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Original Article

Pre-analytical effects of pneumatic tube transport on impedance platelet aggregometry

, MD, , , , , , , & show all
Pages 458-465 | Received 08 May 2009, Accepted 05 Aug 2009, Published online: 26 Oct 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

Alex Bourguignon, Subia Tasneem & Catherine P. Hayward. (2022) Screening and diagnosis of inherited platelet disorders. Critical Reviews in Clinical Laboratory Sciences 59:6, pages 405-444.
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Peter H. Nissen, Dorte E. Wulff, Niels Tørring & Anne-Mette Hvas. (2018) The impact of pneumatic tube transport on whole blood coagulation and platelet function assays. Platelets 29:4, pages 421-424.
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Daniel Bolliger, Miodrag Filipovic, Peter Matt, Kenichi A. Tanaka, Michael Gregor, Urs Zenklusen, Manfred D. Seeberger & Giovanna Lurati Buse. (2016) Reduced aspirin responsiveness as assessed by impedance aggregometry is not associated with adverse outcome after cardiac surgery in a small low-risk cohort. Platelets 27:3, pages 254-261.
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Sweta Kumari, Santosh Kumar, Neha Bharti & Ravi Shekhar. (2022) Impact of Pneumatic Transport System on Preanalytical Phase Affecting Clinical Biochemistry Results. Journal of Laboratory Physicians 15:01, pages 048-055.
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Michael Metze, Martin Platz, Christian Pfrepper & Sirak Petros. (2022) Gerinnungsdiagnostik im klinischen Alltag – Teil 1Coagulation diagnostics in the clinical routine—Part 1. Die Innere Medizin 63:6, pages 619-630.
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Lena Reichert, Stefan Wallner, Ralph Burkhardt, Robert Offner, Norbert Ahrens & Viola Hähnel. (2022) Triple apheresis platelet concentrate quality after pneumatic tube system, conveyor box, and courier transport: An observational study. Health Science Reports 5:3.
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Nguyen Huu Loc Khuu, Van Anh Pham, Tran Thanh Cong Vu, Vu Thanh Binh Dao, Thuy Duy Truong, Ngoc Phi Nguyen & Tuong Quan Vo. (2022) A Study on Design and Control of the Multi-Station Multi-Container Transportation System. Applied Sciences 12:5, pages 2686.
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Henriette Lorenzen, Ann‐Britt Frøstrup, Anja S. Larsen, Michelle S. Fenger, Sanne Dahdouh, Randa Zoel‐Ghina & Leif K. Nielsen. (2021) Pneumatic tube transport of blood samples affects global hemostasis and platelet function assays. International Journal of Laboratory Hematology 43:5, pages 1207-1215.
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Daniel Bolliger, Marcus D. Lancé & Martin Siegemund. (2021) Point-of-Care Platelet Function Monitoring: Implications for Patients With Platelet Inhibitors in Cardiac Surgery. Journal of Cardiothoracic and Vascular Anesthesia 35:4, pages 1049-1059.
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Charlotte Gils, Franziska Broell, Pernille J. Vinholt, Christian Nielsen & Mads Nybo. (2020) Use of clinical data and acceleration profiles to validate pneumatic transportation systems. Clinical Chemistry and Laboratory Medicine (CCLM) 58:4, pages 560-568.
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Kiyoko Kobayashi, Yasuhiro Ebihara, Ikuko Asami, Hiromi Kinoshita, Takashi Tanazawa, Yoshitada Taji, Akaru Ishida & Kenji Ikebuchi. (2019) Quality of red blood cell and platelet concentrates after transportation by a pneumatic tube system. ISBT Science Series 14:4, pages 379-386.
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Daniel Bolliger & Kenichi A. Tanaka. (2019) Platelet Count and Function—Can We Kill Two Birds With an Ultrasound Wave?. Journal of Cardiothoracic and Vascular Anesthesia 33:6, pages 1599-1600.
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Catherine P.M. Hayward & Karen A. Moffat. 2019. Platelets. Platelets 609 626 .
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Mads Nybo, Merete E Lund, Kjell Titlestad & Christian U Maegaard. (2018) Blood Sample Transportation by Pneumatic Transportation Systems: A Systematic Literature Review. Clinical Chemistry 64:5, pages 782-790.
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Sandra Le Quellec, Mickaël Paris, Christophe Nougier, Frédéric Sobas, Lucia Rugeri, Sandrine Girard, Jean-Claude Bordet, Claude Négrier & Yesim Dargaud. (2017) Pre-analytical effects of pneumatic tube system transport on routine haematology and coagulation tests, global coagulation assays and platelet function assays. Thrombosis Research 153, pages 7-13.
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Alex Pupek, Beverly Matthewson, Erin Whitman, Rachel Fullarton & Yu Chen. (2017) Comparison of pneumatic tube system with manual transport for routine chemistry, hematology, coagulation and blood gas tests. Clinical Chemistry and Laboratory Medicine (CCLM) 55:10.
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A. Magnette, M. Chatelain, B. Chatelain, H. Ten Cate & F. Mullier. (2016) Pre-analytical issues in the haemostasis laboratory: guidance for the clinical laboratories. Thrombosis Journal 14:1.
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A. Espinosa, A. Ruckert, J. Navarro, V. Videm & B. V. Sletta. (2016) Are TEG ® results in healthy blood donors affected by the transport of blood samples in a pneumatic tube system? . International Journal of Laboratory Hematology 38:4, pages e73-e76.
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Mustafa Koroglu, Mehmet Ali Erkurt, Irfan Kuku, Emin Kaya, Ilhami Berber, Ilknur Nizam, Yavuz Yagar & Seyit Ali Kayis. (2016) Assessing Safety of Pneumatic Tube System (PTS) for Patients with Very Low Hematologic Parameters. Medical Science Monitor 22, pages 1329-1333.
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Seema Agarwal, Robert Ian Johnson & Bilal Haneef Kirmani. (2015) Pre- and Post-Bypass Platelet Function Testing With Multiple Electrode Aggregometry and TEG Platelet Mapping in Cardiac Surgery. Journal of Cardiothoracic and Vascular Anesthesia 29:5, pages 1272-1276.
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Daniel Bolliger, Eckhard Mauermann & Kenichi A. Tanaka. (2015) Thresholds for Perioperative Administration of Hemostatic Blood Components and Coagulation Factor Concentrates: An Unmet Medical Need. Journal of Cardiothoracic and Vascular Anesthesia 29:3, pages 768-776.
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Cécile Kicken, Sven Van Poucke, Abraham Emanuel Marcus, Marcus D. Lancé & Yvonne Henskens. (2015) Response of platelet concentrates to pressure and temperature changes without impairment of the in vitro function. Thrombosis Research 135:4, pages 679-683.
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G. Lima-Oliveira, G. Lippi, G. L. Salvagno, F. Dima, G. Brocco, G. Picheth & G. C. Guidi. (2014) Management of preanalytical phase for routine hematological testing: is the pneumatic tube system a source of laboratory variability or an important facility tool?. International Journal of Laboratory Hematology 36:4, pages e37-e40.
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Judit Tóth, Ágota Lenkey, Anna V. Oláh, Julianna Köteles, Valéria Kissné Sziráki, Adrienne Kerényi & János Kappelmayer. (2014) Pneumatic tube system for transport of laboratory samples: preanalytical aspects. Orvosi Hetilap 155:28, pages 1113-1120.
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Saul Chemonges, Kiran Shekar, John-Paul Tung, Kimble R. Dunster, Sara Diab, David Platts, Ryan P. Watts, Shaun D. Gregory, Samuel Foley, Gabriela Simonova, Charles McDonald, Rylan Hayes, Judith Bellpart, Daniel Timms, Michelle Chew, Yoke L. Fung, Michael Toon, Marc O. Maybauer & John F. Fraser. (2014) Optimal Management of the Critically Ill: Anaesthesia, Monitoring, Data Capture, and Point-of-Care Technological Practices in Ovine Models of Critical Care. BioMed Research International 2014, pages 1-17.
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Daniel Bolliger & Kenichi A. Tanaka. (2013) Roles of Thrombelastography and Thromboelastometry for Patient Blood Management in Cardiac Surgery. Transfusion Medicine Reviews 27:4, pages 213-220.
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Simon Thalén, Ida Forsling, Jaak Eintrei, Lisbeth Söderblom & Jovan P. Antovic. (2013) Pneumatic tube transport affects platelet function measured by multiplate electrode aggregometry. Thrombosis Research 132:1, pages 77-80.
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Catherine P.M. Hayward & Karen A. Moffat. 2013. Platelets. Platelets 559 580 .
J. Martin, T. Schuster, G. Moessmer, E.F. Kochs & K.J. Wagner. (2012) Alterations in rotation thromboelastometry (ROTEM ® ) parameters: point-of-care testing vs analysis after pneumatic tube system transport. British Journal of Anaesthesia 109:4, pages 540-545.
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Marcus D. Lancé, Gerhardus J.A.J.M. Kuiper, Matthijs Sloep, Henri M.H. Spronk, René van Oerle, Hugo ten Cate, Marco A.E. Marcus & Yvonne M.C. Henskens. (2012) The effects of pneumatic tube system transport on ROTEM analysis and contact activation assessed by thrombin generation test. Thrombosis Research 130:3, pages e147-e150.
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Ismail Sari, Aliriza Arslan, Can Ozlu, Sibel Hacioglu, Mehmet Hilmi Dogu, Kamil Isler & Ali Keskin. (2012) The effect of pneumatic tube system on complete blood count parameters and thrombocyte donation in healthy donors. Transfusion and Apheresis Science 47:1, pages 81-83.
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M. D. Lancé, M. A. E. Marcus, R. van Oerle, H. M. S. Theunissen & Y. M. C. Henskens. (2012) Platelet concentrate transport in pneumatic tube systems – does it work?. Vox Sanguinis 103:1, pages 79-82.
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Kenichi A. Tanaka, Satoru Ogawa & Daniel Bolliger. (2012) A Primer for Clinical Use of Rotational Thromboelastometry. Point of Care: The Journal of Near-Patient Testing & Technology 11:2, pages 77-84.
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D. Bolliger, S. Dell-Kuster, M.D. Seeberger, K.A. Tanaka, M. Gregor, U. Zenklusen, D.A. Tsakiris & M. Filipovic. (2012) Impact of loss of high-molecular-weight von Willebrand factor multimers on blood loss after aortic valve replacement. British Journal of Anaesthesia 108:5, pages 754-762.
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Osman Evliyaoğlu, Gülten Toprak, Alicem Tekin, Mustafa Kemal Başarali, Cumhur Kilinç & Leyla Çolpan. (2012) Effect of Pneumatic Tube Delivery System Rate and Distance on Hemolysis of Blood Specimens. Journal of Clinical Laboratory Analysis 26:2, pages 66-69.
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Robin A Felder. (2011) Preanalytical Errors Introduced by Sample-Transportation Systems: A Means to Assess Them. Clinical Chemistry 57:10, pages 1349-1350.
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Juergen Koessler, Anna L. Kobsar, Kirsten Brunner, Herbert Stolz, Bettina Dossler, Ulrich Walter & Udo Steigerwald. (2011) The preanalytical influence of two different mechanical transport systems on laboratory analysis. Clinical Chemistry and Laboratory Medicine (CCLM) 49:8, pages 1379-1382.
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