Prone Positioning as a Potential Risk Factor for Deep Vein Thrombosis in COVID-19 Patients: A Hypothesis Generating Observation
Abstract
:1. Introduction
2. Materials and Methods
2.1. Patient Selection
2.2. Baseline Demographics, Disease Severity and Outcome
2.3. Ultrasound DVT Screening, DVT Diagnosis and Thromboembolic Events
2.4. Initiation/Duration of Prone Positioning, Respiratory Parameters and Fluid Balance
2.5. Anticoagulation Treatment and Bleeding Complications
2.6. Statistics
3. Results
3.1. Baseline Demographics, Disease Severity and Outcome
3.2. DVT Diagnosis, Anticoagulation Regimen and Adverse Events
3.3. Prone Position Time, Respiratory Parameters and Fluid Balance
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Helms, J.; Tacquard, C.; Severac, F.; Leonard-Lorant, I.; Ohana, M.; Delabranche, X.; Merdji, H.; Clere-Jehl, R.; Schenck, M.; Fagot Gandet, F.; et al. High Risk of Thrombosis in Patients with Severe SARS-CoV-2 Infection: A Multicenter Prospective Cohort Study. Intensive Care Med. 2020, 46, 1089–1098. [Google Scholar] [CrossRef] [PubMed]
- Ren, B.; Yan, F.; Deng, Z.; Zhang, S.; Xiao, L.; Wu, M.; Cai, L. Extremely High Incidence of Lower Extremity Deep Venous Thrombosis in 48 Patients with Severe COVID-19 in Wuhan. Circulation 2020, 142, 181–183. [Google Scholar] [CrossRef] [PubMed]
- Bikdeli, B.; Madhavan, M.V.; Jimenez, D.; Chuich, T.; Dreyfus, I.; Driggin, E.; Nigoghossian, C.; Ageno, W.; Madjid, M.; Guo, Y.; et al. COVID-19 and Thrombotic or Thromboembolic Disease: Implications for Prevention, Antithrombotic Therapy, and Follow-Up: JACC State-of-the-Art Review. J. Am. Coll. Cardiol. 2020, 75, 2950–2973. [Google Scholar] [CrossRef] [PubMed]
- Minet, C.; Potton, L.; Bonadona, A.; Hamidfar-Roy, R.; Somohano, C.A.; Lugosi, M.; Cartier, J.C.; Ferretti, G.; Schwebel, C.; Timsit, J.F. Venous Thromboembolism in the ICU: Main Characteristics, Diagnosis and Thromboprophylaxis. Crit. Care 2015, 19, 287. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Ibrahim, E.H.; Iregui, M.; Prentice, D.; Sherman, G.; Kollef, M.H.; Shannon, W. Deep Vein Thrombosis during Prolonged Mechanical Ventilation despite Prophylaxis. Crit. Care Med. 2002, 30, 771–774. [Google Scholar] [CrossRef] [PubMed]
- Cook, D.; Attia, J.; Weaver, B.; McDonald, E.; Meade, M.; Crowther, M. Venous Thromboembolic Disease: An Observational Study in Medical-Surgical Intensive Care Unit Patients. J. Crit. Care 2000, 15, 127–132. [Google Scholar] [CrossRef]
- Tavazzi, G.; Civardi, L.; Caneva, L.; Mongodi, S.; Mojoli, F. Thrombotic Events in SARS-CoV-2 Patients: An Urgent Call for Ultrasound Screening. Intensive Care Med. 2020, 46, 1121–1123. [Google Scholar] [CrossRef] [PubMed]
- Needleman, L.; Cronan, J.J.; Lilly, M.P.; Merli, G.J.; Adhikari, S.; Hertzberg, B.S.; DeJong, M.R.; Streiff, M.B.; Meissner, M.H. Ultrasound for Lower Extremity Deep Venous Thrombosis: Multidisciplinary Recommendations from the Society of Radiologists in Ultrasound Consensus Conference. Circulation 2018, 137, 1505–1515. [Google Scholar] [CrossRef] [PubMed]
- Zang, X.; Wang, Q.; Zhou, H.; Liu, S.; Xue, X. Group C-EPPS: Efficacy of Early Prone Position for COVID-19 Patients with Severe Hypoxia: A Single-Center Prospective Cohort Study. Intensive Care Med. 2020, 46, 1927–1929. [Google Scholar] [CrossRef] [PubMed]
- Bilaloglu, S.; Aphinyanaphongs, Y.; Jones, S.; Iturrate, E.; Hochman, J.; Berger, J.S. Thrombosis in Hospitalized Patients with COVID-19 in a New York City Health System. JAMA 2020, 324, 799–801. [Google Scholar] [CrossRef] [PubMed]
- REMAP-CAP Investigators; ACTIV-4a Investigators; ATTACC Investigators; Goligher, E.C.; Bradbury, C.A.; McVerry, B.J.; Lawler, P.R.; Berger, J.S.; Gong, M.N.; Carrier, M.; et al. Therapeutic Anticoagulation with Heparin in Critically Ill Patients with COVID-19. N. Engl. J. Med. 2021, 385, 777–789. [Google Scholar]
- Virchow, R. Thrombose und Embolie; Johann Ambrosius Barth: Leipzig, Germany, 1910; pp. 1846–1856. [Google Scholar]
- Voicu, S.; Ketfi, C.; Stepanian, A.; Chousterman, B.G.; Mohamedi, N.; Siguret, V.; Mebazaa, A.; Megarbane, B.; Bonnin, P. Pathophysiological Processes Underlying the High Prevalence of Deep Vein Thrombosis in Critically Ill COVID-19 Patients. Front. Physiol. 2020, 11, 608788. [Google Scholar] [CrossRef]
- Middeldorp, S.; Coppens, M.; van Haaps, T.F.; Foppen, M.; Vlaar, A.P.; Muller, M.C.A.; Bouman, C.C.S.; Beenen, L.F.M.; Kootte, R.S.; Heijmans, J.; et al. Incidence of Venous Thromboembolism in Hospitalized Patients with COVID-19. J. Thromb. Haemost. 2020, 18, 1995–2002. [Google Scholar] [CrossRef]
- Zhou, F.; Yu, T.; Du, R.; Fan, G.; Liu, Y.; Liu, Z.; Xiang, J.; Wang, Y.; Song, B.; Gu, X.; et al. COVID-19 and Coagulation: Bleeding and Thrombotic Manifestations of SARSCoV-2 Infection. Clinical Course and Risk Factors for Mortality of Adult Inpatients with COVID-19 in Wuhan, China: A Retrospective Cohort Study. Lancet 2020, 395, 1054–1062. [Google Scholar] [CrossRef]
- Al-Samkari, H.; Karp Leaf, R.S.; Dzik, W.H.; Carlson, J.C.T.; Fogerty, A.E.; Waheed, A.; Goodarzi, K.; Bendapudi, P.K.; Bornikova, L.; Gupta, S.; et al. COVID-19 and Coagulation: Bleeding and Thrombotic Manifestations of SARS-CoV-2 Infection. Blood 2020, 136, 489–500. [Google Scholar] [CrossRef]
- Shriver, M.F.; Zeer, V.; Alentado, V.J.; Mroz, T.E.; Benzel, E.C.; Steinmetz, M.P. Lumbar Spine Surgery Positioning Complications: A Systematic Review. Neurosurg. Focus 2015, 39, E16. [Google Scholar] [CrossRef] [Green Version]
- Guerin, C.; Reignier, J.; Richard, J.C.; Beuret, P.; Gacouin, A.; Boulain, T.; Mercier, E.; Badet, M.; Mercat, A.; Baudin, O.; et al. Prone Positioning in Severe Acute Respiratory Distress Syndrome. N. Engl. J. Med. 2013, 368, 2159–2168. [Google Scholar] [CrossRef] [PubMed]
- Willenberg, T.; Clemens, R.; Haegeli, L.M.; Amann-Vesti, B.; Baumgartner, I.; Husmann, M. The Influence of Abdominal Pressure on Lower Extremity Venous Pressure and Hemodynamics: A Human In-Vivo Model Simulating the Effect of Abdominal Obesity. Eur. J. Vasc. Endovasc. Surg. 2011, 41, 849–855. [Google Scholar] [CrossRef] [Green Version]
- Al-Saffar, F.; Gupta, E.; Siddiqi, F.; Faisal, M.; Jones, L.M.; Seeram, V.; Louis, M.; Cury, J.D.; Bajwa, A.A.; Shujaat, A. Is There Any Association between PEEP and Upper Extremity DVT? Crit. Care Res. Pract. 2015, 2015, 614598. [Google Scholar] [CrossRef]
- Minami, K.; Iida, M.; Iida, H. Case Report: Central Venous Catheterization via Internal Jugular Vein with Associated Formation of Perioperative Venous Thrombosis during Surgery in the Prone Position. J. Anesth. 2012, 26, 464–466. [Google Scholar] [CrossRef]
- Hamada, K.; Doi, T.; Sakura, M.; Matsumoto, K.; Yanagisawa, K.; Suzuki, T.; Kikuchi, N.; Okuda, J.; Miyazaki, H.; Okoshi, H.; et al. Effects of Hydration on Fluid Balance and Lower-Extremity Blood Viscosity during Long Airplane Flights. JAMA 2002, 287, 844–845. [Google Scholar] [CrossRef]
Baseline Demographics, Disease Severity and Outcome Parameters | ||||||||
---|---|---|---|---|---|---|---|---|
All (n = 21) | Patients without DVT (n = 10) | Patients with DVT (n = 11) | p-Value | |||||
Age (years) median (IQR) | 64 (58; 68.5) | 64 (58; 69) | 62 (58; 68) | 0.654 | ||||
Male n (%) | 16 (76.2%) | 8 (80) | 8 (72.7) | 1.000 | ||||
BMI (kg/m2) median (IQR) | 31 (27; 33.8) | 30 (26.5; 33.7) | 32 (31; 34) | 0.387 | ||||
SAPS II score median (IQR) | 54 (37; 69) | 56.5 (41; 86) | 54 (44; 66) | 0.756 | ||||
Active cancer n (%) | 3 (14.3) | 1 (9.1) | 2 (20) | 1.000 | ||||
Start mechanical ventilation ICU day | 1 (1; 1) | 1 (1; 1.25) | 1 (1; 1) | 0.586 | ||||
P/F ratio ICU day 1 (mmHg) median (IQR) | 100 (74; 114) | 102 (69; 113) | 95 (75; 121) | 0.901 | ||||
Total ICU-LOS (days) median (IQR) | 16 (10.5; 23) | 12.5 (9.5; 16.8) | 19 (12; 31) | 0.118 | ||||
ICU death n (%) | 4 (19) | 2 (20) | 2 (18.2) | 1.000 | ||||
Adverse Events and Anticoagulation | ||||||||
Pulmonary embolism n (%) | 2 (9.5) | 0 (0) | 2 (18.2) | 0.476 | ||||
Upper extremity DVT n (%) | 3 (14.3) | 0 (0) | 3 (27.3) | 0.214 | ||||
Bleeding complication n (%) | 3 (14.3) | 1 (10) (major bleeding) | 2 (18.2) (minor bleedings) | 1.000 | ||||
Prophylactic anticoagulation before day 5/7 n (%) | 11 (52.4) | 6 (60) | 5 (45.5) | 0.725 | ||||
High-prophylactic anticoagulation before day 5/7 n (%) | 4 (19) | 1 (10) | 3 (27.3) | |||||
Therapeutic anticoagulation before day 5/7 n (%) | 6 (28.6) | 3 (30) | 3 (27.3) | |||||
Inflammatory and Coagulation Parameters upon ICU Admission | ||||||||
Platelets (×109/L) median (IQR) | 201 (174; 297) | 190 (152; 212) | 214 (188; 346) | 0.051 | ||||
INR median (IQR) | 1.1 (1.1; 1.3) | 1.1 (1.0; 1.3) | 1.1 (1.1; 1.3) | 0.705 | ||||
Fibrinogen (g/L) median (IQR) | 5.3 (3.6; 6.3) | 4.2 (3.4; 5.6) | 6.2 (4.3; 6.7) | 0.114 | ||||
aPTT (s) median (IQR) | 33 (29; 36) | 35 (31; 36) | 31 (29; 35) | 0.197 | ||||
D-Dimers (μg/mL) median (IQR) | 1.3 (0.6; 4.3) | 1.1 (0.6; 1.5) | 1.9 (1.3; 5.4) | 0.114 | ||||
CRP (mg/L) median (IQR) | 146 (69; 215) | 146 (48; 168) | 149 (96; 244) | 0.314 | ||||
Ferritin (µg/L) median (IQR) | 1501 (997; 2156) | 1764 (1146; 4378) | 1194 (898; 2176) | 0.282 | ||||
Leucocytes (109/L) median (IQR) | 7.1 (5.2; 10.1) | 5.4 (2.9; 8.9) | 8.9 (5.6; 10.8) | 0.085 | ||||
Lymphocytes (109/L) median (IQR) | 0.58 (0.38; 0.78) | 0.65 (0.3; 0.74) | 0.49 (0.38; 1.41) | 0.973 | ||||
Prone Position Time and Respiratory Parameters on ICU Day 5 and 7 | ||||||||
ICU day 5 | ICU day 7 | |||||||
All (n = 21) | Patients without DVT (n = 10) | Patients with DVT (n = 11) | p-Value | All (n = 21) | Patients without DVT (n = 10) | Patients with DVT (n = 11) | p-Value | |
Patient in prone position n (%) | 16 (76.2) | 7 (70) | 9 (81.8) | 0.635 | 16 (76.2) | 7 (70) | 9 (81.8) | 0.635 |
Patient without prone position n (%) | 5 (23.8) | 3 (30) | 2 (18.2) | 5 (23.8) | 3 (30) | 2 (18.2) | 0.635 | |
Prone position time (hours) median (IQR) | 43 (8; 68) | 28 (0; 56.3) | 57 (19; 72) | 0.227 | 43 (9; 80) | 28 (0; 73) | 71 (19; 104) | 0.060 |
P/F ratio ICU (mmHg) median (IQR) | 146 (98; 163) | 155 (112; 170) | 120 (95; 151) | 0.274 | 135 (119; 171) | 147 (126; 182) | 127 (113; 160) | 0.323 |
Average PEEP until day 5/7 (mbar) median (IQR) | 12.7 (12; 14.6) | 12.9 (11.8; 14.3) | 12.7 (12.1; 15) | 0.654 | 12.8 (11.4; 14.3) | 13 (11.1; 14.1) | 12.4 (11.6; 14.7) | 0.756 |
Maximum PEEP until day 5/7 (mbar) median (IQR) | 15 (14; 15.5) | 15 (13.8; 15) | 15 (15; 18) | 0.1 | 15 (14.5; 16.5) | 15 (14; 15.3) | 15 (15; 18) | 0.319 |
Cumulative fluid balance (mL) median (IQR) | 1882 (−98; 4820) | 1678 (349; 6490) | 2112 (−1651; 1315) | 0.468 | 1425 (−552; 4505) | 475 (−2101; 3781) | 0.605 |
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Gebhard, C.E.; Zellweger, N.; Gebhard, C.; Hollinger, A.; Chrobok, L.; Stähli, D.; Schönenberger, C.M.; Todorov, A.; Aschwanden, M.; Siegemund, M. Prone Positioning as a Potential Risk Factor for Deep Vein Thrombosis in COVID-19 Patients: A Hypothesis Generating Observation. J. Clin. Med. 2022, 11, 103. https://doi.org/10.3390/jcm11010103
Gebhard CE, Zellweger N, Gebhard C, Hollinger A, Chrobok L, Stähli D, Schönenberger CM, Todorov A, Aschwanden M, Siegemund M. Prone Positioning as a Potential Risk Factor for Deep Vein Thrombosis in COVID-19 Patients: A Hypothesis Generating Observation. Journal of Clinical Medicine. 2022; 11(1):103. https://doi.org/10.3390/jcm11010103
Chicago/Turabian StyleGebhard, Caroline E., Núria Zellweger, Catherine Gebhard, Alexa Hollinger, Leon Chrobok, David Stähli, Christof M. Schönenberger, Atanas Todorov, Markus Aschwanden, and Martin Siegemund. 2022. "Prone Positioning as a Potential Risk Factor for Deep Vein Thrombosis in COVID-19 Patients: A Hypothesis Generating Observation" Journal of Clinical Medicine 11, no. 1: 103. https://doi.org/10.3390/jcm11010103
APA StyleGebhard, C. E., Zellweger, N., Gebhard, C., Hollinger, A., Chrobok, L., Stähli, D., Schönenberger, C. M., Todorov, A., Aschwanden, M., & Siegemund, M. (2022). Prone Positioning as a Potential Risk Factor for Deep Vein Thrombosis in COVID-19 Patients: A Hypothesis Generating Observation. Journal of Clinical Medicine, 11(1), 103. https://doi.org/10.3390/jcm11010103