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Navigation Template Design and the Anatomic Measurement for Anterograde Transpubic Screws

OBJECTIVE: For pelvic ring fractures, screw fixation became a popular technique for its good biomechanical performance. The safe insertion of anterograde the transpubic screw is important for patients with anterior pelvic ring fractures. This paper is to research the anatomical parameters of the ant...

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Autores principales: Wu, Chao, Shen, Danwei, Deng, Jiayan, Zeng, Baifang, Wang, Xiangyu, Li, Hong, Xu, Lian, Liu, Xin, Huang, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons Australia, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9732634/
https://www.ncbi.nlm.nih.gov/pubmed/36253949
http://dx.doi.org/10.1111/os.13510
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author Wu, Chao
Shen, Danwei
Deng, Jiayan
Zeng, Baifang
Wang, Xiangyu
Li, Hong
Xu, Lian
Liu, Xin
Huang, Li
author_facet Wu, Chao
Shen, Danwei
Deng, Jiayan
Zeng, Baifang
Wang, Xiangyu
Li, Hong
Xu, Lian
Liu, Xin
Huang, Li
author_sort Wu, Chao
collection PubMed
description OBJECTIVE: For pelvic ring fractures, screw fixation became a popular technique for its good biomechanical performance. The safe insertion of anterograde the transpubic screw is important for patients with anterior pelvic ring fractures. This paper is to research the anatomical parameters of the anterograde transpubic screw corridor and evaluate the safety of anterograde transpubic screw placement assisted by the assembled navigation template. METHODS: Fifty subjects with normal pelvic, 25 men and 25 women, age from 20 to 60 were enrolled, and their ilium were 3D reconstructed. The ilium was divided into zone I, zone II and zone III. Zone I and zone III was defined as medial and lateral to the obturator foramen, respectively. Zone II is located between zones I and III. The corridor A is formed by zone I and zone II and corridor B is formed by zone I, zone II and zone III. The diameter and length of the inner circle, the distance from the center of the inner circle to the posterior superior and to the inferior iliac spine of corridor A and corridor B were measured, respectively. Nine patients with pelvic fractures underwent anterograde transpubic screw and transverse sacroiliac screw placement assisted by the assembled navigation template and were retrospectively analyzed. Operation time, blood loss, incision length and fluoroscopy times were recorded. Grading score and Matta score were evaluated after surgery. RESULTS: In the 50 subjects, the diameter of corridor A was 11.16 ± 2.13 mm, and that of corridor B was 8.54 ± 1.52 mm. The length of corridor A was 86.39 ± 9.35 mm, and that of corridor B was 117.05 ± 5.91 mm. The surface distance from the screw entry point to the posterior superior iliac spine in corridor A was 109.31 ± 11.06 mm, and that in corridor B was 127.86 ± 8.23 mm. The surface distance from the screw entry point to the posterior inferior iliac spine in corridor A was 91.16 ± 10.34 mm, and that in corridor B was 106.92 ± 7.91 mm. A total of 18 sacroiliac transverse screws and 11 anterograde transpubic screws were inserted assisted by assembled navigation templates for nine patients. The average operation time was 108.75 ± 25.71 min, the blood loss was 141.11 ± 50.21 ml, the incision length was 14 ± 4.62 cm, and the intraoperative fluoroscopy was 17.89 ± 4.01 times. CONCLUSION: Transpubic screw corridor can be obtained by 3D reconstruction. For the majority of patients, the anterograde pubic ramus corridor accommodated a 6.5 mm diameter screw. It is safe to use anterograde transpubic screw placement assisted by an assembled navigation template.
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spelling pubmed-97326342022-12-12 Navigation Template Design and the Anatomic Measurement for Anterograde Transpubic Screws Wu, Chao Shen, Danwei Deng, Jiayan Zeng, Baifang Wang, Xiangyu Li, Hong Xu, Lian Liu, Xin Huang, Li Orthop Surg Operative Techniques OBJECTIVE: For pelvic ring fractures, screw fixation became a popular technique for its good biomechanical performance. The safe insertion of anterograde the transpubic screw is important for patients with anterior pelvic ring fractures. This paper is to research the anatomical parameters of the anterograde transpubic screw corridor and evaluate the safety of anterograde transpubic screw placement assisted by the assembled navigation template. METHODS: Fifty subjects with normal pelvic, 25 men and 25 women, age from 20 to 60 were enrolled, and their ilium were 3D reconstructed. The ilium was divided into zone I, zone II and zone III. Zone I and zone III was defined as medial and lateral to the obturator foramen, respectively. Zone II is located between zones I and III. The corridor A is formed by zone I and zone II and corridor B is formed by zone I, zone II and zone III. The diameter and length of the inner circle, the distance from the center of the inner circle to the posterior superior and to the inferior iliac spine of corridor A and corridor B were measured, respectively. Nine patients with pelvic fractures underwent anterograde transpubic screw and transverse sacroiliac screw placement assisted by the assembled navigation template and were retrospectively analyzed. Operation time, blood loss, incision length and fluoroscopy times were recorded. Grading score and Matta score were evaluated after surgery. RESULTS: In the 50 subjects, the diameter of corridor A was 11.16 ± 2.13 mm, and that of corridor B was 8.54 ± 1.52 mm. The length of corridor A was 86.39 ± 9.35 mm, and that of corridor B was 117.05 ± 5.91 mm. The surface distance from the screw entry point to the posterior superior iliac spine in corridor A was 109.31 ± 11.06 mm, and that in corridor B was 127.86 ± 8.23 mm. The surface distance from the screw entry point to the posterior inferior iliac spine in corridor A was 91.16 ± 10.34 mm, and that in corridor B was 106.92 ± 7.91 mm. A total of 18 sacroiliac transverse screws and 11 anterograde transpubic screws were inserted assisted by assembled navigation templates for nine patients. The average operation time was 108.75 ± 25.71 min, the blood loss was 141.11 ± 50.21 ml, the incision length was 14 ± 4.62 cm, and the intraoperative fluoroscopy was 17.89 ± 4.01 times. CONCLUSION: Transpubic screw corridor can be obtained by 3D reconstruction. For the majority of patients, the anterograde pubic ramus corridor accommodated a 6.5 mm diameter screw. It is safe to use anterograde transpubic screw placement assisted by an assembled navigation template. John Wiley & Sons Australia, Ltd 2022-10-17 /pmc/articles/PMC9732634/ /pubmed/36253949 http://dx.doi.org/10.1111/os.13510 Text en © 2022 The Authors. Orthopaedic Surgery published by Tianjin Hospital and John Wiley & Sons Australia, Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Operative Techniques
Wu, Chao
Shen, Danwei
Deng, Jiayan
Zeng, Baifang
Wang, Xiangyu
Li, Hong
Xu, Lian
Liu, Xin
Huang, Li
Navigation Template Design and the Anatomic Measurement for Anterograde Transpubic Screws
title Navigation Template Design and the Anatomic Measurement for Anterograde Transpubic Screws
title_full Navigation Template Design and the Anatomic Measurement for Anterograde Transpubic Screws
title_fullStr Navigation Template Design and the Anatomic Measurement for Anterograde Transpubic Screws
title_full_unstemmed Navigation Template Design and the Anatomic Measurement for Anterograde Transpubic Screws
title_short Navigation Template Design and the Anatomic Measurement for Anterograde Transpubic Screws
title_sort navigation template design and the anatomic measurement for anterograde transpubic screws
topic Operative Techniques
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9732634/
https://www.ncbi.nlm.nih.gov/pubmed/36253949
http://dx.doi.org/10.1111/os.13510
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