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In vitro evaluation of a new temporary venous filter: The spring filter

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Abstract

Purpose

To evaluate in vitro the functional efficacy of a new variable-sized, temporary venous filter, the Spring filter (SF).

Methods

The SF was tested in a flow phantom, using flexible, thin-walled polyethylene tubes 12, 14, and 16 mm in diameter to simulate veins. Clots of three sizes were used: 6 × 10 mm, 6 × 20 mm, 9 × 20 mm. Filter deployment was performed, ensuring that its functional diameter after placement was a predetermined multiple of the radius ‘r’ of the tube: 3.0r, 2.8r, 2.6r, 2.4r. The terminal coil was visually examined for changes in configuration. Clot retention by the filter for a period of 3 min was recorded as a success. The baseline intraluminal pressure and the maximum pressure reached after clot introduction were recorded. The trapping ability was calculated from the results for 10 clots. The effect of the following parameters on filter function were studied: size of embolus, caliber of simulated vein, and functional diameter of filter.

Results

The filter configuration was stable. Not a single instance of axial tilting occurred on deployment. Functional diameter was the major determinant of filter function. One hundred percent of clots were trapped irrespective of clot size and tube caliber when the functional diameter was 3.0r. Only 73% (95% confidence interval (CI): 57%–88%) and 77% (95% CI: 61%–92%) of small emboli were held up by the filter when the functional diameters were 2.6r and 2.4r, respectively (p = 0.0001). A significant reduction in clot trapping was encountered even with medium clots when the functional diameter was 2.4r (p = 0.02).

Conclusion

Against the background of available data on retrievable vena caval filters, the current model of SF warrants further investigation.

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References

  1. Thery C, Asseman P, Amrouni M, Becquart J, Pruvost P, Lesenne M, Legghe R, Marache P (1990) Use of a new removable vena cava filter in order to prevent pulmonary embolism in patients submitted to thrombolysis. Eur Heart J 11:334–341

    Google Scholar 

  2. Millward SF, Bormanis J, Burbridge BE, Markman SJ, Peterson RA (1994) Preliminary clinical experience with the Günther temporary inferior vena cava filter. J Vasc Intervent Radiol 5:863–868

    Google Scholar 

  3. Hosaka J, Kvernebo K, Lærum F (1993) In vitro assessment of the DIL and the Greenfield vena cava filter system. Eur Radiol 9:177–186

    Google Scholar 

  4. Clagett GP, Reisch JS (1988) Prevention of venous thromboembolism in general surgical patients. Ann Surg 208:227–240

    Google Scholar 

  5. Lefkovits J, Topol EJ (1994) Direct thrombin inhibitors in cardiovascular medicine. Circulation 90:1522–1536

    Google Scholar 

  6. Neuerburg J, Günther RW, Rassmussen E, Vorwerk D, Tonn K, Handt S, Küpper W, van Hansen J (1993) New retrievable percutaneous vena cava filter: Experimental in vitro and in vivo evaluation. Cardiovasc Intervent Radiol 16:224–229

    Google Scholar 

  7. Lund G, Rysavy JA, Salomonowitz E, Cragg AH, Kotula F, Castañeda-Zúñiga WR, Hunter DW, Coleman CC, Amplatz K (1984) A new vena caval filter for percutaneous placement and retrieval: Experimental study. Radiology 152:369–372

    Google Scholar 

  8. Teitelbaum GP, McGurrin M, Davies BL, Moritz MJ, Carabasi RA, Jarrell BE, English G (1988) Insertion and recovery of a new retrievable vena caval filter. Work in progress. Invest Radiol 23:527–533

    Google Scholar 

  9. Pieri A, Santoro G, Duranti A, Mori F, Vannuzzi A, Benelli L (1993) Filtres caves temporaires. Notre experience. Analyse preliminaire de 24 cas. Phlebologie 46:457–466

    Google Scholar 

  10. Nakagawa N, Cragg AH, Smith TP, Castaneda F, Barnhart WH, DeJong SC (1994) A retrievable nitinol vena cava filter: Experimental and initial clinical results. J Vasc Intervent Radiol 5:507–512

    Google Scholar 

  11. Simon M, Athanasoulis CA, Kim D, Steinberg FL, Porter DH, Byse BH, Kleshinski S, Geller S, Orron DE, Waltman AC (1989) Simon nitinol inferior vena cava filter: Initial clinical experience. Work in progress. Radiology 172:99–103

    Google Scholar 

  12. Palestrant AM, Prince M, Simon M (1982) Comparative in vitro evaluation of the nitinol inferior vena cava filter. Radiology 145:351–355

    Google Scholar 

  13. Weissman JR, Sullivan KL (1990) In vitro assessment of clot trapping and retrieval with the temporary Günther vena caval filter, (abstract) Radiology 177(P):310

    Google Scholar 

  14. Thery C, Bauchart JJ, Lesenne M, Asseman P, Flajollet JG, Legghe R, Marache P (1992) Predictive factors of effectiveness of streptokinase in deep venous thrombosis. Am J Cardiol 69:117–122

    Google Scholar 

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Xian, Z.Y., Roy, S., Hosaka, J. et al. In vitro evaluation of a new temporary venous filter: The spring filter. Cardiovasc Intervent Radiol 18, 315–320 (1995). https://doi.org/10.1007/BF00203683

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