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Compression stockings significantly improve hemodynamic performance in post-thrombotic syndrome irrespective of class
Christopher R Lattimer1, Mustapha Azzam, Evi Kalodiki
1Imperial College, London, United Kingdom. c.lattimer09@imperial.ac.uk
Insights
Graduated elastic compression (GEC) stockings significantly improve hemodynamics for post-thrombotic syndrome. Patient preference, rather than compression class or length, should guide stocking selection for optimal outcomes.
Area of Science:
- Vascular Medicine
- Medical Devices
- Hemodynamics
Background:
- Post-thrombotic syndrome (PTS) morbidity can be reduced by graduated elastic compression (GEC) stockings.
- Optimal GEC stocking length and compression strength for PTS remain speculative.
- This study aimed to assess GEC stocking hemodynamic performance and patient preference.
Purpose of the Study:
- To evaluate the hemodynamic performance of four different graduated elastic compression stockings.
- To determine patient preference among different GEC stocking types.
- To correlate hemodynamic improvements with GEC stocking characteristics.
Main Methods:
- Thirty-four patients with PTS were tested with four GEC stockings (class I/II, below-knee/above-knee).
- Air plethysmography measured venous filling index (VFI), venous volume, and filling time.
- Direct pressure measurements were taken using the PicoPress device.
Main Results:
- All GEC stockings significantly improved VFI, venous volume, and filling time compared to no compression.
- Hemodynamic benefit did not significantly differ between compression classes or lengths.
- A weak correlation was found between stocking pressure and VFI improvement.
Conclusions:
- GEC stockings significantly enhance hemodynamic parameters in PTS patients.
- Hemodynamic benefits are consistent across different compression classes and lengths.
- Patient preference is a key factor in selecting GEC stockings for PTS management.
Background:
Graduated elastic compression (GEC) stockings have been demonstrated to reduce the morbidity associated with post-thrombotic syndrome. The ideal length or compression strength required to achieve this is speculative and related to physician preference and patient compliance. The aim of this study was to evaluate the hemodynamic performance of four different stockings and determine the patient's preference.
Methods:
Thirty-four consecutive patients (40 legs, 34 male) with post-thrombotic syndrome were tested with four different stockings (Mediven plus open toe, Bayreuth, Germany) of their size in random order: class 1 (18-21 mm Hg) and class II (23-32 mm Hg), below-knee (BK) and above-knee thigh-length (AK). The median age, Venous Clinical Severity Score, Venous Segmental Disease Score, and Villalta scale were 62 years (range, 31-81 years), 8 (range, 1-21), 5 (range, 2-10), and 10 (range, 2-22), respectively. The C of C0-6EsAs,d,pPr,o was C0 = 2, C2 = 1, C3 = 3, C4a = 12, C4b = 7, C5 = 12, C6 = 3. Obstruction and reflux was observed on duplex in 47.5% legs, with deep venous reflux alone in 45%. Air plethysmography was used to measure the venous filling index (VFI), venous volume, and time to fill 90% of the venous volume. Direct pressure measurements were obtained while lying and standing using the PicoPress device (Microlab Elettronica, Nicolò, Italy). The pressure sensor was placed underneath the test stocking 5 cm above and 2 cm posterior to the medial malleolus. At the end of the study session, patients stated their preferred stocking based on comfort.
Results:
The VFI, venous volume, and time to fill 90% of the venous volume improved significantly with all types of stocking versus no compression. In class I, the VFI (mL/s) improved from a median of 4.9 (range, 1.7-16.3) without compression to 3.7 (range, 0-14) BK (24.5%) and 3.6 (range, 0.6-14.5) AK (26.5%). With class II, the corresponding improvement was to 4.0 (range, 0.3-16.2) BK (18.8%) and 3.7 (range, 0.5-14.2) AK (24.5%). Median stocking pressure (mm Hg) as measured with the PicoPress in class I was 23 (range, 12-33) lying and 27 (range, 19-39) standing (P < .0005) and in class II was 28 (range, 21-40) lying and 32 (range, 23-46) standing (P < .0005). There was a significant but weak correlation (Spearman) between stocking interface pressure measured directly with the PicoPress and the VFI improvement (baseline VFI-compression VFI) at r = .237; P = .005. Twenty-one patients (legs) changed their preference of compression and 38% of these (8/21 patients, 9/21 legs) preferred an AK-GEC stocking.
Conclusions:
Compression significantly improved all hemodynamic parameters on air plethysmography. However, the hemodynamic benefit did not significantly change with the class or length of stocking. These results support the liberal selection of a GEC stocking based on patient preference.
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