• Title/Summary/Keyword: Vertebral Body

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Total Body Replacement with an Expandable Cage after en Bloc Lumbar Spondylectomy

  • Shin, Dong-Ah;Kim, Keung-Nyun;Shin, Hyun-Chul;Yoon, Do-Heum
    • Journal of Korean Neurosurgical Society
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    • v.40 no.6
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    • pp.471-475
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    • 2006
  • Complete vertebral tumor resection is important in order to prevent local recurrence. Among the available techniques for total spondylectomy, the total en bloc spondylectomy has been accepted as the most sophisticated one. After a total en bloc spondylectomy, anterior and posterior column reconstruction is mandatory in order to achieve stability. We experienced the usefulness of an expandable cage for anterior column reconstruction especially in this surgery. The chance of cutting the nerve root and damaging the spinal cord is minimized because the size of the expandable cage is initially small enough to be inserted into the anterior column. The technical details of total vertebral body replacement with an expandable cage after an en bloc lumbar spondylectomy are described herein.

Biomechanical Analysis of the Artificial Discs (인공디스크에 대한 생체역학적 분석)

  • Kim Young-Eun;Yun Sang-Seok;Jung Sang-Ki
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2005.06a
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    • pp.907-910
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    • 2005
  • Although several artificial disc designs have been developed for the treatment of discogenic low back pain, biomechanical change with its implantation was rarely studied. To evaluate the effect of artificial disc implantation on the biomechanics of functional spinal unit, nonlinear three-dimensional finite element model of L4-L5 was developed with 1-mm CT scan data. Two models implanted with artificial discs, SB $Charit\acute{e}$ or Prodisc, via anterior approach were also developed. The implanted model predictions were compared with that of intact model. Angular motion of vertebral body, force on spinal ligaments and facet joint, and the stress distribution of vertebral endplate for flexion-extension, lateral bending, and axial rotation with a compressive preload of 400 N were compared. The implanted model showed increased flexion-extension range of motion and increased force in the vertically oriented ligaments, such as ligamentum flavum, supraspinous ligament and interspinous ligament. The increase of facet contact force on extension were greater in implanted models. The incresed stress distribution on vertebral endplate for implanted cases indicated that additinal bone growth around vertebral body and this is matched well with clinical observation. With axial rotation moment, relatively less axial rotation were observed in SB $Charit\acute{e}$ model than in ProDisc model.

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Development of a Special Program for Automatic Generation of Scoliotic Spine FE Model with a Normal Spine Model (정상 척추체 모델을 이용한 척추측만증 모델 자동 생성 프로그램 개발)

  • Ryu Han-Kyu;Kim Young-Eun
    • Journal of the Korean Society for Precision Engineering
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    • v.23 no.3 s.180
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    • pp.187-194
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    • 2006
  • Unexpected postoperative changes, such as growth in rib hump and shoulder unbalance, have been occasionally reported after corrective surgery for scoliosis. However there has been neither experimental data fer explanation of these changes, nor the suggestion of optimal correction method. Therefore, the numerical study was designed to investigate the post-operative changes of vertebral rotation and rib cage deformation after the corrective surgery of scoliosis. A mathematical finite element model of normal spine including rib cage, sternum, both clavicles, and pelvis was developed with anatomical details. In this study, we also developed a special program which could convert a normal spine model to a desired scoliotic spine model automatically. A personalized skeletal deformity of scoliosis model was reconstructed with X-ray images of a scoliosis patient from the normal spine structures and rib cage model. The geometric mapping was performed by translating and rotating the spinal column with an amount analyzed from the digitized 12 built-in coordinate axes in each vertebral image. By utilizing this program, problems generated in mapping procedure such as facet joint overlapping, vertebral body deformity could be automatically resolved.

A Comprehensive Anatomical Approach to Low Back Pain (요통의 해부학적 고찰)

  • Kim Yoing-Su
    • The Journal of Korean Physical Therapy
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    • v.10 no.2
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    • pp.149-159
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    • 1998
  • Normal lumbar vertebrae function only when soft tissues are in position, constituting vertebral body, discs and facet feints. Considering the mechanism of supporting bodily weight, the widest movement of vertebral column reaches a lumbar sacral joint to cause structural changes. The feet is proved that lumbago is the damage of lumbar vertebrae accompanied with the change of soft tissues surrounding lumbar vertebrae, rather than simple pain in a certain lesion. It is based on the mechanism of vertebral body and intervertebral discs in the anatomical structure of the lumbar region. In my opinion, it is necessary to prove more accurately the cause of lumbago, escaping from the conventional cause of the abnormality of disc.

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Charcot Spinal Arthropathy with Extensive Vertebral Body Destruction and Cerebrospinal Fluid Collection: A Case Report Mimicking Infective Spondylitis (척추체의 광범위한 파괴와 뇌척수액 축적이 동반된 샤르코 척추 관절병증: 감염성 척추염과 유사한 소견을 보이는 증례보고)

  • Cho, Kyu-Jung;Kim, Yeo-Ju;Kim, Young-Tae;Youn, Yung-Hun
    • Journal of the Korean Orthopaedic Association
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    • v.55 no.4
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    • pp.348-353
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    • 2020
  • A 68-year-old man presented with a bed sore with pus discharge on lower back. Radiographs showed extensive destruction of the L4 vertebral body. Magnetic resonance imaging (MRI) showed fluid collection with an enhanced wall at the defect of the L4 vertebral body extending into both psoas muscles. The primary diagnosis was neuropathic spondylopathy, but infective spondylitis was not ruled out. Initially, he was treated with antibiotics for two weeks. A follow-up MRI showed no improvement of the abscess, so surgical exploration was done. Charcot spinal arthropathy resulted in extensive vertebral body destruction that may be similar to infectious spondylitis, particularly in the case with fluid accumulation due to rupture of dura.

Analysis of Bone-Remodeling Process Using Quasi-molecular Dynamics (요추 추체의 골 -재형성에 대한 준분자 동력학적 접근 방법)

  • 김영은;최훈희
    • Journal of Biomedical Engineering Research
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    • v.24 no.5
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    • pp.447-451
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    • 2003
  • A new method for analyzing the bone-remodeling process using quasi-molecular dynamics was proposed in this study. The effect of pressure due to bone marrow, which could not be considered in previous methods, was also considered in this method. Bone-remodeling response of the 2D vertebral body of lumbar spine to a uniaxial compressive displacement of 1.8564mm. corresponding to approximately 2kN of compressive load, was studied. Converged shape change of the cortical shell and rearrangement of cancellous bone structure matched well with a normal shape of the vertebral body. The calculated responses in the spinal elements also shows closed results compared with experimental results.

Biomechanical Evaluation of PMMA Injection in Vertebroplasty (척추성형술 시술에서 PMMA주입에 대한 흉추의 생체역학적 평가)

  • 이준형;채수원;이태수;서중근;박정율;김상돈;이관행
    • Journal of Biomedical Engineering Research
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    • v.25 no.1
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    • pp.27-32
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    • 2004
  • In this study, method of PMMA injection is suggested for vertebroplasty in patients with osteoporotic compression fracture. The finite element analysis is used to investigate the vertebroplasty quantitatively. In order to improve previous works with simplified geometry of vertebral body more exact geometry has been constructed from CT image data with 1m thickness. An ideal method of PMMA delivery, with respect to location and amount of injectate, into vertebral body has been suggested based on evaluation of the insert positions and the insert shapes of injected PMMA. It is shown that vertebral body can be compensated most efficiently when PVIMA is highly concentrated on the top-front of trabecular bone of compressed vertebra.

Vertebral Artery Injury during Anterior Cervical Spine Surgery : Report of Two Cases (전방경추수술중 추골동맥 손상 : 2예 보고)

  • Lee, Dong Girl;Rhim, Seung Chul;Roh, Sung Woo;Im, Su Bin;Kwon, Yang;Kwun, Byung Duk
    • Journal of Korean Neurosurgical Society
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    • v.30 no.2
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    • pp.231-238
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    • 2001
  • Vertebral artery injury is a rare complication of anterior cervical approach. We report two patients who suffered injury to vertebral artery during anterior cervical spine surgery. The mechanism of injury, their operative management, and the subsequent outcome were assessed and relevant literatures reviewed. The awareness of the possibility of vertebral artery injury is most important to prevent and it's occurrence is best avoided by a thorough understanding of the anatomical relationships of the artery, the spinal canal, and the vertebral body and careful use of surgical instruments.

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The Inaccuracy of Surface Landmarks for the Anterior Approach to the Cervical Spine in Southern Chinese Patients

  • Ko, Tin Sui;Tse, Michael Siu Hei;Wong, Kam Kwong;Wong, Wing Cheung
    • Asian Spine Journal
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    • v.12 no.6
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    • pp.1123-1126
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    • 2018
  • Study Design: Observational study. Purpose: To assess the correlational accuracy between the traditional anatomic landmarks of the neck and their corresponding vertebral levels in Southern Chinese patients. Overview of Literature: Recent studies have demonstrated discrepancies between traditional anatomic landmarks of the neck and their corresponding cervical vertebra. Methods: The center of the body of the hyoid bone, the upper limit of the lamina of the thyroid cartilage, and the lower limit of the cricoid cartilage were selected as representative surface landmarks for this investigation. The corresponding vertebral levels in 78 patients were assessed using computed tomography. Results: In both male and female patients, almost none of the anatomical landmarks demonstrated greater than 50% correlation with any vertebral level. The most commonly corresponding vertebra of the hyoid bone, the lamina of the thyroid cartilage, and the cricoid cartilage were the C4 (47.5%), C5 (35.9%), and C7 (42.3%), respectively, which were all different from the classic descriptions in textbooks. The vertebral levels corresponding with the thyroid and cricoid cartilage were significantly different between genders. Conclusions: The surface landmarks of the neck were not accurate enough to be used as the sole determinant of vertebral levels or incision sites. Intra-operative fluoroscopy is necessary to accurately locate each of the cervical vertebral levels.

The Value of Preoperative MRI and Bone Scan in Percutaneous Vertebroplasty for Osteoporotic Vertebral Compression Fractures (골다공증성 척추체 압박골절에 대한 경피적 척추성형술시 자기공명영상과 골 주사 검사의 의의)

  • Kim, Se Hyuk;Lee, Wan Su;Seo, Eui Kyo;Shin, Yong Sam;Zhang, Ho Yeol;Jeon, Pyoung
    • Journal of Korean Neurosurgical Society
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    • v.30 no.7
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    • pp.907-915
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    • 2001
  • Objective : Percutaneous vertebroplasty is often complicated by the presence of multiple fractures or non-localizing pain in the patients with osteoporotic vertebral fractures. The purpose of this study is to estimate the value of preoperative radiologic studies in the localization of symptomatic vertebrae and to determine the factors which can influence on the clinical results. Materials and Methods : We retrospectively reviewed the clinical and radiologic data of 57 vertebrae in 30 patients underwent percutaneous vertebroplasty for osteoporotic vertebral compression fractures. Inclusion criteria was severe pain(McGill-Melzack score 3, 4 or 5) associated with the acute vertebral fractures and absence of spinal nerve root or cord compression sign. Acute symptomatic vertebral fracture was determined by the presence of signal change on MR images or increased uptake on whole body bone scan. Results : Pain improvement was obtained immediately in all patients and favorable result was sustained in 26 patients(86.7%) during the mean follow-up duration of 4.7 months(5 complete pain relief, 21 marked pain relief). Those who underwent vertebroplasty for all acute symptomatic vertebrae had significantly better clinical result than those who did not. Further vertebral collapse and eventual bursting fracture occurred in 1 vertebra which showed intradiskal leakage of bone cement and disruption of cortical endplate on postoperative CT scan. Conclusion : Preoperative MR imaging and whole body bone scan are very useful in determining the symptomatic vertebrae, especially in the patients with multiple osteoporotic vertebral fractures. To obtain favorable clinical result, the careful radiologic evaluation as well as clinical assessment is required. Control of PMMA volume seems to be the most critical point for avoiding complications.

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