• Title/Summary/Keyword: Nerve root

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Analysis of Patients with Mandibular Nerve Damage after Root Canal Therapy (근관치료 후 발생한 하악신경 손상 환자에 대한 분석)

  • Lee, Ji-Soo;Song, Ji-Hee;Kim, Young-Gun;Kim, Seong-Taek
    • Journal of Dental Rehabilitation and Applied Science
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    • v.27 no.3
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    • pp.327-336
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    • 2011
  • Reported causes of mandibular nerve injury in relation to neuropathic pain in dentistry include extraction, dental implant surgery, oral and maxillofacial surgery, periodontal treatment, and root-canal therapy. This study analyzed the characteristics of pharmacologic management of neuropathy after root-canal therapy. 32 patients who complain of abnormal sensation or pain after root-canal therapy and were referred to Department of Oral Medicine and the Temporomandibular Joint and Orofacial Pain Clinic at the Dental Hospital of Yonsei University, Seoul, Korea from 2004 to 2011 enrolled in this analysis and improvement of symptom was evaluated after pharmacologic management. Thirty-two patients who had hypoesthesia or dysesthesia at the initial visit were analyzed(9 men, 23 women; mean age: 44 years). The causes of neuropathy were local anesthesia(46.9%), chemical trauma from the sealant in root-canal(25%), endodontic surgery(15.6%), and unknown causes(12.5%). Medications such as steroids, anticonvulsants, antidepressants, and analgesics were took for improvement of symptoms and titrated for a variety of period from 1 week to 11 months. It was found that neuropathy of the inferior alveolar nerve and the lingual nerve was in 25 and 7 patients. The improvement of neurosensory disturbance and no improvement after pharmacotherapy was in 21(66%) and 11(34%) patients respectively. The hypoesthesia and dysesthesia was improved 67% and 65% respectively. These results suggest that symptomatic improvement by pharmacologic management can be possible in patients with neuropathy after root-canal therapy. But improvement of symptoms was influenced by the causes and degree of nerve injury, the periods of pharmacotherapy, and the choice of treatment methods. So, further investigation is needed by quantitative measurement of more variables in more individuals.

Treatment of Nerve Root Injury during Cervical Epidural Block -A case report- (경부 경막외 블록 중 발생한 신경근 손상 치료경험 -증례 보고-)

  • Kim, Won-Hong
    • The Korean Journal of Pain
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    • v.14 no.1
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    • pp.123-125
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    • 2001
  • A 50-year-old female patient developed severe right neck and upper extremity pain, hyperesthesia and allodynia during cervical epidural block. Her pain was diagnosed as neuropathic nature. She was treated with repeated stellate ganglion block (SGB) and electrical stimulation (EST). After 3 weeks of treatment, symptomatic relief was achieved, but a mild degree of hyperesthesia and motor weakness was remained. However, she refused all treatment. So treatment was stopped. In a follow-up done, 15 weeks after the nerve injury, she had recovered without complications.

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Rt $S_1$ Root Block during Rt $L_5$ Root Block in the Lumbar Radiculopathy (요부 신경질환에서 우측 $L_5$ 신경근 차단시 보여진 우측 $S_1$ 신경근 차단)

  • Kim, Jong-Lul;Yoon, Keon-Jung;Kang, Jun-Goo;Kim, Kyung-Hee;Lim, Chung-Hyuck;Lee, Myung-Woo;Park, Kyu-Ho;Choi, Hae-Sung
    • The Korean Journal of Pain
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    • v.11 no.2
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    • pp.307-310
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    • 1998
  • Selective lumbosacral radiculography and nerve root block techniques are very useful in determining the nerve root involved. We have done the lumbar root block to 61-year-old female who had suffered from low back pain radiating to right lower leg which was not relieved by epidural steroid injection two times. $L_5$ root block was performed under the fluoroscopic C-arm guide. When the needle was in correct position, we injected contrast medium (Isovist$^{(R)}$ - 300, Schering, Germany). After we injected 1.5 cc isovist, the S1 root was figured but L5 root was not figured. When we reinjected 1.5 cc isovist, $S_1$ root was enhanced and $L_5$ root was slightly visible due to severe disc bulging and lateral spinal stenosis.

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Nerve Root Block with Corticosteroids, Hyaluronidase, and Local Anesthetic in the Failed Back Surgery Syndrome (FBSS) (Failed Back Surgery Syndrome (FBSS) 환자에서 Hyaluronidase를 사용한 신경근차단술의 효과)

  • Lee, Kyung-Jin;Han, Sang-Gun;Yoon, Seuk-Hwan;Kim, Jin-Soo;Lee, Young-Suk
    • The Korean Journal of Pain
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    • v.12 no.2
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    • pp.191-194
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    • 1999
  • Background: Millions of patients with chronic sciatica are still treated with epidural corticosteroids. The efficacy of epidural corticosteroids remains questionable, especially in the failed back surgery syndrome (FBSS). We studied to evaluate outcome for 10 patients with failed back surgery syndrome treated with spinal nerve root block using corticosteroids, hyaluronidase, and local anesthetics. Methods: The affected nerve roots are localized with the help of fluoroscopy and contrast dye. Local anesthetic diluted in 1,500 U hyaluronidase and 40 mg methylprednisolone is injected. A small retrospective pilot group of 10 patients with FBSS was treated. The success rate is evaluated using a visual analogue scale at 1 week and 3 month interval after the last injection. Results: Initially, 7 patients experienced good pain relief; 5 patients suspained pain relief for 3 months. No complications were observed. Conclusions: This technique is worthwhile for patients with FBSS and where epidural fibrosis is suspected to be the pain origin.

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Intraoperative Neurophysiological Monitoring during Microvascular Decompression Surgery for Hemifacial Spasm

  • Park, Sang-Ku;Joo, Byung-Euk;Park, Kwan
    • Journal of Korean Neurosurgical Society
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    • v.62 no.4
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    • pp.367-375
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    • 2019
  • Hemifacial spasm (HFS) is due to the vascular compression of the facial nerve at its root exit zone (REZ). Microvascular decompression (MVD) of the facial nerve near the REZ is an effective treatment for HFS. In MVD for HFS, intraoperative neurophysiological monitoring (INM) has two purposes. The first purpose is to prevent injury to neural structures such as the vestibulocochlear nerve and facial nerve during MVD surgery, which is possible through INM of brainstem auditory evoked potential and facial nerve electromyography (EMG). The second purpose is the unique feature of MVD for HFS, which is to assess and optimize the effectiveness of the vascular decompression. The purpose is achieved mainly through monitoring of abnormal facial nerve EMG that is called as lateral spread response (LSR) and is also partially possible through Z-L response, facial F-wave, and facial motor evoked potentials. Based on the information regarding INM mentioned above, MVD for HFS can be considered as a more safe and effective treatment.

Effect of Vagus Nerve Electrical Stimulation to Cortisol Level Control and Heart Rate Variability(HRV) - Pilot Study (미주신경 전기자극이 심박변이도와 스트레스호르몬 분비에 미치는 효과 - 파일럿 연구)

  • Moon, Hyunju;Cho, Sunghak
    • Journal of The Korean Society of Integrative Medicine
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    • v.6 no.3
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    • pp.11-16
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    • 2018
  • Purpose: Stress tends to cause sympathetic hyperactivity and increase blood cortisol levels. The vagus nerve is a parasympathetic nerve that is involved in relaxing the body. The purpose of this study was to investigate the effects of electrical stimulation of the vagus nerve on stress hormone (cortisol) levels and heart rate variability (HRV) in humans. Methods: A total of 10 healthy subjects participated in the pilot experiment. All subjects underwent electrical vagus nerve stimulation for 20 minutes in the cymba conchae of the left ear. An electro cardiogram meter was used to measure HRV. Blood samples were collected and analyzed for cortisol levels. The standard deviation of all normal N-N intervals (SDNN), root mean square of successive differences (RMSSD), low frequency, high frequency, and cortisol levels were compared in pre and post mean values after the intervention. Data were analyzed using the Wilcoxon's signed-rank test. Results: Coritsol levels were observed to decrease after vagus nerve electrical stimulation. The mean SDNN and RMSSD values were increased after the intervention, but not significantly. Conclusion: Vagus nerve electrical stimulation has been shown to increase the ability of the parasympathetic nerve to adapt to upward regulation and stress. Vagus nerve electrical stimulation could thus be an effective treatment for modern social psychological stress control.

New Methods of Vagus Nerve Stimulation : Therapeutic Effects of Non-Invasive Vagus Nerve Stimulation by TENS Application (미주신경 자극을 위한 새로운 방법 : 비침습적 TENS 적용에 대한 미주신경 자극의 치료적 효과)

  • Kwon, Haeyeon;Moon, Hyunju
    • Journal of The Korean Society of Integrative Medicine
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    • v.4 no.4
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    • pp.77-82
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    • 2016
  • Purpose: The purpose of this study was to investigate the therapeutic effect of non-invasive vagus nerve stimulation by transcutaneous electrical nerve stimulation application on the autonomic nervous system of human body. Methods: Participants were seventeen healthy adults. Standard deviation of all normal N-N intervals(SDNN), root mean square of successive differences(RMSSD), low frequency(LF), high frequency(HF) were compared in pre and post Mean values after intervention. Data were analyzed in Wilcoxon's signed-ranks test. Results: The results of this study is that sistolic blood pressure and pulse rate decreased mean value after non-invasive vagus nerve stimulation by transcutaneous electrical nerve stimulation. High frequency, low frequency, SDNN, RMSSD increased mean value in heart rate variability after intervention. But that is not significant except for SDNN. Conclusion: Non-invasive vagus stimulation by transcutaneous electrical nerve stimulation effect on parasympathetic nerve stimulation, and then it might be effective method for autonomic nerve balance control.

Persistent Hiccups Treatment with Cervical Epidural Block -Case reports- (경부 경막외 차단을 이용한 연속성 딸꾹질의 치험 3예 -증례 보고-)

  • Lee, Ji-Hyang;Kim, Jong-Il;Min, Byung-Woo
    • The Korean Journal of Pain
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    • v.10 no.2
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    • pp.241-245
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    • 1997
  • Persistent hiccup is defined as duration lasting longer than 48 hours. Reflex arc of hiccup is divided into three parts : afferent, central, efferent. Afferent portion of the neural pathway of hiccup formation is composed of vagus nerve, phrenic nerve, and sympathetic chain arising from T6 to T12. Efferent limb is phrenic nerve. Hiccup center is located in brain stem, midbrain, reticular system and hypothalamus. Persistent hiccup is very difficult to treat by conventional methods. We performed cervical epidural block of the phrenic nerve root for three patients suffering from persistent hiccup. The therapeutic effect was perfect. The mechanism of the cervical epidural block is not yet defined however it is thought to block the efferent nerve fibers and suppress the reflex arc of hiccup. We conclude cervical epidural block is relatively safe and very effective for treating persistent hiccup.

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