• 제목/요약/키워드: cortical trajectory bone screw

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요추부 협착에서의 피질골 궤도 나사못 고정의 초기 실패 사례에 대한 고찰 (Early Failure of Cortical-Bone Screw Fixation in the Lumbar Spinal Stenosis)

  • 권지원;김진규;하중원;문성환;이환모;박융
    • 대한정형외과학회지
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    • 제55권5호
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    • pp.405-410
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    • 2020
  • 목적: 퇴행성 요추부 척추 질환에 대한 수술적 치료로 척추 경 나사못(pedicle screw) 삽입술이 전통적으로 사용되어왔다. 이에 대한 대안으로 제시된 피질골 궤도 나사못(cortical-bone trajectory screw)은 덜 침습적인 후방 요추부 고정이 가능한 점과 몇몇의 생체 역학 연구에서 보고한 우수한 기계적 안정성을 장점으로 가지고 있다. 본 연구의 목적은 후방 감압술 후 후방 고정술 및 유합을 시행한 환자에 있어 피질골 궤도 나사못 고정술의 초기 실패에 관한 사례의 임상적 및 방사선적 결과를 알아보고자 함에 있다. 대상 및 방법: 요추의 퇴행성 척추 협착 및 척추 전방 전위에 대한 전통적인 척추 경 나사못 고정을 대안하여 피질골 궤도 나사못을 사용하여 2013년부터 2018년까지 수술적 치료를 시행한 311명의 환자를 대상으로 하였다. 수술 후 조기 고정 실패는 수술 후 6개월째, 외래 추시에서 시행한 컴퓨터 단층촬영(computed tomography) 및 방사선 사진상 나사못의 이완, 이탈 및 파손과 같은 고정 실패가 일어날 시로 정의하였다. 결과: 조기 고정 실패는 311예 중 46예(14.8%), 나사못 이완이 46예(14.8%), 이탈이 12예(3.9%), 파손이 4예(1.3%)에서 발생하였다. 해당 고정 실패가 일어난 부위 분석 시, L1이 7예(15.2%), L2가 3예(6.5%), L3가 4예(8.7%), L4가 4예(8.7%), L5가 4예(8.7%), 그리고 S1이 24예(52.2%)였다. 주로 말단 피질골 궤도 나사못 중에서도 S1 나사못에서 이완, 이탈 및 파손과 같은 고정 실패가 주로 발생하였다. 결론: 피질골 궤도 나사못 고정은 기존의 척추 경 나사못 고정과 비교했을 때 동등한 임상 결과 또는 적은 합병증을 나타낼 수 있는 하나의 대안이 될 수 있으나 골다공증이 있거나 특히 L5-S1 유합부위에서 전방지지구조가 되지 않는 조건일 때, 이완, 이탈, 파손 등의 조기 고정 실패가 나타나는 결과가 있었다.

A Computed Tomography-Based Anatomic Comparison of Three Different Types of C7 Posterior Fixation Techniques : Pedicle, Intralaminar, and Lateral Mass Screws

  • Jang, Woo-Young;Kim, Il-Sup;Lee, Ho-Jin;Sung, Jae-Hoon;Lee, Sang-Won;Hong, Jae-Taek
    • Journal of Korean Neurosurgical Society
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    • 제50권3호
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    • pp.166-172
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    • 2011
  • Objective : The intralaminar screw (ILS) fixation technique offers an alternative to pedicle screw (PS) and lateral mass screw (LMS) fixation in the C7 spine. Although cadaveric studies have described the anatomy of the pedicles, laminae, and lateral masses at C7, 3-dimensional computed tomography (CT) imaging is the modality of choice for pre-surgical planning. In this study, the goal was to determine the anatomical parameter and optimal screw trajectory for ILS placement at C7, and to compare this information to PS and LMS placement in the C7 spine as determined by CT evaluation. Methods : A total of 120 patients (60 men and 60 women) with an average age of $51.7{\pm}13.6$ years were selected by retrospective review of a trauma registry database over a 2-year period. Patients were included in the study if they were older than 15 years of age, had standardized axial bone-window CT imaging at C7, and had no evidence of spinal trauma. For each lamina and pedicle, width (outer cortical and inner cancellous), maximal screw length, and optimal screw trajectory were measured, and the maximal screw length of the lateral mass were measured using m-view 5.4 software. Statistical analysis was performed using Student's t-test. Results : At C7, the maximal PS length was significantly greater than the ILS and LMS length (PS, $33.9{\pm}3.1$ mm; ILS, $30.8{\pm}3.1$ mm; LMS, $10.6{\pm}1.3$; p<0.01). When the outer cortical and inner cancellous width was compared between the pedicle and lamina, the mean pedicle outer cortical width at C7 was wider than the lamina by an average of 0.6 mm (pedicle, $6.8{\pm}1.2$ mm; lamina, $6.2{\pm}1.2$ mm; p<0.01). At C7, 95.8% of the laminae measured accepted a 4.0-mm screw with a 1.0 mm of clearance, compared with 99.2% of pedicle. Of the laminae measured, 99.2% accepted a 3.5-mm screw with a 1.0 mm clearance, compared with 100% of the pedicle. When the outer cortical and inner cancellous height was compared between pedicle and lamina, the mean lamina outer cortical height at C7 was wider than the pedicle by an average of 9.9 mm (lamina, $18.6{\pm}2.0$ mm; pedicle, $8.7{\pm}1.3$ mm; p<0.01). The ideal screw trajectory at C7 was also measured ($47.8{\pm}4.8^{\circ}$ for ILS and $35.1{\pm}8.1^{\circ}$ for PS). Conclusion : Although pedicle screw fixation is the most ideal instrumentation method for C7 fixation with respect to length and cortical diameter, anatomical aspect of C7 lamina is affordable to place screw. Therefore, the C7 intralaminar screw could be an alternative fixation technique with few anatomic limitations in the cases when C7 pedicle screw fixation is not favorable. However, anatomical variations in the length and width must be considered when placing an intralaminar or pedicle screw at C7.

Three Dimensional Measurement of Ideal Trajectory of Pedicle Screws of Subaxial Cervical Spine Using the Algorithm Could Be Applied for Robotic Screw Insertion

  • Huh, Jisoon;Hyun, Jae Hwan;Park, Hyeong Geon;Kwak, Ho-Young
    • Journal of Korean Neurosurgical Society
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    • 제62권4호
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    • pp.376-381
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    • 2019
  • Objective : To define optimal method that calculate the safe direction of cervical pedicle screw placement using computed tomography (CT) image based three dimensional (3D) cortical shell model of human cervical spine. Methods : Cortical shell model of cervical spine from C3 to C6 was made after segmentation of in vivo CT image data of 44 volunteers. Three dimensional Cartesian coordinate of all points constituting surface of whole vertebra, bilateral pedicle and posterior wall were acquired. The ideal trajectory of pedicle screw insertion was defined as viewing direction at which the inner area of pedicle become largest when we see through the biconcave tubular pedicle. The ideal trajectory of 352 pedicles (eight pedicles for each of 44 subjects) were calculated using custom made program and were changed from global coordinate to local coordinate according to the three dimensional position of posterior wall of each vertebral body. The transverse and sagittal angle of trajectory were defined as the angle between ideal trajectory line and perpendicular line of posterior wall in the horizontal and sagittal plane. The averages and standard deviations of all measurements were calculated. Results : The average transverse angles were $50.60^{\circ}{\pm}6.22^{\circ}$ at C3, $51.42^{\circ}{\pm}7.44^{\circ}$ at C4, $47.79^{\circ}{\pm}7.61^{\circ}$ at C5, and $41.24^{\circ}{\pm}7.76^{\circ}$ at C6. The transverse angle becomes more steep from C3 to C6. The mean sagittal angles were $9.72^{\circ}{\pm}6.73^{\circ}$ downward at C3, $5.09^{\circ}{\pm}6.39^{\circ}$ downward at C4, $0.08^{\circ}{\pm}6.06^{\circ}$ downward at C5, and $1.67^{\circ}{\pm}6.06^{\circ}$ upward at C6. The sagittal angle changes from caudad to cephalad from C3 to C6. Conclusion : The absolute values of transverse and sagittal angle in our study were not same but the trend of changes were similar to previous studies. Because we know 3D address of all points constituting cortical shell of cervical vertebrae. we can easily reconstruct 3D model and manage it freely using computer program. More creative measurement of morphological characteristics could be carried out than direct inspection of raw bone. Furthermore this concept of measurement could be used for the computing program of automated robotic screw insertion.