The aim of this study was to identify factors independently associated with symptomatic venous thromboembolism (VTE) following acute Achilles tendon rupture (ATR), and to suggest a clinical VTE risk assessment tool for patients with ATR. From 2010–2018, 984 consecutive adults (median age 47yrs, 73% male) sustaining an ATR were retrospectively identified. There were 95% managed non-operatively (below-knee cast 52%, n=507/984; walking boot 44%, n=432/984), with 5% (n=45/984) undergoing primary operative repair (<6wks). VTE was diagnosed using medical records and national imaging archives, reviewed at a mean of 5yrs (1–10) post-injury. Regression was performed to identify factors independently associated with VTE. Incidence of VTE within 90 days of ATR was 3.6% (n=35/984; deep vein thrombosis 2.1% [n=21/984], pulmonary embolism 1.9% [n=19/984]). Age ≥50yrs (adjusted OR [aOR] 2.3, p=0.027), personal history of VTE/thrombophilia (aOR 6.1, p=0.009) and family history of VTE (aOR 20.9, p<0.001) were independently associated with VTE. These non-modifiable risk factors were incorporated into a VTE risk assessment tool. 23% of patients developing VTE (n=8/35) had a relevant personal or family history, but incorporating age into the tool identified 69% of patients with VTE (n=24/35). Non weight-bearing ≥2wks after ATR was also independently associated with VTE (aOR 3.2, p=0.026). Age ≥50 years, personal history of VTE/thrombophilia and a positive family history were independently associated with VTE following ATR. Incorporating age into our suggested VTE risk assessment tool enhanced sensitivity in identifying at-risk patients. Early weight-bearing in an appropriate orthosis may be beneficial in VTE risk reduction.
Patients with a history of venous thromboembolism (VTE) are considered at very high risk for recurrence after lower limb arthroplasty (LLA). However, the chance of a new VTE episode after LLA has not been yet quantified. The aim of this study was to define the incidence of VTE recurrence following knee and hip arthroplasty. The case notes for all LLA patients treated at our hospital from 2009 to 2011 were reviewed. There were 5946 primary and revision LLA operations in total; 118 of these interventions were performed in 106 patients with a history of VTE. This group included 69 females and 37 males with a mean age of 69.9. Routine thromboprophylaxis for LLA patients included mechanical (footpumps & TED stockings) plus chemical prophylaxis using Aspirin 150 mg for 6 weeks. Patients with a VTE history had the same mechanical prophylaxis but received warfarin for 3 months. There were no fatal VTEs within 90 days of surgery. There were 5 episodes (4.2%) of VTE recurrence and specifically 4 PE and one DVT (femoral vein) at 4 months after the operation. Two of the PEs were asymptomatic, diagnosed on CTPA scans being requested for low O2 saturations on routine monitoring. In the group of patients without a VTE history there were 35 VTE episodes (0.6%), indicating a significantly lower rate of VTE (p=0.001) in comparison with the study group. Patients with a history of VTE had a 4.2% chance of having a further VTE. This is seven times greater than the rate among all other patients despite using more aggressive chemoprophylaxis.
Tranexamic Acid (TA) has been shown to decrease peri-operative bleeding in primary Total Knee Replacement (TKR) surgery. There are still concerns with regards to the increased risk of thromboembolic events with the use of TA. The aim of this study was to assess whether the use of pre-operative TA increased the incidence of Deep Vein Thrombosis (DVT) and Pulmonary Embolism (PE) in TKR. Patients who underwent primary TKR between August 2007 and August 2009 were identified from the databases of three surgeons within the lower limb arthroplasty unit. A retrospective case notes analysis was performed. DVT was diagnosed on Duplex Ultrasound Scan and PE on CT Pulmonary Angiogram. A positive result was a diagnosis of DVT or PE within 3 months of surgery.INTRODUCTION
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