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March 9, 2026Journal of Visualized Experiments0 citations

A Rat Model of Tibial Cortex Transverse Transport for the Treatment of Lower Limb Ischemia

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SYShenghui YangSYSijie YangXNXinyu Nie

Key Result

Tibial cortex transverse transport in a Sprague-Dawley rat model demonstrated clear bone fragment movement and improved limb perfusion by postoperative day 19.

Key Points

  • To develop a rat model for studying tibial cortex transverse transport and its effects on revascularization in ischemic lower limbs.
  • Created a cortical bone fragment via surgery in Sprague-Dawley rats
  • Ligation of the superficial femoral artery to simulate ischemia
  • Transported the bone fragment upward and downward using a custom external fixator over 12 days
  • Performed microvascular perfusion imaging and X-ray assessments post-operation
  • Bone fragment movement was successfully demonstrated through X-ray imaging
  • Microvascular perfusion imaging showed improved limb perfusion post-TTT
  • The model effectively mimics clinical TTT procedures and aids in studying relevant molecular mechanisms

Structured PICO

Does tibial cortex transverse transport (TTT) improve angiogenesis and limb perfusion in a rat model of lower limb ischemia?

P
Population
Sprague-Dawley rats undergoing a simulated clinical tibial cortex transverse transport procedure for lower limb ischemia.
I
Intervention
Tibial cortex transverse transport (TTT) involving the creation and mobilization of a cortical bone fragment, application of a custom external fixator, and gradual forward and backward transport over 12 days
O
Outcome
Bone fragment movement (assessed by X-ray on postoperative days 1, 7, and 12) and limb perfusion/vascularization (assessed by microvascular perfusion imaging on Day 19)surrogate

This study establishes a reproducible rat model of tibial cortex transverse transport that successfully demonstrates enhanced angiogenesis and vascular regeneration in ischemic limbs, providing a platform for future mechanistic research.

Abstract

Tibial cortex transverse transport (TTT) is an emerging surgical technique used to promote revascularization in ischemic lower limbs. This video demonstrates a reproducible rat model of TTT, detailing the surgical creation of a cortical bone fragment, the transport protocol, and postoperative assessments. The procedure enables controlled upward and downward transport of a bone fragment to stimulate angiogenic responses. Representative X-ray images acquired on postoperative days 1, 7, and 12, together with microvascular perfusion imaging performed on Day 19 after euthanasia, show clear bone fragment movement and improved limb perfusion following TTT. This model provides a practical and reproducible platform for investigating the molecular mechanisms underlying TTT-induced angiogenesis and evaluating potential therapeutic strategies for ischemic diseases. To construct this model, we simulated the clinical TTT procedure in Sprague-Dawley rats, involving three main surgical steps: ligation of the superficial femoral artery, creation and mobilization of a cortical bone fragment, and application of a custom external fixator. Over 12 days, the fragment was gradually transported forward and then backward. Perfusion imaging confirmed enhanced vascularization in the ischemic limb after the completion of the transport cycle. Overall, this standardized rat model closely mimics clinical TTT procedures and offers a valuable experimental system for studying mechanotransduction, angiogenesis, and vascular regeneration in ischemic limb conditions.

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Cite This Study

Yang et al. (2026) studied Lower limb ischemia. Tibial cortex transverse transport (TTT) was evaluated on Bone fragment movement and limb perfusion. Tibial cortex transverse transport in a Sprague-Dawley rat model demonstrated clear bone fragment movement and improved limb perfusion by postoperative day 19.

synapsesocial.com/papers/69af23813eac3accde8a176chttps://doi.org/10.3791/69181
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Also Consider

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

  1. 1Tibial cortex transverse transport promotes ischemic diabetic foot ulcer healing via enhanced angiogenesis and inflammation modulation in a novel rat model2024 · 41 citations
  2. 2Finite element analysis of biomechanical effects in rat tibia during tibial cortex transverse transport2025
  3. 3A Literature Review of Tibial Cortex Transverse Transport in Ischemic Limb Salvage2025
  4. 4Tibial Cortex Transverse Transport Facilitates Severe Diabetic Foot Wound Healing via HIF-1α-Induced Angiogenesis2024 · 18 citations
  5. 5[Research advances in limb salvage treatment of diabetic foot using tibial transverse transport].2025