• Title/Summary/Keyword: Sympathetic nerve stimulation

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ROLE OF SYMPATHETIC NERVE ON THE CONTROL OF MICROCIRCULATION IN THE FELINE DENTAL PULP (고양이 치수에서 교감신경에 의한 미세순환조절에 관한 기능적 연구)

  • Kim, Sung-Kyo
    • Restorative Dentistry and Endodontics
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    • v.21 no.1
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    • pp.375-384
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    • 1996
  • The purpose of this study was to investigate the functional involvement of sympathetic nerve in the control of the microcirculation in the dental pulp with the aim of elucidation of the involvement of neuropeptides and sympathetic nerve in neurogenic inflammation. Experiments were done on the 7 cats anesthetised with sodium pentobarbital, and sympathetic nerve to the' dental pulp was stimulated electrically (10 Hz, 4 V, 1.5 ms, 3.5 mins). Ana-adrenoceptor antagonist phentolamine and a neuropeptide Y antagonist D-myo-inositol-1,2,6-trisphosphate (PP56) were injected close intra-arterially into the dental pulp without changing the systemic blood pressure. The probe of laser Doppler flowmeter was placed on the buccal surface of ipsilateral canine teeth to the stimulation, and pulpal blood flow was measured. Stimulation of the sympathetic nerve decreased pulpal blood flow by $55.24{\pm}7.74\;%$ (mean${\pm}$SEM, n = 13). Stimulation of the sympathetic nerve following the injection of the ${\alpha}$-adrenoceptor antagonist phentolamine ($0.1{\mu}g$/kg) caused decrease of pulpal blood flow by $14.35{\pm}3.43%$ (mean${\pm}$SEM, n=5). Phentolamine attenuated the sympathetic nerve-induced pulpal blood flow decrease by $74.02{\pm}9.32%$ (mean${\pm}$SEM) Stimulation of the sympathetic nerve following the injection of the neuropeptide Y antagonist PP56 (2.3 mg/kg) caused decrease of pulpal blood flow by $30.64{\pm}7.92%$ (mean${\pm}$SEM, n=6). PP56 attenuated the sympathetic nerve-induced pulpal blood flow decrease by $44.37{\pm}11.01%$ (mean${\pm}$SEM). These data provide evidences of the co-contribution of nerepinephrine and neuropeptide Y on the sympathetic nerve-induced vasoconstriction in the feline dental pulp. In addition, they show functional evidences that sympathetic nerve plays an active role in controlling the microcirculation of the dental pulp.

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The Effects of Transcutaneous Electrical Nerve Stimulation on Sympathetic Nerve Activity in Delayed Onset Muscle Soreness (경피신경전기자극이 지연성근육통의 교감신경활동에 미치는 영향)

  • Park, Jang-Sung
    • The Journal of Korean Physical Therapy
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    • v.14 no.1
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    • pp.109-115
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    • 2002
  • This study conducts eccentric exercise ti non-dominant elbow flexor of 20 persons in order to examine the effects of transcutaneous electric nerve stimulation on sympathetic nerve activity in delayed onset muscle soreness, induces delayed onset muscle soreness, divides them into 10 persons respectively as experimental and control groups. And a stimulation for 2 min. with 100 pps is given to elbow flexor after repeated three times of 10 minutes rest, temperature, blood pressure and pulse are measured and as a result of two-way ANOVA, change of temperature didn't show a significant difference according to the elapse of times(p>0.05) and systolic pressure and pulses in showed a significant difference between experimental and control groups(p<0.05). These results suggest that transcutaneous electrical nerve stimulation has a direct or indirect influence on sympathetic nerve activity in delayed onset muscle soreness under a restricted condition of electrical stimulation.

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Changes in Sympathetic Nervous System Responses of Healthy Adult Women with Changes in the Stimulus Intensity of High Frequency Transcutaneous Electrical Nerve Stimulation (고빈도 경피신경전기자극의 자극강도에 따른 정상 성인여성 교감신경성 반응의 변화)

  • Choi, Yoo-Rim;Lee, Jeong-Woo
    • The Journal of Korean Physical Therapy
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    • v.22 no.1
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    • pp.61-66
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    • 2010
  • Purpose: The purpose of this study was to investigate the change in sympathetic nervous system responses of healthy adult women with changes in stimulus intensity of high frequency transcutaneous electrical nerve stimulation. Methods: Twenty-four healthy subjects (women) received high frequency electrical stimulation of the forearm. The subjects were randomly assigned to one of two groups; a low intensity stimulation group (n=12) and a high intensity stimulation group (n=12). The electrode attachment was arranged on the forearm of the dominant arm and the electricity stimulus time was 20 minutes. Measured items included skin conductance, pulse rate, skin temperature, and respiration rate. Each was measured at 4 times. Results: Skin conductance and skin temperature showed significant group by time interactions, though there were no significant group and time effects. There were no significant differences according to time, group effect, and a group by time interaction in pulse and respiration rates. Conclusion: High frequency and high intensity electrical stimulation may be helpful for the improvement of sudomotor function through the activation of the sympathetic nervous system. Also, high frequency and low intensity electrical stimulation may be helpful for the reduction of sudomotor function via inhibition of the sympathetic nervous system.

The Effect of Transcutaneous Electrical Nerve Stimulation on Sympathetic Tone (경피신경 전기자극법이 교감신경 긴장성에 미치는 영향)

  • An, Soo-Gyung;Yoo, Hwan-Suk;Lee, Ji-Hyun;Kim, Young-Rok
    • Physical Therapy Korea
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    • v.3 no.2
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    • pp.77-83
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    • 1996
  • The purpose of this study was to determine the effect of transcutaneous electrical nerve stimulation(TENS) on sympathetic tone in healthy subjects. Stimulation in the conventional and burst modes was applied to the skin of the forearm overlying the median nerve. TENS was applied for 20 minutes at an intensity sufficient to produce a perceptible though not uncomfortable sensation and no muscle contracion of the forearm musculature. The change in sympathetic tone was measured with skin temperature. Skin temperature was measured at the index finger and on the volar surface of the forearm in the stimulated limb. The conventional and burst modes did not change the skin temperature at any of the two measurement sites. We conclude that TENS, as applied in this study, does not influence sympathetic tone. Further research is needed to assess the sympathetic effects of TENS on patient groups, long term treatment and other modalities.

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Influence of Heat Stress Temperature on Sympathetic Nerve Activities (Heat-stress 온도 적용이 교감신경활동에 미치는 영향)

  • Lim, Young-Eun;Yang, Eun-Young;Kim, Tae-Youl
    • Journal of the Korean Academy of Clinical Electrophysiology
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    • v.5 no.2
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    • pp.11-21
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    • 2007
  • The purpose of this study were to investigate influence of heat stress temperature on sympathetic nerve activities. Subjects were 8 normal adults (4 men, 4 women, 21.36 years old). First sympathetic nerve activities were measured at the point that increase of core temperature stops at the state of applying normal thermic temperature (NIT; $34^{\circ}C$). After measurement, temperature of bathtub was increased to heat stress temperature (HST; $46^{\circ}C$) and sympathetic nerve activities were remeasured at the point that temperature increase stops. Sympathetic skin response (SSR) were analyzed using EMG, IR thermometer, and auto stethoscope. SSR latency showed significant differences at both palms by electrical stimulation to median nerve (p<.05). Electrical stimulation to forehead showed significant difference at left palm (p<.05) and electrical stimulation to navel showed significant difference at right palm (p<.05). Median nerve in changes of SSR amplitude showed significant differences at both palms in HST (p<.01). Electrical stimulation to navel showed significant difference at left palm (p<.05). Ts of forehead and xiphoid process showed significant differences (p<0.01). Tc of oral (p<0.05) and inner ear (p<0.01) showed significant differences. Pulse rate showed significant difference (<0.05). This study showed that immersion in HST had significant decrease of excitability in sympathetic nervous system compared to immersion in NTT.

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The Effects of Transcutaneous Electrical Nerve Stimulation and Microampere Electrical Nerve Stimulation on Sympathetic Tone in Healthy Subjects (경피신경전기자극과 미세전류자극이 정상인의 교감신경 긴장도에 미치는 영향)

  • Park Rae-Joon
    • The Journal of Korean Physical Therapy
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    • v.9 no.1
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    • pp.51-57
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    • 1997
  • The purpose of this study was to determine the effect of two different forms of transcutaneous electrical nerve stimulation(TENS) and one of microcurrent high voltage pulsed galvanic current(HVPC) on sympathetic tone in healthy subjects. Fourty subjects received TENS(20) and PVPC(30) during short time(20min). Left finger tip skin temperatures were measured at four interval for each treatment : 1) before treatment, 2) after 10 minutes treatment, 3)after 20 minutes treatment, and 4) after 10 minutes rest. The results were as follows. 1) TENS treatment group increased skin temperature after treatment 20 minutes, but HVPC treatment increased akin temperature after 10 minutes and recovered normal skin temperature after 10 minutes treatment. It means that short time(20min) electrical stimulation decreased sympathetic activities. 2) Sympathetic activities of TENS stimulation were influenced by age, but HVPC were not. 3) During 10 minutes, both treatment increased sympathetic activities, but HVPC treatment reversed sympathetic activity more rapidly than TENS. 4) The changes of skin temperature means by sex, males in TENS treatment group were higher than females, but HVPC were reverted.

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Influencing of Electrical Stimulation to Cervicothoracic Sympathetic Ganglion on the Temperature Change of Body Surface (경흉교감신경절부의 전기자극의 체표면 체열변화에 미치는 영향)

  • Hwang Tae-Yeun;Park Rae-Joon;Kim Tae-Yul;Kim Yong-Nam
    • The Journal of Korean Physical Therapy
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    • v.12 no.2
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    • pp.121-132
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    • 2000
  • This study was carried out to determine the influencing of electrical stimulation to cervicothoracic sympathetic ganglion(CTSG; stellate ganglion) u the sympathetic tone. For the purpose of this study. the stimulation was given to both the interferential current stimulation(ICS: AMF 100Hz) group consisting of 10 person(males 8, females 2) and the transcutaneous nerve electrical stimulation(TENS: 100 Hz) group of 10(males 7, females 3) in the right side of the trachea with probe electrodes. Then. the temperature changes on the surfaces of the forehead. cheek, neck and internal ear of cephalocervix, which is subject to the influence of the cervicothoracic sympathetic ganglion, and the palm. which is the end of the upper limbs. measured before. immediately alter. 10 minutes after and 20 minutes after experiment. The results are summarized as follows. 1. The emergence of remarkable Horner's symptoms which appear due to the changes of the tone of cervicothoracic sympathetic ganglion was not seen. However, in the interferential current stimulation group there were two felt the sense of warmth in the facial region and one person who felt it in the upper limbs, and in the transcutaneous nerve electrical stimulation group there was each one person who felt the sense of warmth in the facial region and in the upper limbs, respectively. Both groups have each one person who felt the sense of oppression in the eyelids. Three persons of the interferential current stimulation group and two persons of the transcutaneous nerve electrical stimulation group have the sense of hoarse voice or numbness in the neck. These are the symptoms that appeared during stimulation, so it is difficult for them to be considered as the direct effects of the changes of the tone of cervicothoracic sympathetic ganglion. 2. The t-test was performed to determine the significance between the right, which is the experimental side, and the left, which is the non-experimental side. Significance between the right, which is the experimental side, and the left, which is the non-experimental side. Significant changes were seen in the necks of the interferential current stimulation group and in the cheeks and internal ears of the transcutaneous nerve electrical stimulation immediately after experiment(P<.05). And the interferential current stimulation group showed a very high significance in the cheeks immediately after experiment and in the necks ten minutes after experiment(p<.01). Therefore, it could be seen that the electrical stimulation had an influencing on the changes of body temperature of the cephalocervix. 3. In both the interferential current stimulation group and the transcutaneous nerve electrical stimulation group, the forecheads, checks and necks of the cephalocervix in the experimental side(right) rather than the non-experimental side(left) had mostly a statistically significant rise in temperature immediately after experiment. The one-way ANOVA was carried out to determine the temperature change of on the surface of the body with the lapse of time; before, immediately after, ten minutes after and tewenty minutes after experiment. But no statistical significance was found from both the right and left sides.

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Analysis of Vestibuloautonomic Reflex by Heart Rate Variability (심박수 변이도를 이용한 전정자율신경반사의 분석)

  • 오경아;박옥규;김민선;김재효;박병림
    • Proceedings of the Korean Society for Emotion and Sensibility Conference
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    • 1999.03a
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    • pp.243-248
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    • 1999
  • There is substantial evidence that anatomical connections and functional interactions exist between vestibular and autonomic systems. Heart rate variability (HRV) including mean, standard deviation, coefficient of variation (CV), power spectrum was analyzed for evaluation of the physiological role of the vestibular system on control of heart rate in rabbits. In anesthetized rabbits, electrical stimulation of the vagus nerve decreased heart rate and decreased LF/HF by increasing HF. On the cervical sympathetic nerve increased heart rate and increased LF/HF by increasing LF. Atropine, cholinergic blocker, increased heart rate and increased LF/HF by reducing HF, and propranolol, ${\beta}$-adrenergic blocker, decreased heart rate and decreased LF/HF by reducing LF> In unanesthetized rabbits, stimulation of the vestibular system induced by rotation or caloric increased heart rate and increased LF/HF by increasing LF> Also electrical stimulation of the vestibular nerve produced the same of effects as rotation or caloric in anesthetized rabbits. These results suggest that Stimulation of the vestibular system increased heart rate not by inhibiting the parasympathetic nerve but by activating the sympathetic nerve.

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The Effects of Interferential Current Therapy on Sympathetic Nerve System in Senile patients (간섭파가 노인의 교감신경계에 미치는 영향)

  • Park Rae-Joon;Lee Moon-Hwan;Kim Dong Hyeon
    • The Journal of Korean Physical Therapy
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    • v.15 no.2
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    • pp.111-122
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    • 2003
  • The purpose of this study was to investigate the influence on sympathetic nerve system of interferential current therapy(ICT). The subjects were consisted of 20 senile patients, 10 males and 10 females with an average age of 71 years old. And systolic and diastolic blood pressure, temperature, heart rate, and respiratory were tested. The results were as follows: 1) Systolic and diastolic blood pressure were observed a statistical significance between before and during stimulation(p < .05). 2) Temperature was observed a statistical significance between before and during, and before and after 10 minutes stimulation(p < .05). 3) Heart rate and respiratory were not statistical significance(p > .05). These results are imply that electrical stimulation is directly or indirectly influence on sympathetic nerve system.

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Effects of Stimulation of the Chords Tympani and Cervical Sympathetics on the Submaxillary Secretion and Intraluminal Pressure of the Submaxillary Duct in Cats (가묘악하선(家猫顎下腺)에 있어서 고색신경(鼓索神經) 및 경부교감신경자극(頸部交感神經刺戟)이 타액분필(唾液分泌) 및 배설관내압(排泄管內壓)에 미치는 영향(影響))

  • Lee, Jong-Eun
    • The Korean Journal of Physiology
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    • v.11 no.2
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    • pp.51-56
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    • 1977
  • In Nembutal anesthetized cats, the sobmaxillary duct was cannulated with polyethylene tube, and effects of stimulation of the chorda tympani and cervical sympathetics on, the submaxillary secretion and intraluminal pressure of the submaxillary duct were observed. The stimulation of tile chorda tympani elicited a profuse salivary secretion. The stimulation of the cervical sympathetics evoked only a scanty flow, and on repeated stimulation of the nerve salivary flow response gradually diminished and finally the flow ceased. In this state the salivary flow by the sympathetic stimulation was resumed after the stimulation of the chorda tympani. Atropine abolished these responses to nerve stimulation. Intraluminal pressure of the submaxillary duct was abruptly increased and remained on a plateau during the stimulation of the chorda tympani, whereas sympathetic stimulation elicited moderate increase of the intraluminal pressure which did not remain in spite of continued stimulation. These results suggest that scanty salivary flow induced by cervical sympathetic stimulation is not real secretion but simple elimination of the saliva already present in the duct due to contraction of the contractile elements known to exist in the duct wall.

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