• Title/Summary/Keyword: Neural decompression

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Approach for Epiduroscopic Laser Neural Decompression in Case of the Sacral Canal Stenosis

  • Jo, Dae Hyun;Yang, Hun Ju;Kim, Jae Jung
    • The Korean Journal of Pain
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    • v.26 no.4
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    • pp.392-395
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    • 2013
  • Epiduroscopy is very useful in the treatment of not only low back pain caused by failed back surgery syndrome, epidural scar or herniated disc but also by chronic refractory low back pain which does not respond to interventional conservative treatment including fluoroscopically-directed epidural steroid injections and percutaneous adhesiolysis. Because cauterization using a laser fiber has become recently available, a wider opening is required to enter into the sacral canal in the case of epiduroscopic laser neural decompression (ELND). However, in a few patients, it is difficult to insert a device into the epidural space due to stenosis around the opening, and there is no alternative method. Herein, we report a case where a hiatus rasp specially designed for such patients was used to perform the operation.

Occurrence of Trochlear Nerve Palsy after Epiduroscopic Laser Discectomy and Neural Decompression

  • Yoon, Keon Jung;Lee, Eun Ha;Kim, Su Hwa;Noh, Mi Sun
    • The Korean Journal of Pain
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    • v.26 no.2
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    • pp.199-202
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    • 2013
  • Epiduroscopic laser discectomy and neural decompression (ELND) is known as an effective treatment for intractable lumbar pain and radiating pain which develop after lumbar surgery, as well as for herniation of the intervertebral disk and spinal stenosis. However, various complications occur due to the invasiveness of this procedure and epidural adhesion, and rarely, cranial nerve damage can occur due to increased intracranial pressure. Here, the authors report case in which double vision occurred after epiduroscopic laser discectomy and neural decompression in a patient with failed back surgery syndrome (FBSS).

Open Kyphoplasty Combined with Microscopic Decompression for the Osteoporotic Burst Fracture

  • Kim, Seok-Won;Ju, Chang-Il;Lee, Seung-Myung;Shin, Ho
    • Journal of Korean Neurosurgical Society
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    • v.41 no.5
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    • pp.291-294
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    • 2007
  • Objective : The purpose of this retrospective clinical study was to describe a treatment for osteoporotic burst fracture in the setting of severe fractures involving fragmentation of the posterior wall and neural compromise with symptoms of cord compression. Methods : Indication for microscopic decompression and open kyphoplasty were intractable pain at the level of a known osteoporotic burst fractures involving neural compression or posterior wall fragmentation. A total of 18 patients [mean age, 74.6 years] with osteoporotic thoracolumbar burst fractures [3 males, 15 females] were included in this study. In all cases, microscopic decompressive laminectomy was followed by open kyphoplasty. Clinical outcome using VAS score and modified MacNab's grade was assessed on last clinical follow up [mean 6.7 months]. Radiological analysis of sagittal alignment was assessed preoperatively, immediately postoperatively, and at final follow up. Results : One level augmentation and 1.8 level microscopic decompression were performed. Mean blood loss was less than 100 ml and there were no major complications. The mean pain score before operation and at final follow up was 7.2 and 1.9, respectively. Fourteen of 18 patients were graded as excellent and good according to the modified MacNab's criteria. Overall, 6.0 degrees of sagittal correction was obtained at final follow-up. Conclusion : The combined thoracolumbar microscopic decompression and open kyphoplasty for severe osteoporotic fractures involving fragmentation of posterior wall and neural compromise provide direct visualization of neural elements, allowing safe cement augmentation of burst fractures. Decompressive surgery is possible and risk of epidural cement leakage is controlled intraoperatively.

Do Obliquity and Position of the Oblique Lumbar Interbody Fusion Cage Influence the Degree of Indirect Decompression of Foraminal Stenosis?

  • Mahatthanatrakul, Akaworn;Kotheeranurak, Vit;Lin, Guang-Xun;Hur, Jung-Woo;Chung, Ho-Jung;Lokanath, Yadhu K;Pakdeenit, Boonserm;Kim, Jin-Sung
    • Journal of Korean Neurosurgical Society
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    • v.65 no.1
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    • pp.74-83
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    • 2022
  • Objective : Oblique lumbar interbody fusion (OLIF) is a surgical technique that utilizes a large interbody cage to indirectly decompress neural elements. The position of the cage relative to the vertebral body could affect the degree of foraminal decompression. Previous studies determined the position of the cage using plain radiographs, with conflicting results regarding the influence of the position of the cage to the degree of neural foramen decompression. Because of the cage obliquity, computed tomography (CT) has better accuracy than plain radiograph for the measurement of the obliquely inserted cage. The objective of this study is to find the correlation between the position of the OLIF cage with the degree of indirect decompression of foraminal stenosis using CT and magnetic resonance imaging (MRI). Methods : We review imaging of 46 patients who underwent OLIF from L2-L5 for 68 levels. Segmental lordosis (SL) was measured in a plain radiograph. The positions of the cage were measured in CT. Spinal canal cross-sectional area (SCSA), and foraminal crosssectional area (FSCA) measurements using MRI were taken into consideration. Results : Patients' mean age was 69.7 years. SL increases 3.0±5.1 degrees. Significant increases in SCSA (33.3%), FCSA (43.7% on the left and 45.0% on the right foramen) were found (p<0.001). Multiple linear regression analysis shows putting the cage in the more posterior position correlated with more increase of FSCA and decreases SL correction. The position of the cage does not affect the degree of the central spinal canal decompression. Obliquity of the cage does not result in different degrees of foraminal decompression between right and left side neural foramen. Conclusion : Cage position near the posterior part of the vertebral body increases the decompression effect of the neural foramen while putting the cage in the more anterior position correlated with increases SL.

The Usefulness of Intraoperative Myelography during Spinal Surgery (수술중 시행한 척수 조영술의 유용성)

  • Yoon, Sung-Hoon;Yi, Jin-Seok;Jang, Ha-Sung;Lee, Hung-Jin;Yang, Ji-Ho;Lee, Il-Woo;Kang, Joon-Ki
    • Journal of Korean Neurosurgical Society
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    • v.30 no.sup2
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    • pp.322-327
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    • 2001
  • Objectives : There are many kinds of method to evaluate neural decompression during operation. They are direct visual and manual inspection, intraoperative ultrasound, endoscope, intraoperative computed tomography and intraoperative myelography. We used intraoperative myelography to evaluate the proper decompression of neural elements during the decompressive surgery. Methods : We injected 10-20cc of nonionic water-soluble contrast materials through direct puncture site of exposed dura during operation or lower lumbar level or lumbar drain inserted preoperatively. 12 patients were included in this study. They were 7 patients of centrally herniated lumbar disc disease, 1 patient of multiple lumbar spinal stenosis, 2 patients of thoracic extradural tumor and 2 cervical fracture & dislocations. Results : 5 of 12 patients showed remained neural compression through intraoperative myelography, so they were operated further through other approach. Myelographic dye is heavier than CSF, so the dependent side of subarachnoid space was visualized only. In one case, CSF leakage through hemovac was detected, but it was treated only bed rest for 5 days after hemovac removal. Conclusion :Intraoperative myelography is an effective method to evaluate neural decompression during spinal surgery. This technique is easy and familiar to us, neurosurgeons.

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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.

The Comparison of the Result of Epiduroscopic Laser Neural Decompression between FBSS or Not

  • Jo, Dae Hyun;Kim, Eung Don;Oh, Hyun Jin
    • The Korean Journal of Pain
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    • v.27 no.1
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    • pp.63-67
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    • 2014
  • Background: Epiduroscopic laser neural decompression (ELND) has been performed as a treatment tool for chronic refractory low back pain and/or radicular pain. There are some studies about the usefulness of epiduroscopy for post lumbar surgery syndrome, however, few studies about the effectiveness of epiduroscopy for patients without back surgery. We compared the satisfaction of patients who underwent ELND for chronic low back pain and/or radicular pain after back surgery and for the same symptoms without surgery. Methods: We compared the degree of satisfaction of patients after ELND between who had underwent the lumbar spine surgery and who had not retrospectively by chart reviewing. We divided 39 patients who had received ELND into two groups, one is the group of patients who got the lumbar surgery (group 1), and the other is the group of patients who did not (group 2). Their medical records including age, sex, previous treatment, duration of illness, degree of symptom relief were investigated. We compared each items between two groups. Results: The number of patients in group 1 was 17, and group 2 was 22. In group 1, 16 patients (94.1%) showed more than 'Acceptable', and 19 patients (86.4%) showed more than 'Acceptable' in group 2. There is no significant differences statistically in percentage of patients who showed more than 'Acceptable' in the satisfaction after ELND between two groups. Conclusions: ELND provided satisfaction (more than 85%) for patients with chronic low back pain and/or leg pain regardless of previous back surgery history.

The Survey of the Patient Received the Epiduroscopic Laser Neural Decompression

  • Jo, Dae Hyun;Yang, Hun Ju
    • The Korean Journal of Pain
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    • v.26 no.1
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    • pp.27-31
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    • 2013
  • Background: Neuroplasty using a Racz catheter or epiduroscope and percutaneous endoscopic laser discectomy are performed as treatment for chronic refractory low back and/or lower extremity pain, but they are limited in that they cannot completely remove the causing pathology. Lately, epiduroscopic laser neural decompression (ELND) has been receiving attention as an alternative treatment, but there are insufficient reports of results. Hence we aimed to investigate and report the data in our hospital. Methods: Seventy-seven patients were selected who had received ELND via the anterior and posterior epidural approach through the pain clinic in our hospital from March 2011 to July 2012. Their medical records including age, diagnosis, epiduroscopic findings and degree of symptom relief were investigated. The degree of symptom relief following the procedure was categorized into 5 stages of very good (5), good (4), no change (3), bad (2), and very bad (1) at 2 weeks and 1 month after the procedure. Results: The subjects were 30 males and 47 females. Mean age was 54.6 for males and 59.6 for females, so the overall mean age was 58.1 years old, with the youngest being 23 and the oldest 88 years old. In epiduroscopic images of all patients, more than one situation of herniated disc, fibrous tissue and adhesion, or inflammation was observed. Sixty-seven patients (87.0%) showed symptom relief 2 weeks after the procedure and 63 patients (81.8%) showed relief after 1 month. Conclusions: ELND is considered to be an effective treatment alternative for chronic refractory low back and/or lower extremity pain, including lumbar disc herniation, lumbar spinal stenosis, and failed back surgery syndrome which cannot be alleviated with existing non-invasive conservative treatment.

Iatrogenic Vertebral Artery Injury During Anterior Cervical Spine Surgery : Report of Two Cases

  • Lee, Jae-Hyun;Lee, Jung-Kil;Joo, Sung-Pil;Kim, Soo-Han
    • Journal of Korean Neurosurgical Society
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    • v.40 no.6
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    • pp.450-454
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    • 2006
  • The incidence of vertebral artery injury during the anterior approach to the cervical spine is rare, but potentially lethal. The authors describe two cases of vertebral artery injury during anterior cervical decompression surgery. In the first case, infection was the cause of the vertebral artery injury. During aggressive irrigation and pus drainage, massive bleeding was encountered, and intraoperative direct packing with hemostatic agents provided effective control of hemorrhage. Ten days after surgery, sudden neck swelling and mental deterioration occurred because of rebleeding from a pseudoaneurysm. In the second case, the vertebral artery was injured during decompression of cervical spondylosis while drilling the neural foramen. After intraoperative control of bleeding, the patient was referred to our hospital, and a pseudoaneurysm was detected by angiography four days after surgery. Both pseudoaneurysms were successfully occluded by an endovascular technique without any neurological sequelae. Urgent vertebral angiography, following intraoperative control of bleeding by hemostatic compression in cases of vertebral artery injury during anterior cervical decompression, should be performed to avoid life-threatening complications. Prompt recognition of pseudoaneurysm is mandatory, and endovascular treatment can be life saving.

Cervico-Thoracic Intradural Extramedullary Lipoma

  • Jun, Young-Hoon;Kim, Se-Hoon;Kim, Sang-Dae;Lim, Dong-Jun
    • Journal of Korean Neurosurgical Society
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    • v.38 no.4
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    • pp.316-319
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    • 2005
  • A 42-year-old female was admitted with an 11-month history of progressive spastic paraparesis and ataxic gait. Magnetic resonance imaging showed intraspinal space occupying lesion compressing the spinal cord posteriorly, located from C5 to T2 with iso to high signal intensity at T2-weighted images and high signal intensity at T1-weighted images. The patient underwent surgery for decompression of the affected spinal cord because of the progressive neurological deficit. At surgery, the lesion was intradural extramedullary lipoma composed with mature adipose tissue. Partial tumor removal to decompress the neural structures and laminoplasty to avoid postoperative instability and deformity were performed. Postoperatively, she demonstrated improvement in paraparesis and was able to walk without assistance. Though attempts to decrease the size of or even to totally remove a lipoma are not required to achieve satisfactory results and carry considerable risks of surgical morbidity, a careful and limited decompression of the affected spinal cord through a partial removal of the tumor and laminoplasty could result in a significant neurological improvement.