a smaller spot size and lower radiant exposure achieved pacing, as the heart rate synchronized with the laser to 2 Hz. This study demonstrates the viability of using the 1927 nm thulium laser for cardiac stimulation and optical pacing, expanding the optical parameters and IR lasers that can be used to modulate cardiac dynamics.

저출력레이저와 전기자극에 의한 골격근 손상 흰쥐의 IL-1β, IGF-1, IGF-2 활성 (Activation of IL-1β, IGF-1 and IGF-2 in Injured Rat Skeletal Muscle by Low Power He-Ne IR Laser and Electrical Stimulation)

  • 김종순;노민희
    • 한국콘텐츠학회논문지
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    • 제8권11호
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    • pp.251-262
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    • 2008
  • 본 연구는 골격근 손상에 대한 물리치료 중재의 치료 효과를 근전도, 초음파 영상 그리고 IL-$1{\beta}$, IGF-1, IGF-2의 변화를 통해 알아보았다. 본 연구를 위해 실험동물을 정상군, 대조군, 레이저치료군, 신경근전기 자극군으로 무작위 배치하였다. 연구의 결과 근전도상 모든 실험동물에서 비정상적인 자발전위는 관찰되 지 않았으며 근육의 최대 횡단 직경은 대조군에 비해 레이저치료군과 신경근전기자극군이 유의하게 증가 하였다. IL-$1{\beta}$의 수준은 대조군에 비해 레이저치료군과 신경근전기자극군에서 보다 많이 감소하였으며 IGF-1과 IGF-2는 대조군, 레이저치료군 그리고 신경근전기자극군 모두 정상군에 비해 유의하게 높았으 나 대조군과 레이저치료군 그리고 신경근전기자극군 사이에 유의한 차이는 없었다.

대추혈(大椎穴) 및 신유혈(腎兪穴)에 대한 전침 레이저자극이 개의 혈액학적 변화와 내분비물질의 혈중농도에 미치는 영향 (The effects of electroacupuncture and laser at Da-zhui and Shen-shu on hematologic changes and blood concentration of endocrine substances in dogs)

  • 조용성;배춘식
    • 대한수의학회지
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    • 제39권5호
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    • pp.986-994
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    • 1999
  • This study was carried out (a) to investigate the variations of blood chemistry and (b) to examine the secretion trend of endocrine substances in a dog model after electroacupuncture and laser stimulation at different time period(9 to 11a.m. and 6 to 8p.m.). Two acupuncture points ; Da Zhui(GV-14) and Shen Shu(BL-23) were electroacupunctured for 20 minutes with 2Vol, 20Hz and irradiated for 5 minutes with 8,000Hz. Before stimulation and after a lapse of time(10-minutes, 30-minutes and 60-minutes) all dogs were checked the following parameters ; cortisol, ACTH, RBC, hemoglobin, hematocrit, WBC, Ca, P, SGPT, SGOT and creatinine. The results were as follow : The levels of cortisol and ACTH have been increased 10 minutes after the stimulation of the electroacupuncture and laser. The higher levels of cortisol and ACTH have been decreased to keep the normal levels from 30 minutes after the stimulation of the electroacupuncture and laser. The RBC, hemoglobin, hematocrit and WBC showed the physiological phenomena in the electroacupuncture and laser stimulation. In sero chemical analysis, calcium, phosphate, SGOT, SGPT and creatinine levels were within normal physiological ranges.

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다발성 관절염 실험동물 모델에서 저출력 GaAsAl 레이저 자극에 의한 소염효과 (The anti-inflammatory effect of low power GaAsAl laser stimulation on the polyarthritis of rats)

  • 장문경;심규리;최영덕
    • 대한물리치료과학회지
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    • 제9권2호
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    • pp.99-109
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    • 2002
  • We designed the experiments to elucidate the anti-inflammatory effect of low power laser stimulation on acupoint or non-acupoint using arthrogenic solution induced poly arthritis animal model. In order to achieve the experimental purpose, change in body weight paw edema, pathological changes in inflammed pint and the serum interlukin-6 level were measured after arthritis induction in acupoint later stimulated group, non acupoint laser stimulated group and non treated control animal. The results were summerized as follows: 1. The consistent increase in body weight was observed in the normal animal during whole experimental period, while the induction of arthritis significantly suppressed increase in body weight from the 15 day after arthritis induction. Especially, non treated animal group showed more suppressive effect on increase in body weight as compared to that of low power laser stimulated groups (P<0.05). 2. Low power laser stimulation on acupoint (Zusanli) significantly inhibited edema in the left side paw from the 12th day after arthritis induction as compared to that of non treated animals. This suppressive effect on paw edema was maintained until the end of experiment. 3. Laser treatment on acupoint dramatically suppressed the radiological change (i.e. new bone proliferation and soft tissue swelling) caused by arthritis as compared to that of non treated group animals. 4. Low power laser treatment reduced the increase in serum interlukin-6 caused by arthritis induction to levels observed in the normal animals. In conclusion, the results of the present study demonstrated that low power laser stimulation on acupoint has potent anti-inflammatory effect on arthritis. Thus it is recommended that low power laser be used for long term treatment of arthritis induced inflammation. However, further study is necessary to clarify the possible side effect of laser treatment depending upon intensity and duration of stimulation.

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헬륨 -네온 레이저자극으로 유발된 흰쥐 진통작용의 날록손 반전 (Naloxone Reversal of He-Ne Laser Stimulation Induced Analgesia in Rat)

  • 이재형;송인영;최은영
    • The Journal of Korean Physical Therapy
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    • 제8권1호
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    • pp.15-20
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    • 1996
  • The purpose of this study were to 1) determine the analgesic effect of 632.8 nm of helium-neon (He-Ne) laser stimulation on acupuncture point in rat and 2) determine the reversal of analgesic effect by naloxone injection. Eighteen Sprague-Dawley rats were devided into three groups : control (n=6) : laser (n=6), laser stimulation at $3.58\;J/cm^2$ ; and naloxone (n=6), 1 mg/kg of naloxone chloride inject into peritoneum before laser stimulation at $3.63J/cm^2$. Tail-flick latency were measured pretreat and posttreat with hot plate $(55^{\circ}C)$. Data were analyzed using one-way ANOVA and paired t-teat for tail-flick latency. No significant change was noted in the tail-flick latency in either control or naloxone groups. But significant increased in tail-flick latency in taller group. The results suggest that He-Ne laser induced analgesic effect, and endogenous opioids may be involved in He-Ne laser induced analgesia.

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레이저자극과 수기자극에 대한 경락전기반응 특성비교 (Comparison of meridians electric response property for laser and acupuncture stimulation)

  • 이용흠;류연항;정병조;신태민
    • 한국정보통신학회논문지
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    • 제11권12호
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    • pp.2335-2342
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    • 2007
  • 최근에 레이저를 임상치료에 응용하는 사례가 증가하고 있다. 그러나 전기적 관점에서 레이저 자극이 경락에서 어떠한 전기적 반응을 유도할 수 있는지에 대한 연구가 미흡하고, 명확한 치료효과에 대한 임상보고가 발표되지 않고 있다. 본 논문에서는 레이저자극과 수기자극이 경락전위 형성에 미치는 영향을 비교 관찰하여 전기적 관점에서 침술과정 및 침술효과에 대한 객관적 근거를 제시하고자 하였다. 수양명대장경상의 삼간혈(LI3)을 각각 자극했을 경우, 삼간혈(LI3)과 합곡혈(LI4)에서의 전위변화를 측정하였다. 그 결과, 레이저 자극 시, 평균 피크전위는 $7.53{\pm}3.44{\mu}V$로 매우 낮게 나타났고, 자극전후 전위패턴에 차이가 없어서 레이저 자극에 대한 유효한 전기반응으로 간주하기 어렵다. 접지조건에 대한 수기자극에서는 평균피크전위가 $2.65{\pm}1.53mV$로 매우 높게 측정되었고, 개인별, 접지조건에 따라 전위크기와 패턴이 다양하게 나타나고 전위패턴은 주로 캐패시터의 충방전 전위와 매우 비슷하게 나타났다. 또한, 절연자침의 경우에서는 접지조건에 관계없이 평균 피크 전위가 $0.25{\pm}0.16mV$로 수기자극 전위에 비하여 매우 낮게 나타났으며, 이는 침자극에 대한 유효한 전기 반응으로 간주하기 어렵다. 따라서, 전기적 관점에서 침술과정과 침술효과는 시술자와 피시술자간의 생체이온전하의 이동에 의한 에너지 교감현상임을 확인하고, 수기자극은 경락의 전기반응을 유도하는 반면, 레이저 자극은 경락의 전기적 반응을 유도하기 어렵다는 것을 확인하였다.