Literature DB >> 26525487

Effectiveness of Intermittent Pneumatic Compression Devices for Venous Thromboembolism Prophylaxis in High-Risk Surgical Patients: A Systematic Review.

Juliessa M Pavon1, Soheir S Adam2, Zayd A Razouki3, Jennifer R McDuffie4, Paul F Lachiewicz5, Andrzej S Kosinski6, Christopher A Beadles7, Thomas L Ortel2, Avishek Nagi3, John W Williams4.   

Abstract

BACKGROUND: Thromboprophylaxis regimens include pharmacologic and mechanical options such as intermittent pneumatic compression devices (IPCDs). There are a wide variety of IPCDs available, but it is uncertain if they vary in effectiveness or ease of use. This is a systematic review of the comparative effectiveness of IPCDs for selected outcomes (mortality, venous thromboembolism [VTE], symptomatic or asymptomatic deep vein thrombosis, major bleeding, ease of use, and adherence) in postoperative surgical patients.
METHODS: We searched MEDLINE (via PubMed), Embase, CINAHL, and Cochrane CENTRAL from January 1, 1995, to October 30, 2014, for randomized controlled trials, as well as relevant observational studies on ease of use and adherence.
RESULTS: We identified 14 eligible randomized controlled trials (2633 subjects) and 3 eligible observational studies (1724 subjects); most were conducted in joint arthroplasty patients. Intermittent pneumatic compression devices were comparable to anticoagulation for major clinical outcomes (VTE: risk ratio, 1.39; 95% confidence interval, 0.73-2.64). Limited data suggest that concurrent use of anticoagulation with IPCD may lower VTE risk compared with anticoagulation alone, and that IPCD compared with anticoagulation may lower major bleeding risk. Subgroup analyses did not show significant differences by device location, mode of inflation, or risk of bias elements. There were no consistent associations between IPCDs and ease of use or adherence.
CONCLUSIONS: Intermittent pneumatic compression devices are appropriate for VTE thromboprophylaxis when used in accordance with current clinical guidelines. The current evidence base to guide selection of a specific device or type of device is limited.
Copyright © 2016 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  anticoagulation; intermittent pneumatic compression devices; joint arthroplasty; surgery; venous thromboembolism prophylaxis

Mesh:

Year:  2015        PMID: 26525487     DOI: 10.1016/j.arth.2015.09.043

Source DB:  PubMed          Journal:  J Arthroplasty        ISSN: 0883-5403            Impact factor:   4.757


  17 in total

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2.  Surviving Sepsis Campaign: International Guidelines for Management of Sepsis and Septic Shock: 2016.

Authors:  Andrew Rhodes; Laura E Evans; Waleed Alhazzani; Mitchell M Levy; Massimo Antonelli; Ricard Ferrer; Anand Kumar; Jonathan E Sevransky; Charles L Sprung; Mark E Nunnally; Bram Rochwerg; Gordon D Rubenfeld; Derek C Angus; Djillali Annane; Richard J Beale; Geoffrey J Bellinghan; Gordon R Bernard; Jean-Daniel Chiche; Craig Coopersmith; Daniel P De Backer; Craig J French; Seitaro Fujishima; Herwig Gerlach; Jorge Luis Hidalgo; Steven M Hollenberg; Alan E Jones; Dilip R Karnad; Ruth M Kleinpell; Younsuk Koh; Thiago Costa Lisboa; Flavia R Machado; John J Marini; John C Marshall; John E Mazuski; Lauralyn A McIntyre; Anthony S McLean; Sangeeta Mehta; Rui P Moreno; John Myburgh; Paolo Navalesi; Osamu Nishida; Tiffany M Osborn; Anders Perner; Colleen M Plunkett; Marco Ranieri; Christa A Schorr; Maureen A Seckel; Christopher W Seymour; Lisa Shieh; Khalid A Shukri; Steven Q Simpson; Mervyn Singer; B Taylor Thompson; Sean R Townsend; Thomas Van der Poll; Jean-Louis Vincent; W Joost Wiersinga; Janice L Zimmerman; R Phillip Dellinger
Journal:  Intensive Care Med       Date:  2017-01-18       Impact factor: 17.440

3.  Hemodynamic analysis of intermittent pneumatic compression combined with hyperthermia after total hip arthroplasty: an experiment on male rabbits.

Authors:  Siping Zhang; Pengcheng Ma; Aikeremujiang Muheremu; Rongxin Sun; Hao Chai; Kan Jiang
Journal:  Am J Transl Res       Date:  2022-05-15       Impact factor: 3.940

4.  American Society of Hematology 2019 guidelines for management of venous thromboembolism: prevention of venous thromboembolism in surgical hospitalized patients.

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Journal:  Blood Adv       Date:  2019-12-10

Review 5.  Neuromuscular electrical stimulation for the prevention of venous thromboembolism.

Authors:  Shahab Hajibandeh; Shahin Hajibandeh; George A Antoniou; James Rh Scurr; Francesco Torella
Journal:  Cochrane Database Syst Rev       Date:  2017-11-21

6.  Superiority Claims for Spinal Devices: A Systematic Review of Randomized Controlled Trials.

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7.  American Society of Hematology 2021 guidelines for management of venous thromboembolism: prevention and treatment in patients with cancer.

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Journal:  Blood Adv       Date:  2021-02-23

Review 8.  Enhanced recovery after surgery: Current research insights and future direction.

Authors:  Aliza Abeles; Richard Mark Kwasnicki; Ara Darzi
Journal:  World J Gastrointest Surg       Date:  2017-02-27

9.  Asia-Pacific venous thromboembolism consensus in knee and hip arthroplasty and hip fracture surgery: Part 2. Mechanical venous thromboembolism prophylaxis.

Authors:  Chavarin Amarase; Aree Tanavalee; Viroj Larbpaiboonpong; Myung Chul Lee; Ross W Crawford; Masaaki Matsubara; Yixin Zhou
Journal:  Knee Surg Relat Res       Date:  2021-06-30

Review 10.  Electrical muscle stimulation in thomboprophylaxis: review and a derived hypothesis about thrombogenesis-the 4th factor.

Authors:  Christos Stefanou
Journal:  Springerplus       Date:  2016-06-24
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