• Title/Summary/Keyword: Animal physical therapy

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The Effects of Electroacupuncture on SNCV and SEP in Acute Hyperglycemia Rats (전침자극이 초기 고혈당 백서의 감각신경전도속도 및 체성감각유발전위에 미치는 영향)

  • Lim, Young-Eun;Jeong, Jeong-Woo;Kim, Tae-Youl
    • Journal of the Korean Academy of Clinical Electrophysiology
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    • v.5 no.2
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    • pp.47-59
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    • 2007
  • The purpose of this study were to investigate the effects of electroacupuncture(EA) on sensory nerve function in acute hyperglycemia rats. Male Sprague-Dawley rats weighing 250~270 g(8 weeks of age) were used in this study, and the induced hyperglycemia rats were produced by intraperitoneal injection of streptozotocin(70 mg/kg body weight). Only animals with blood glucose levels of 300 mg/dl or higher were used in this study. Animal were divided into two groups: the control group and EA group (n=7 in each group). For EA, two stainless-steel needles were inserted into Zusanli (ST36) which is located at the anterior tibial muscle and about 10mm below the knee joint. Pulsed current(2 Hz, 0.3 ms) were applied to the inserted needle for 20 mim. We measured glucose level, weigh, sensory nerve conduction and somatosensory evoked potential(5EP) before and after injecting streptozotocin, 2 weeks, 4 weeks. The change of blood glucose on EA group trended to decrease compared with the control group and there were significant differences(p<0.05). The body weight of the EA group trended to be reduced compared with the control group and there were significant differences(p<0.05). The amplitude of sensory nerve action potential on EA group to increase compared with the control group and there were significant differences(p<0.05). There were no significant differences in SEP. These results suggest that EA has beneficial effect on diabetic neuropathy and this effect may be related in part with prevention of hyperglycemia.

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Effect of Percutaneous Electrical Nerve Stimulation on the Spinal Neuron Excitability in STZ-induced Diabetic Rats. (피하신경전기자극이 STZ-유도 당뇨 쥐의 척수신경원 흥분성에 미치는 효과)

  • Kim, Yang-Ho;Jeong, Jin-Gyu;Kim, Tae-Youl
    • Journal of the Korean Academy of Clinical Electrophysiology
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    • v.2 no.2
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    • pp.13-23
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    • 2004
  • This study aimed at examining the effects of percutaneous electrical nerve stimulation(PENS) applied to different parts of the streptozotocin(STZ) induced diabetic rats on the change of glucose level and spinal neuron excitability. A total of twenty-eight SD rats, divided into four groups, were used as experiment animal. Experiment group I, the normal control group, was composed of normal rats without diabetes induction. Experiment group was composed II of the rats without any treatment after experimental diabetes induction. Experiment group III was composed of the rats with 2 Hz and $200\;{\mu}s$ of PENS to the acupuncture points related with diabetes for 20 minutes after diabetes induction. Experiment group IV was composed of the rats with 2 Hz and $200\;{\mu}s$ of PENS to the parts unrelated with diabetes for 20 minutes after diabetes induction. The results can be summarized as follow: As for glucose level, the group I showed no change within normal range, and the group III showed significant increase, compared with other groups (p<0.05). As for the change of H latency, M and H amplitude, the group III showed significant differences in decrease of latency and amplitude (p<0.05). As for Hmax/Mmax ratio, the normal and other groups showed no significant differences in decrease of amplitude. It can be concluded from the above results that PENS to the acupuncture points of the STZ-induced diabetic rats was effective for spinal neurone excitability, in particular, for those of the group with PENS to the acupuncture points. This study was conducted in the period of acute diabetes induction, and therefore, further study should be conducted in the period of chronic diabetes to research both acute and chronic diabetes.

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The Effect of Motor Skill Training on Motor Function and Cerebellar Development After Alcohol Exposure in Neonatal Rats (운동기술훈련이 태아알코올증후군 흰쥐 모델의 소뇌 발달과 운동기능에 미치는 영향)

  • Koo, Hyun-Mo
    • Physical Therapy Korea
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    • v.16 no.2
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    • pp.50-58
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    • 2009
  • The purpose of this study was to test that motor skill training enhance motor function and cerebellar development. Using an animal model of fetal alcohol syndrome-which equates peak blood alcohol concentrations across developmental period-critifical periods for the effect of alcohol on body and cerebellar weigh was examined. The effect of motor skill training on motor function and cerebellar development of rat exposed alcohol on postnatal days 4 through 10 were studied. Newborn rats were assigned to one of two groups: (1) Control group (CG), via artificial rearing to milk formula and (2) experimental groups (EG), via 4.5g/kg/day of ethanol in a milk solution. After completion of the treatments, the pups were fostered back to lactating dams, and wearing they were raised in standard caged until they were postnatal 48 days. Rats from experimental group of postnatal treatment then spent 10 days in one of two groups: Experimental group II (EGII) was had got motor skill training (training traverse a set of 6 elevated obstacles) for 4 weeks. Experimental group I (EGI) was not trained. Before sacrificing, the rat got examined two behavioral test, body weigh and cerebellar weigh, then coronal sections were processed. The section was investigated the Purkije cell in the cerebellum using light microscope. The results of this study were as follows. 1. In body weight test, the outcome of alcohol groups were significantly lower than the normal group. 2. In cerebellar weight test, the outcome of EGI were significantly lower than CG and EGII. 3. In motor behavioral test, the outcome of EGI was significantly lower than NG and EGII. 4. In Purkinje cells counting test, the outcome of EGI was significantly lower than the NG and EGII. These result suggest that improved motor function induced by motor skill training after postnatal exposure is associated with dynamically altered expression of Purkinje cells and that is related with cerebellar function. Also, these data can potentially serve as a model for therapeutic intervention.

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Effect of electrical stimulation on disused rat soleus (전기자극이 흰쥐의 가자미근 무용성 위축에 미치는 영향)

  • Bae Sung Soo;Park Rae Joon;Kim Jin Sang;Park Sang OK
    • The Journal of Korean Physical Therapy
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    • v.3 no.1
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    • pp.175-188
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    • 1991
  • A study was performed to investigate the effect of electrical stimulation on disused rat soleus muscle, of male rat. The animal's hindlimbs were immobilized 4weeks by plaster of paris, and stimulated with E. S. T for 4weeks (20min/day) The changes on soleus were examined with histochemical, histological, and morphometric method. The results are summarized as follows. 1. Disued atrophy group from immobilization, which margin of sarcolemma and myofibril in sarcoplasm were not cleared, also degenerated from necrosis with phagocytosis. 2. The numbers of nuclear were much increased and accumulation of nuclear were finded, and relatively muscular atrophic changed. 3. Increased inflammatory cyte, also finded neutrophil and macrophage. 4. Relatively atrophic changed from severe fibrosis by incleased connectivetissue. 5. The glycogen granules were much decreased in E. S. T group. It means that electrical stimulation effected the muscle exercise. 6, The activity of the NADH-TR reaction of E. S. T. Tgroup were white muscle group are transformed into red muscle fiber than normal group. 7. These results indicate that the electrical stimulation effected to soleus also prevention and delayed muscular atrophy.

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Effects of Red Ginseng on Exercise Capacity and Peripheral Fatigue in Mice

  • Kim, Daehyun;Lee, Byounggwan;Kim, Heejin;Kim, Mikyung
    • Physical Therapy Rehabilitation Science
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    • v.10 no.2
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    • pp.175-184
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    • 2021
  • Objective: Fatigue can decrease both quality of life and work efficiency. Ginseng is one of the most popular herbal treatments for improving personal health, with applications in treating fatigue. However, the exact mechanisms of anti-fatigue effects are still unclear. Thus, we investigated the effect of red ginseng powder (RGP) on exercise capacity and peripheral fatigue using both behavioral and molecular experiments in mice. Design: Four-groups behavioral and molecular experiment. Methods: Male 6-weeks-old ICR mice were treated with distilled water, 100, and 200 mg/kg RGP for 5 days via oral administration. The exercise capacity of each animal group was measured by locomotor activity, rota-rod, hanging wire, and cold swimming tests. Additionally, after performing the treadmill to induce fatigue, lactate expression and molecular experiments were investigated using mice gastrocnemius. Results: Mice treated with RGP exhibited increased exercise capacity in the behavioral tests. Additionally, RGP induced a dose-dependent decrease in lactate levels after high-intensity exercise, and Monocarboxylate transporter (MCT) 4 expression increased in groups treated with RGP. However, there was no significant change in MCT1. Conclusions: These results suggest that RGP exerts several anti-fatigue properties by lower lactate and improved exercise capacity. Increased MCT4 expression may also affect lactate transport. Thus, this study suggests that the anti-fatigue properties of RGP might be associated with MCT4 activity.

Effect of Low-Intensity Ultrasound on Bone Growth (저강도 초음파치료의 골절치유 효과)

  • Yi, Chung-Hwi;Kim, Jong-Man;Hwang, Tae-Sun
    • Physical Therapy Korea
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    • v.5 no.3
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    • pp.34-41
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    • 1998
  • Noninvasive low intensity ultrasound has been shown to be an effective means of accelerating bone fracture repair in both animal and clinical studies. The effects of ultrasound stimulation on bone repair after fibular osteotomy were assessed in a rabbit fibular fracture model. Bilateral closed fibular fractures were made in skeletally mature male White Japanese rabbits. In this study, 24 subjects were randomly divided into 2 groups: experimental group 1 (n=12), and experimental group 2 (n=12). Experimental group 1 received 0.875 MHz continuous ultrasound and Experimental group 2 was treated with 3 MHz continuous u1trasound. The ultrasound intensity was 50 $mW/cm^2$ and treatment time was 10 minutes for every session in both groups. In each rabbit, one fibula served as a control and the other was subjected to ultrasound treatment 5 times per week for 3 weeks. After 3 weeks, rabbits were sacrificed and the ratios of the area between the trabeculae and bone marrow of the fibulae were calculated. At the end of the experimental period, 14 of the 24 rabbits were excluded due to complications from surgery or inadequate fracture status for this study. There was no statistically significant difference in the trabeculae area between experimental leg and control leg in experimental group 1 and experimental group 2 (p>0.05). And there was also no statistic-statistically significant difference between experimental group 1 and experimental group 2 according to ultrasound treatment frequencies, 0.875 MHz and 3 MHz (p>0.05). These data suggest that in Japanese white rabbits, low intensity ultrasound stimulation does not facilitate fracture repair nor is there any difference in fracture repair results between ultrasound frequencies, 0.875 MHz and 3 MHz.

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Effect of Horse Riding on Balancing Ability in Children with Cerebral Palsy

  • Kang, Ok-Deuk;Kang, Min-Soo;Kang, An-Na
    • Journal of Animal Science and Technology
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    • v.54 no.3
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    • pp.227-231
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    • 2012
  • This study was conducted to investigate the effect of a horse riding program on balancing ability in children with cerebral palsy. Eleven children (five males and six females) diagnosed with cerebral palsy participated. The horse riding exercises (walking and trotting) were conducted twice per week for 30 minutes during 24 weeks. Balancing ability was measured three times at pre, mid, and post-test using an air pad by the same physical therapist. The data were analyzed using a two-way repeated-measures analysis of covariance with time (0, 12, and 24 weeks) using SPSS version 18.0. A comparison of horse riding between patients with hemiplegia and paraplegia was conducted with the Willcoxon signed-ranktest at a predetermined probability rate of 5%. The results showed a significant increase in balancing ability after horse riding than that before horse riding (p<0.01). The average balancing score increased greater in males ($54.59{\pm}84.05$) than that in females ($27.84{\pm}12.67$) after the horse riding exercise program compared to that before the program (p < 0.05). Thus, horse riding exercise was considered an effective to improve balance in children with cerebral palsy. These results provide useful basic data for horse riding for the disabled.

The Effects of Transcutaneous Electrical Nerve Stimulation (TENS) on the Neuropathic Pain in Peripheral Nerve Injury (말초신경 손상에 의한 신경병증성 통증에 TENS가 미치는 효과)

  • Lee, Soon-Hyun;Song, Chang-Ho
    • Journal of the Korean Society of Physical Medicine
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    • v.8 no.1
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    • pp.79-89
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    • 2013
  • PURPOSE: To identify the effects of single trial transcutaneous electrical nerve stimulation (TENS) application on chronic neuropathic pain and the repeated TENS application to development of neuropathic pain following peripheral nerve injury. METHODS: First, 20 rats were given the median nerve ligation to induce chronic neuropathic pain. After the ligation, neuropathic pain was assessed by measuring the forepaws withdrawal threshold to von Frey filaments for 3 weeks. Afterward, rats were randomly divided into TENS group and placebo-TENS group. TENS (frequency 100Hz, pulse width $200{\mu}s$) was applied to the forearm for 20 minutes. Second, 34 rats were randomly allocated into two group after median nerve ligation: TENS group and placebo-TENS group. Both interventions were applied to the forearm for 20 minutes from 1 day to 3 weeks after injury. Neuropathic pain to mechanical was measured on each rat for 3 weeks. RESULTS: Exeprimental rats showed a clear neuropathic pain-like behaviors, such as reduced forepaw withdrawal threshold to mechanical stimulation for 3 weeks, after median nerve ligation. And, TENS decreased effectively the chronic neuropathic pain originated from median nerve injury. TENS also diminished the development of neuropathic pain after nerve injury. CONCLUSION: Our animal model studying for neuropathic pain following median nerve injury may be useful to investigate peripheral neuropathic pain in human. Also, TENS may be used to mediate chronic neuropathic pain and to prevent the development of neuropathic pain following median nerve injury.

Mineralized Undifferentiated Duodenal Carcinoma in a Shih-Tzu Dog

  • Lee, Jiyeong;An, Soyon;Hwang, Gunha;Go, Woohyun;Lee, Jong-Bong;Noh, Seul Ah;Lee, Dongbin;Song, Joong-Hyun;Hwang, Tae Sung;Lee, Hee Chun
    • Journal of Veterinary Clinics
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    • v.39 no.5
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    • pp.258-263
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    • 2022
  • An eight-year-old, intact female, Shih-Tzu, weighing 4.5 kg presented with complaints of anorexia, pale mucous membrane, and vomiting for the past 5 days. On physical examination, nausea, abdominal pain, and melena were noted. On hematologic examination, severe anemia and thrombocytosis were identified. On radiographs examination, soft tissue opacity with small faint mineral opacity mass in the mid-abdomen and two mineral opacity regions in the cranial aspect of mass were identified. Ultrasonographic findings showed thickening of descending duodenal wall with loss of layering and mineralization within the duodenal wall and mesentery adjacent to the duodenal lesion. Computerized tomography showed circumferential wall thickening of descending duodenum with mineralization. Mineralization of the mesentery and mesenteric lymph nodes was identified. Based on the diagnostic imaging, the tentative diagnosis was descending duodenal tumor with dystrophic mineralization. Endoscopy revealed mucosal hemorrhage and erythema within the descending duodenum and stomach. Surgery was performed, and mineralization in the pancreatic tail to duodenum and mesentery was found. Resection of the duodenum, regional lymph node, and mineralized pancreatic region and the duodenal anastomosis were performed. The histologic examination revealed a high-grade undifferentiated duodenal carcinoma with metastases to the regional lymph node and mesentery. The patient was managed with supportive therapy for 8 days and discharged. The patient was followed up for 5 months and there were no complications.

Effects of Sleep on Balance Control and Reaction Time to Visual Stimuli (수면이 균형조절과 시각적 자극 반응시간에 미치는 영향)

  • Park, Sookyoung;Park, Jung-A;Park, Kanghui;Kim, Joo-Heon;Hong, Yonggeun
    • Sleep Medicine and Psychophysiology
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    • v.23 no.2
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    • pp.68-76
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    • 2016
  • Objectives: To find evidence that sleep is necessary for normal brain function, thus indicating that declines in both sleep quality and quantity are related to worse performance of many daily tasks and deteriorated physical functions. The present study investigates the relationships of balance control and reaction time with sleep quality. Methods: 58 healthy (male 20, female 38) volunteers with informed consent participated in this study. The Self-reported Pittsburgh Sleep Quality Index (PSQI) was used to evaluate sleep quality and relevant factors, and the subjects were divided into groups A (PSQI < 5) and B ($PSQI{\geq}5$) based on this index. Static balance control and reaction time to visual stimuli were conducted to assess their relationship with sleep quality. Results: Group B exhibited excessive daytime sleepiness significantly more often compared to group A. Static balance control did not markedly change relative to sleep quality, but reaction time and error to visual stimuli were significantly increased in group B compared to group A. Conclusion: These findings indicate that a decline in sleep quality can result in delayed reactions, as well as decreased accuracy of these reactions. They also suggest that low sleep quality may be associated with changes in physical functions, including balance control through reduced selective attention.