PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 22, 2026JPRAS Open0 citationsOpen Access

3D Printing-Guided Chest Wall Reconstruction – a case report and literature review

AYAmy YoonDBDanial BahudinWLWingchi Lo

Key Points

  • To explore the feasibility of using a 3D-printed patient-matched guide for autologous chest wall reconstruction.
  • Used a vascularised fibula free flap to reconstruct a chest defect.
  • Designed and 3D-printed a patient-matched fibula marking guide for intraoperative use.
  • Virtual surgical planning determined the optimal bone configuration.
  • Titanium plates were pre-contoured using a life-sized 3D-printed model.
  • Successful closure of a large sternal defect with a 3D-printed guide.
  • No surgical complications reported postoperatively.
  • Resolution of symptoms related to chest wall movement and pain.

Abstract

Large chest wall defects may be challenging to reconstruct and requires consideration of skeletal stabilisation.Whilst use of synthetic materials has been described, the risks of infection and implant failure resulting in removal are omnipresent.The vascularised fibula free flap is an autologous alternative.We present the first reported application of 3D-printed patient-matched fibula marking guide to facilitate reconstruction of a large sternal defect with an autologous vascularised fibula free flap.A 56-year-old patient developed paradoxical chest wall movements with chest pain following a partial sternectomy for sternal fibrous dysplasia.The primary defect was reconstructed with a synthetic implant, complicated by infection requiring hardware removal.Cross-sectional imaging confirmed herniation of lung contents through the defect.Virtual surgical planning was undertaken to define the best configuration for available autologous bone options.A single free fibula twice osteotomised and configured into a triangle with 3 segments was chosen to close the defect.A patient-matched fibula marking guide was designed and 3D-printed for intraoperative use, and titanium plates were pre-contoured using a life-sized 3D-printed chest wall model.Surgery proceeded without complications, with reported resolution of symptoms postoperatively.Current literature on 3D printing technology for chest wall reconstruction primarily focuses on synthetic implants rather than autologous tissue transfer.Whilst autologous bone grafting for sternal defects is well described, only three cases have reported the use of vascularised fibular free flap reconstruction.This case demonstrates the feasibility of integrating a 3D-printing workflow in the surgical planning of autologous vascularised sternal reconstruction.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Yoon et al. (2026) studied this question.

synapsesocial.com/papers/69bf8692f665edcd009e8ebehttps://doi.org/10.1016/j.jpra.2026.03.019
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Virtual planning and guided surgery in fibular free-flap mandibular reconstruction: A 29-case series2016 · 85 citations
  2. 2Sternal defect reconstruction using a double-barrel vascularized free fibula flap: a case report2021 · 6 citations
  3. 3CARE guidelines for case reports: explanation and elaboration document2017 · 2,224 citations
  4. 4Principles of Chest Wall Resection and Reconstruction2010 · 87 citations
  5. 5Mandibular reconstruction with the vascularized fibula flap: comparison of virtual planning surgery and conventional surgery2016 · 132 citations