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Erschienen in: European Spine Journal 1/2004

01.02.2004 | Original Article

Computer-assisted posterior instrumentation of the cervical and cervico-thoracic spine

verfasst von: Marcus Richter, Thomas Mattes, Balkan Cakir

Erschienen in: European Spine Journal | Ausgabe 1/2004

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Abstract

Posterior instrumentation of the cervical spine has become increasingly popular in recent years. Dissatisfaction with lateral mass fixation, especially at the cervico-thoracic junction, has led spine surgeons to use pedicle screws. The improved biomechanical stability of pedicle screws and transarticular C1/2 screws allows for shorter instrumentations and improves the repositioning possibilities. Nevertheless, there are potential risks of iatrogenic damage to the spinal cord, nerve roots or the vertebral artery with both techniques. Therefore, the aim of this study was to evaluate whether C1/2 transarticular screws and transpedicular screws can be applied safely and with high accuracy in the cervical spine and the cervico-thoracic junction using a computer-assisted surgery system (CAS system). Posterior instrumentation was performed using the Brainlab VectorVision System (BrainLAB , Heimstetten, Germany) in 19 patients. Surface matching was used for registration. We placed 22 transarticular screws C1/2, 31 cervical pedicle screws, 10 high thoracic pedicle screws and one lateral mass screw C1. The screw position was evaluated postoperatively using CT with multiplanar reconstruction in the screw axis of each screw. None of the transarticular screws or pedicle screws was significantly (>2 mm) misplaced and no screw-related injury to vascular, neurogenic or bony structures was observed. No screw revision was necessary. The mean operation time was 144 min (90–240 min) and the mean blood loss was 234 ml (50–800 ml). C1/2 transarticular screws, as well as transpedicular screws in the cervical spine and the cervico-thoracic junction, can be applied safely and with high accuracy using a CAS system. Computer-assisted instrumentation is recommended especially for pedicle screws at C3–C6.
Literatur
1.
Zurück zum Zitat Abou Madawi A, Solanki G, Casey AT, Crockard HA (1997) Variation of the groove in the axis vertebra for the vertebral artery. Implications for instrumentation. J Bone Joint Surg Br 79:820–823PubMed Abou Madawi A, Solanki G, Casey AT, Crockard HA (1997) Variation of the groove in the axis vertebra for the vertebral artery. Implications for instrumentation. J Bone Joint Surg Br 79:820–823PubMed
2.
Zurück zum Zitat Abumi K, Kaneda K (1997) Pedicle screw fixation for nontraumatic lesions of the cervical spine. Spine 22:1853–1863CrossRefPubMed Abumi K, Kaneda K (1997) Pedicle screw fixation for nontraumatic lesions of the cervical spine. Spine 22:1853–1863CrossRefPubMed
3.
Zurück zum Zitat Abumi K, Shono Y, Ito M, Taneichi H, Kotani Y, Kaneda K (2000) Complications of pedicle screw fixation in reconstructive surgery of the cervical spine. Spine 25:962–969CrossRefPubMed Abumi K, Shono Y, Ito M, Taneichi H, Kotani Y, Kaneda K (2000) Complications of pedicle screw fixation in reconstructive surgery of the cervical spine. Spine 25:962–969CrossRefPubMed
4.
Zurück zum Zitat Abumi K, Shono Y, Kotani Y, Kaneda K (2000) Indirect posterior reduction and fusion of the traumatic herniated disc by using a cervical pedicle screw system. J Neurosurg 92:30–37PubMed Abumi K, Shono Y, Kotani Y, Kaneda K (2000) Indirect posterior reduction and fusion of the traumatic herniated disc by using a cervical pedicle screw system. J Neurosurg 92:30–37PubMed
5.
Zurück zum Zitat Amiot LP, Labelle H, DeGuise JA, Sati M, Brodeur P, Rivard CH (1995) Computer-assisted pedicle screw fixation. A feasibility study. Spine 20:1208–1212PubMed Amiot LP, Labelle H, DeGuise JA, Sati M, Brodeur P, Rivard CH (1995) Computer-assisted pedicle screw fixation. A feasibility study. Spine 20:1208–1212PubMed
6.
Zurück zum Zitat Berlemann U, Monin D, Arm E, Nolte LP, Ozdoba C (1997) Planning and insertion of pedicle screws with computer assistance. J Spinal Disord 10:117–124PubMed Berlemann U, Monin D, Arm E, Nolte LP, Ozdoba C (1997) Planning and insertion of pedicle screws with computer assistance. J Spinal Disord 10:117–124PubMed
7.
Zurück zum Zitat Ebraheim N, Rollins JR Jr, Xu R, Jackson WT (1996) Anatomic consideration of C2 pedicle screw placement. Spine 21:691–695CrossRefPubMed Ebraheim N, Rollins JR Jr, Xu R, Jackson WT (1996) Anatomic consideration of C2 pedicle screw placement. Spine 21:691–695CrossRefPubMed
8.
Zurück zum Zitat Ebraheim NA, Xu R, Knight T, Yeasting RA (1997) Morphometric evaluation of lower cervical pedicle and its projection. Spine 22:1–6CrossRefPubMed Ebraheim NA, Xu R, Knight T, Yeasting RA (1997) Morphometric evaluation of lower cervical pedicle and its projection. Spine 22:1–6CrossRefPubMed
9.
Zurück zum Zitat Farey ID, Nadkarni S, Smith N (1999) Modified Gallie technique versus transarticular screw fixation in C1–C2 fusion. Clin Orthop 359:126–135 Farey ID, Nadkarni S, Smith N (1999) Modified Gallie technique versus transarticular screw fixation in C1–C2 fusion. Clin Orthop 359:126–135
10.
Zurück zum Zitat George DC, Krag MH, Johnson CC, Van H, M.E., Haugh LD, Grobler LJ (1991) Hole preparation techniques for transpedicle screws: effect on pull-out strength from human cadaveric vertebrae. Spine 16:181–184PubMed George DC, Krag MH, Johnson CC, Van H, M.E., Haugh LD, Grobler LJ (1991) Hole preparation techniques for transpedicle screws: effect on pull-out strength from human cadaveric vertebrae. Spine 16:181–184PubMed
11.
Zurück zum Zitat Gertzbein SD, Robbins SE (1990) Accuracy of pedicular screw placement in vivo. Spine 15:11–14PubMed Gertzbein SD, Robbins SE (1990) Accuracy of pedicular screw placement in vivo. Spine 15:11–14PubMed
12.
Zurück zum Zitat Glossop ND, Hu RW, Randle JA (1996) Computer-aided pedicle screw placement using frameless stereotaxis. Spine 21:2026–2034CrossRefPubMed Glossop ND, Hu RW, Randle JA (1996) Computer-aided pedicle screw placement using frameless stereotaxis. Spine 21:2026–2034CrossRefPubMed
13.
Zurück zum Zitat Grob D, Crisco JJ, Panjabi MM, Wang P, Dvorak J (1992) Biomechanical evaluation of four different posterior atlantoaxial fixation techniques. Spine 17:480–490PubMed Grob D, Crisco JJ, Panjabi MM, Wang P, Dvorak J (1992) Biomechanical evaluation of four different posterior atlantoaxial fixation techniques. Spine 17:480–490PubMed
14.
Zurück zum Zitat Grob D, Dvorak J, Panjabi MM, Hayek J (1991) Die dorsale atlantoaxiale Verschraubung. Ein Stabilitätstest in vitro und in vivo. Orthopäde 20:154–162 Grob D, Dvorak J, Panjabi MM, Hayek J (1991) Die dorsale atlantoaxiale Verschraubung. Ein Stabilitätstest in vitro und in vivo. Orthopäde 20:154–162
15.
Zurück zum Zitat Grob D, Jeanneret B, Aebi M, Markwalder TM (1991) Atlanto-axial fusion with transarticular screw fixation. J Bone Joint Surg Br 73:972–976 Grob D, Jeanneret B, Aebi M, Markwalder TM (1991) Atlanto-axial fusion with transarticular screw fixation. J Bone Joint Surg Br 73:972–976
16.
Zurück zum Zitat Jeanneret B, Magerl F (1990) Congenital fusion C0–C2 associated with spondylolysis of C2. J Spinal Disord 3:413–417PubMed Jeanneret B, Magerl F (1990) Congenital fusion C0–C2 associated with spondylolysis of C2. J Spinal Disord 3:413–417PubMed
17.
Zurück zum Zitat Jerosch J, Malms J, Castro WH, Wagner R, Wiesner L (1992) Lagekontrolle von Pedikelschrauben nach instrumentierter dorsaler Fusion der Lendenwirbelsäule. Z Orthop 130:479–483PubMed Jerosch J, Malms J, Castro WH, Wagner R, Wiesner L (1992) Lagekontrolle von Pedikelschrauben nach instrumentierter dorsaler Fusion der Lendenwirbelsäule. Z Orthop 130:479–483PubMed
18.
Zurück zum Zitat Jia LS (1989) [Dynamic change in the ligamenta flava of the cervical spine in motion]. Chung Hua Wai Ko Tsa Chih 27:561–565PubMed Jia LS (1989) [Dynamic change in the ligamenta flava of the cervical spine in motion]. Chung Hua Wai Ko Tsa Chih 27:561–565PubMed
19.
Zurück zum Zitat Jones EL, Heller JG, Silcox DH, Hutton WC (1997) Cervical pedicle screws versus lateral mass screws. Anatomic feasibility and biomechanical comparison. Spine 22:977–982CrossRefPubMed Jones EL, Heller JG, Silcox DH, Hutton WC (1997) Cervical pedicle screws versus lateral mass screws. Anatomic feasibility and biomechanical comparison. Spine 22:977–982CrossRefPubMed
20.
Zurück zum Zitat Kalfas IH, Kormos DW, Murphy MA, McKenzie RL, Barnett GH, Bell GR, Steiner CP, Trimble MB, Weisenberger JP (1995) Application of frameless stereotaxy to pedicle screw fixation of the spine. J Neurosurg 83:641–647PubMed Kalfas IH, Kormos DW, Murphy MA, McKenzie RL, Barnett GH, Bell GR, Steiner CP, Trimble MB, Weisenberger JP (1995) Application of frameless stereotaxy to pedicle screw fixation of the spine. J Neurosurg 83:641–647PubMed
21.
Zurück zum Zitat Kamimura M, Ebara S, Itoh H, Tateiwa Y, Kinoshita T, Takaoka K (1999) Accurate pedicle screw insertion under the control of a computer-assisted image guiding system: laboratory test and clinical study. J Orthop Sci 4:197–206CrossRefPubMed Kamimura M, Ebara S, Itoh H, Tateiwa Y, Kinoshita T, Takaoka K (1999) Accurate pedicle screw insertion under the control of a computer-assisted image guiding system: laboratory test and clinical study. J Orthop Sci 4:197–206CrossRefPubMed
22.
Zurück zum Zitat Kotani Y, Cunningham BW, Abumi K, McAfee PC (1994) Biomechanical analysis of cervical stabilization systems. An assessment of transpedicular screw fixation in the cervical spine. Spine 19:2529–2539PubMed Kotani Y, Cunningham BW, Abumi K, McAfee PC (1994) Biomechanical analysis of cervical stabilization systems. An assessment of transpedicular screw fixation in the cervical spine. Spine 19:2529–2539PubMed
23.
Zurück zum Zitat Laine T, Makitalo K, Schlenzka D, Tallroth K, Poussa M, Alho A (1997) Accuracy of pedicle screw insertion: a prospective CT study in 30 low back patients. Eur Spine J 6:402–405PubMed Laine T, Makitalo K, Schlenzka D, Tallroth K, Poussa M, Alho A (1997) Accuracy of pedicle screw insertion: a prospective CT study in 30 low back patients. Eur Spine J 6:402–405PubMed
24.
Zurück zum Zitat Laine T, Schlenzka D, Makitalo K, Tallroth K, Nolte LP, Visarius H (1997) Improved accuracy of pedicle screw insertion with computer-assisted surgery. A prospective clinical trial of 30 patients. Spine 22:1254–1258CrossRefPubMed Laine T, Schlenzka D, Makitalo K, Tallroth K, Nolte LP, Visarius H (1997) Improved accuracy of pedicle screw insertion with computer-assisted surgery. A prospective clinical trial of 30 patients. Spine 22:1254–1258CrossRefPubMed
25.
Zurück zum Zitat Lavallee S, Sautot P, Troccaz J, Cinquin P, Merloz P (1995) Computer-assisted spine surgery: a technique for accurate transpedicular screw fixation using CT data and a 3-D optical localizer. J Image Guid Surg 1:65–73CrossRefPubMed Lavallee S, Sautot P, Troccaz J, Cinquin P, Merloz P (1995) Computer-assisted spine surgery: a technique for accurate transpedicular screw fixation using CT data and a 3-D optical localizer. J Image Guid Surg 1:65–73CrossRefPubMed
26.
Zurück zum Zitat Lu J, Ebraheim NA, Yang H, Heck BE, Yeasting RA (1998) Anatomic considerations of anterior transarticular screw fixation for atlantoaxial instability. Spine 23:1229–1235; discussion 1236CrossRefPubMed Lu J, Ebraheim NA, Yang H, Heck BE, Yeasting RA (1998) Anatomic considerations of anterior transarticular screw fixation for atlantoaxial instability. Spine 23:1229–1235; discussion 1236CrossRefPubMed
27.
Zurück zum Zitat Ludwig SC, Kowalski JM, Edwards CC 2nd, Heller JG (2000) Cervical pedicle screws: comparative accuracy of two insertion techniques. Spine 25:2675–2681CrossRefPubMed Ludwig SC, Kowalski JM, Edwards CC 2nd, Heller JG (2000) Cervical pedicle screws: comparative accuracy of two insertion techniques. Spine 25:2675–2681CrossRefPubMed
28.
Zurück zum Zitat Ludwig SC, Kramer DL, Balderston RA, Vaccaro AR, Foley KF, Albert TJ (2000) Placement of pedicle screws in the human cadaveric cervical spine: comparative accuracy of three techniques. Spine 25:1655–1667CrossRefPubMed Ludwig SC, Kramer DL, Balderston RA, Vaccaro AR, Foley KF, Albert TJ (2000) Placement of pedicle screws in the human cadaveric cervical spine: comparative accuracy of three techniques. Spine 25:1655–1667CrossRefPubMed
29.
Zurück zum Zitat Ludwig SC, Kramer DL, Vaccaro AR, Albert TJ (1999) Transpedicle screw fixation of the cervical spine. Clin Orthop 77–88 Ludwig SC, Kramer DL, Vaccaro AR, Albert TJ (1999) Transpedicle screw fixation of the cervical spine. Clin Orthop 77–88
30.
Zurück zum Zitat Merloz P, Tonetti J, Pittet L, Coulomb M, Lavallee S, Sautot P (1998) Pedicle screw placement using image guided techniques. Clin Orthop 354:39–48PubMed Merloz P, Tonetti J, Pittet L, Coulomb M, Lavallee S, Sautot P (1998) Pedicle screw placement using image guided techniques. Clin Orthop 354:39–48PubMed
31.
Zurück zum Zitat Merloz P, Tonetti J, Pittet L, Coulomb M, Lavallee S, Troccaz J, Cinquin P, Sautot P (1998) Computer-assisted spine surgery. Comput Aided Surg 3:297–305CrossRefPubMed Merloz P, Tonetti J, Pittet L, Coulomb M, Lavallee S, Troccaz J, Cinquin P, Sautot P (1998) Computer-assisted spine surgery. Comput Aided Surg 3:297–305CrossRefPubMed
32.
Zurück zum Zitat Miller RM, Ebraheim NA, Xu R, Yeasting RA (1996) Anatomic consideration of transpedicular screw placement in the cervical spine. An analysis of two approaches. Spine 21:2317–2322CrossRefPubMed Miller RM, Ebraheim NA, Xu R, Yeasting RA (1996) Anatomic consideration of transpedicular screw placement in the cervical spine. An analysis of two approaches. Spine 21:2317–2322CrossRefPubMed
33.
Zurück zum Zitat Nolte L, Zamorano L, Arm E, Visarius H, Jiang Z, Berlerman U, Schwarzenbach O (1996) Image-guided computer-assisted spine surgery: a pilot study on pedicle screw fixation. Stereotact Funct Neurosurg 66:108–117PubMed Nolte L, Zamorano L, Arm E, Visarius H, Jiang Z, Berlerman U, Schwarzenbach O (1996) Image-guided computer-assisted spine surgery: a pilot study on pedicle screw fixation. Stereotact Funct Neurosurg 66:108–117PubMed
34.
Zurück zum Zitat Nolte L-P, Zamorano LJ, Jiang Z, Wang Q, Langlitz F, Berlemann U (1995) Image-guided insertion of transpedicular screws: a laboratory set-up. Spine 20:497–500PubMed Nolte L-P, Zamorano LJ, Jiang Z, Wang Q, Langlitz F, Berlemann U (1995) Image-guided insertion of transpedicular screws: a laboratory set-up. Spine 20:497–500PubMed
35.
Zurück zum Zitat Nolte LP, Zamorano L, Visarius H, Berlemann U, Langlotz F, Arm E, Schwarzenbach O (1995) Clinical evaluation of a system for precision enhancement in spine surgery. Clin Biomech 10:193–203CrossRef Nolte LP, Zamorano L, Visarius H, Berlemann U, Langlotz F, Arm E, Schwarzenbach O (1995) Clinical evaluation of a system for precision enhancement in spine surgery. Clin Biomech 10:193–203CrossRef
36.
Zurück zum Zitat Paramore CG, Dickman CA, Sonntag VK (1996) The anatomical suitability of the C1–2 complex for transarticular screw fixation. J Neurosurg 85:221–224PubMed Paramore CG, Dickman CA, Sonntag VK (1996) The anatomical suitability of the C1–2 complex for transarticular screw fixation. J Neurosurg 85:221–224PubMed
37.
Zurück zum Zitat Richter M, Amiot L-P, Neller S, Kluger P, Puhl W (2000) Computer assisted surgery in posterior instrumentation of the cervical spine: an in-vitro feasibility study. Eur Spine J 9:S65–70PubMed Richter M, Amiot L-P, Neller S, Kluger P, Puhl W (2000) Computer assisted surgery in posterior instrumentation of the cervical spine: an in-vitro feasibility study. Eur Spine J 9:S65–70PubMed
38.
Zurück zum Zitat Richter M, Schmidt R, Claes L, Puhl W, Wilke HJ (2002) Posterior atlantoaxial fixation: biomechanical in vitro comparison of six different techniques. Spine 27:1724–1732CrossRefPubMed Richter M, Schmidt R, Claes L, Puhl W, Wilke HJ (2002) Posterior atlantoaxial fixation: biomechanical in vitro comparison of six different techniques. Spine 27:1724–1732CrossRefPubMed
39.
Zurück zum Zitat Schwarzenbach O, Berlemann U, Jost B, Visarius H, Arm E, Langlotz F, Nolte LP, Ozdoba C (1997) Accuracy of computer-assisted pedicle screw placement. An in vivo computed tomography analysis. Spine 22:452–458CrossRefPubMed Schwarzenbach O, Berlemann U, Jost B, Visarius H, Arm E, Langlotz F, Nolte LP, Ozdoba C (1997) Accuracy of computer-assisted pedicle screw placement. An in vivo computed tomography analysis. Spine 22:452–458CrossRefPubMed
40.
Zurück zum Zitat Sim E (1993) Location of transpedicular screws for fixation of the lower thoracic and lumbar spine. Computed tomography of 45 fracture cases. Acta Orthop Scand 64:28–32PubMed Sim E (1993) Location of transpedicular screws for fixation of the lower thoracic and lumbar spine. Computed tomography of 45 fracture cases. Acta Orthop Scand 64:28–32PubMed
41.
Zurück zum Zitat Solanski GA, Crockard HA (1999) Peroperative determination of safe superior transarticular screw trajectory through the lateral mass. Spine 14:1477–1482CrossRef Solanski GA, Crockard HA (1999) Peroperative determination of safe superior transarticular screw trajectory through the lateral mass. Spine 14:1477–1482CrossRef
42.
Zurück zum Zitat Vaccaro AR, Ring D, Scuderi G, Garfin SR (1994) Vertebral artery location in relation to the vertebral body as determined by two-dimensional computed tomography evaluation. Spine 19:2637–2641PubMed Vaccaro AR, Ring D, Scuderi G, Garfin SR (1994) Vertebral artery location in relation to the vertebral body as determined by two-dimensional computed tomography evaluation. Spine 19:2637–2641PubMed
43.
Zurück zum Zitat Vaccaro AR, Rizzolo SJ, Balderston RA, Allardyce TJ, Garfin SR, Dolinskas C, An HS (1995) Placement of pedicle screws in the thoracic spine. II. An anatomical and radiographic assessment. J Bone Joint Surg Am 77:1200–1206PubMed Vaccaro AR, Rizzolo SJ, Balderston RA, Allardyce TJ, Garfin SR, Dolinskas C, An HS (1995) Placement of pedicle screws in the thoracic spine. II. An anatomical and radiographic assessment. J Bone Joint Surg Am 77:1200–1206PubMed
44.
Zurück zum Zitat Weidner A, Wahler M, Chiu ST, Ullrich CG (2000) Modification of C1–C2 transarticular screw fixation by image-guided surgery. Spine 25:2668–2673; discussion 2674CrossRefPubMed Weidner A, Wahler M, Chiu ST, Ullrich CG (2000) Modification of C1–C2 transarticular screw fixation by image-guided surgery. Spine 25:2668–2673; discussion 2674CrossRefPubMed
45.
Zurück zum Zitat Weinstein JN, Spratt KF, Spengler D, Brick C, Reid S (1988) Spinal pedicle fixation: reliability and validity of roentgenogram-based assessment and surgical factors on successful screw placement. Spine 13:1012–1018PubMed Weinstein JN, Spratt KF, Spengler D, Brick C, Reid S (1988) Spinal pedicle fixation: reliability and validity of roentgenogram-based assessment and surgical factors on successful screw placement. Spine 13:1012–1018PubMed
46.
Zurück zum Zitat Welch WC, Subach BR, Pollack IF, Jacobs GB (1997) Frameless stereotactic guidance for surgery of the upper cervical spine. Neurosurgery 40:958–963; discussion 963–964PubMed Welch WC, Subach BR, Pollack IF, Jacobs GB (1997) Frameless stereotactic guidance for surgery of the upper cervical spine. Neurosurgery 40:958–963; discussion 963–964PubMed
47.
Zurück zum Zitat Wilke H-J, Fischer K, Kugler A, Magerl F, Claes L, Wörsdorfer O (1992) In vitro investigations of internal fixation systems of the upper cervical spine. II. Stability of posterior atlanto-axial fixation techniques. Eur Spine J 1:191–199 Wilke H-J, Fischer K, Kugler A, Magerl F, Claes L, Wörsdorfer O (1992) In vitro investigations of internal fixation systems of the upper cervical spine. II. Stability of posterior atlanto-axial fixation techniques. Eur Spine J 1:191–199
48.
Zurück zum Zitat Xu R, Ebraheim NA, Misson JR, Yeasting RA (1998) The reliability of the lateral radiograph in determination of the optimal transarticular C1–C2 screw length. Spine 23:2190–4CrossRefPubMed Xu R, Ebraheim NA, Misson JR, Yeasting RA (1998) The reliability of the lateral radiograph in determination of the optimal transarticular C1–C2 screw length. Spine 23:2190–4CrossRefPubMed
Metadaten
Titel
Computer-assisted posterior instrumentation of the cervical and cervico-thoracic spine
verfasst von
Marcus Richter
Thomas Mattes
Balkan Cakir
Publikationsdatum
01.02.2004
Verlag
Springer-Verlag
Erschienen in
European Spine Journal / Ausgabe 1/2004
Print ISSN: 0940-6719
Elektronische ISSN: 1432-0932
DOI
https://doi.org/10.1007/s00586-003-0604-1

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