3D-printed external fixation guide combined with video-assisted thoracoscopic surgery for the treatment of flail chest: a technical report and case series.
3D printing
clinical efficacy
external fixation
flail chest
minimally invasive
thoracoscopy
Journal
Frontiers in surgery
ISSN: 2296-875X
Titre abrégé: Front Surg
Pays: Switzerland
ID NLM: 101645127
Informations de publication
Date de publication:
2023
2023
Historique:
received:
04
08
2023
accepted:
14
09
2023
medline:
13
10
2023
pubmed:
13
10
2023
entrez:
13
10
2023
Statut:
epublish
Résumé
Flail chest is a common and serious traumatic condition in thoracic surgery. The treatment of flail chest often includes open reduction and internal fixation, which is relatively traumatic, complicated, and expensive. As three-dimensional (3D) printing technology is widely used in the clinical field, the application of 3D-printed products to chest trauma will become a new treatment option. To date, the use of 3D-printed external fixation guides for flail chests has not been reported. Thus, we aimed to assess the short-term efficacy of a new technology that treated flail chests with an individualized 3D-printed external fixation guide combined with video-assisted thoracoscopic surgery (VATS). A retrospective analysis was performed on patients with flail chest treated with this new technique at our center from January 2020 to December 2022. The following parameters were included: operative time, thoracic tube extraction time, intensive care unit time, thoracic volume recovery rate, visual analog scale score 1 month postoperatively, and postoperative complication rate. All patients were followed up for at least 3 months. Five patients (mean age: 45.7 years) were enrolled; they successfully underwent surgery without chest wall deformity and quickly returned to daily life. The average number of rib fractures was 8.4; all patients had lung contusion, hemopneumothorax, and anomalous respiration. The abnormal breathing of all patients was completely corrected on postoperative day 1, and the chest wall was stable. One case experienced mild loosening of the 3D-printed guide postoperatively; however, the overall stability was not affected. The other four cases did not experience such loosening because we replaced the ordinary silk wire with a steel wire. All cases were discharged from the hospital 2 weeks postoperatively and returned to normal life 1 month after the removal of the 3D-printed guide on average. Only one case developed a superficial wound infection postoperatively, and no perioperative death occurred. The 3D-printed external fixation guide combined with video-assisted thoracoscopic surgery is a novel technique in the treatment of flail chest and is safe, effective, feasible, and minimally invasive, with satisfactory clinical efficacy.
Sections du résumé
Background
UNASSIGNED
Flail chest is a common and serious traumatic condition in thoracic surgery. The treatment of flail chest often includes open reduction and internal fixation, which is relatively traumatic, complicated, and expensive. As three-dimensional (3D) printing technology is widely used in the clinical field, the application of 3D-printed products to chest trauma will become a new treatment option. To date, the use of 3D-printed external fixation guides for flail chests has not been reported. Thus, we aimed to assess the short-term efficacy of a new technology that treated flail chests with an individualized 3D-printed external fixation guide combined with video-assisted thoracoscopic surgery (VATS).
Patients and methods
UNASSIGNED
A retrospective analysis was performed on patients with flail chest treated with this new technique at our center from January 2020 to December 2022. The following parameters were included: operative time, thoracic tube extraction time, intensive care unit time, thoracic volume recovery rate, visual analog scale score 1 month postoperatively, and postoperative complication rate. All patients were followed up for at least 3 months.
Results
UNASSIGNED
Five patients (mean age: 45.7 years) were enrolled; they successfully underwent surgery without chest wall deformity and quickly returned to daily life. The average number of rib fractures was 8.4; all patients had lung contusion, hemopneumothorax, and anomalous respiration. The abnormal breathing of all patients was completely corrected on postoperative day 1, and the chest wall was stable. One case experienced mild loosening of the 3D-printed guide postoperatively; however, the overall stability was not affected. The other four cases did not experience such loosening because we replaced the ordinary silk wire with a steel wire. All cases were discharged from the hospital 2 weeks postoperatively and returned to normal life 1 month after the removal of the 3D-printed guide on average. Only one case developed a superficial wound infection postoperatively, and no perioperative death occurred.
Conclusions
UNASSIGNED
The 3D-printed external fixation guide combined with video-assisted thoracoscopic surgery is a novel technique in the treatment of flail chest and is safe, effective, feasible, and minimally invasive, with satisfactory clinical efficacy.
Identifiants
pubmed: 37829598
doi: 10.3389/fsurg.2023.1272628
pmc: PMC10564999
doi:
Types de publication
Journal Article
Langues
eng
Pagination
1272628Informations de copyright
© 2023 Hu, Sun, Bao, Luo, Zhuo and Guo.
Déclaration de conflit d'intérêts
The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.
Références
Ann Biomed Eng. 2020 Feb;48(2):536-555
pubmed: 31741226
J Surg Res. 2022 Aug;276:221-234
pubmed: 35390577
Front Surg. 2022 Jan 24;8:826682
pubmed: 35141272
Chin J Traumatol. 2020 Jun;23(3):125-138
pubmed: 32417043
J Thorac Dis. 2018 Apr;10(Suppl 8):S951-S962
pubmed: 29744222
Trauma Case Rep. 2020 Feb 22;26:100291
pubmed: 32123719
Bone Joint J. 2016 Aug;98-B(8):1119-25
pubmed: 27482027
Cir Cir. 2020;88(Suppl 1):63-67
pubmed: 32963408
Rev Col Bras Cir. 2016 Sep-Oct;43(5):374-381
pubmed: 27982332
Quant Imaging Med Surg. 2018 Dec;8(11):1069-1077
pubmed: 30701160
Eur J Trauma Emerg Surg. 2019 Aug;45(4):645-654
pubmed: 30229337
Ann Surg. 2013 Dec;258(6):914-21
pubmed: 23511840
Materials (Basel). 2022 Jul 06;15(14):
pubmed: 35888198
Am Surg. 2014 Jun;80(6):527-35
pubmed: 24887787
Ann Thorac Surg. 2022 Jun;113(6):1865-1866
pubmed: 34270969
Emerg Med J. 2021 Jul;38(7):496-500
pubmed: 33986019
J Thorac Dis. 2019 Feb;11(Suppl 2):S158-S166
pubmed: 30906580
J Cardiothorac Surg. 2019 Jun 11;14(1):105
pubmed: 31186011
J Thorac Dis. 2019 Apr;11(4):1668-1675
pubmed: 31179112
Gen Thorac Cardiovasc Surg. 2022 Nov;70(11):985-992
pubmed: 35657504
Indian Heart J. 2016 Jan-Feb;68(1):108-9
pubmed: 26896278
Injury. 2021 Jun;52(6):1239-1240
pubmed: 34051981
J Trauma. 2002 Apr;52(4):727-32; discussion 732
pubmed: 11956391
Eur J Trauma Emerg Surg. 2022 Apr;48(2):1501-1508
pubmed: 33210171
Exp Ther Med. 2020 Jan;19(1):421-427
pubmed: 31885692
J Trauma Acute Care Surg. 2021 Mar 1;90(3):451-458
pubmed: 33559982
J Am Coll Surg. 2012 Aug;215(2):201-5
pubmed: 22560319
Injury. 2022 Mar;53(3):1073-1080
pubmed: 34625240
Thorac Surg Clin. 2007 Feb;17(1):25-33
pubmed: 17650694
Am Surg. 2022 Apr;88(4):810-812
pubmed: 34806413
Front Surg. 2023 Mar 15;10:1156489
pubmed: 37009603
Ann Thorac Surg. 2022 Jun;113(6):1859-1865
pubmed: 34214544
Minerva Anestesiol. 2004 Apr;70(4):193-9
pubmed: 15173695
Am Surg. 2018 Sep 1;84(9):1406-1409
pubmed: 30268166