113
Views
0
CrossRef citations to date
0
Altmetric
Original Research

Nonspecific ST-Segment and T-Wave (NS-STT) on Electrocardiogram is Associated with Increasing the Incidence of Perioperative Deep Vein Thrombosis in Patients with Lower Extremity Fracture Under 75 Years Old

, , , , , , , ORCID Icon, & show all
Pages 8631-8641 | Published online: 23 Nov 2021

References

  • Zhang B, Wang P, Fei C, et al. Perioperative deep vein thrombosis in patients with lower extremity fractures: an observational study. Clin Appl Thromb Hemost. 2020;26:1076029620930272.
  • Terao M, Ozaki T, Sato T. Diagnosis of deep vein thrombosis after operation for fracture of the proximal femur: comparative study of ultrasonography and venography. J Orthop Sc. 2006;11(2):146–153. doi:10.1007/s00776-005-0997-2
  • Fu Y, Liu P, Xu X, et al. Deep vein thrombosis in the lower extremities after femoral neck fracture: a retrospective observational study. J Orthop Surg. 2020;28(1):2309499019901172. doi:10.1177/2309499019901172
  • Mozos I, Caraba A. Electrocardiographic predictors of cardiovascular mortality. Dis Markers. 2015;2015:727401. doi:10.1155/2015/727401
  • Badheka AO, Rathod A, Marzouka GR, et al. Isolated nonspecific ST-segment and T-wave abnormalities in a cross-sectional United States population and mortality (from NHANES III). Am J Cardiol. 2012;110(4):521–525. doi:10.1016/j.amjcard.2012.04.023
  • Geraldino-Pardilla L, Gartshteyn Y, Piña P, et al. ECG non-specific ST-T and QTc abnormalities in patients with systemic lupus erythematosus compared with rheumatoid arthritis. Lupus Sci Med. 2016;3(1):e000168. doi:10.1136/lupus-2016-000168
  • Colling M, Tourdot B, Kanthi Y. Inflammation, infection and venous thromboembolism. Circ Res. 2021;128(12):2017–2036. doi:10.1161/CIRCRESAHA.121.318225
  • Borgel D, Bianchini E, Lasne D, et al. Inflammation in deep vein thrombosis: a therapeutic target?. Hematology. 2019;24(1):742–750. doi:10.1080/16078454.2019.1687144
  • Alipanahzadeh H, Ghulamreza R, Shokouhian M, et al. Deep vein thrombosis: a less noticed complication in hematologic malignancies and immunologic disorders. J Thromb Thrombolysis. 2020;50(2):318–329. doi:10.1007/s11239-019-02005-6
  • Culić V. Inflammation, coagulation, weather and arrhythmogenesis: is there a linkage?. Int J Cardiol. 2014;176(1):289–293. doi:10.1016/j.ijcard.2014.06.078
  • Moreno G, Rodríguez A, Reyes L, et al. Corticosteroid treatment in critically ill patients with severe influenza pneumonia: a propensity score matching study. Intensive Care Med. 2018;44(9):1470–1482. doi:10.1007/s00134-018-5332-4
  • Hong J, Tong Y, He J, et al. Association between tumor molecular subtype, clinical stage and axillary pathological response in breast cancer patients undergoing complete pathological remission after neoadjuvant chemotherapy: potential implications for de-escalation of axillary surgery. Ther Adv Med Oncol. 2021;13:1758835921996673. doi:10.1177/1758835921996673
  • Mantoni M. Ultrasound of limb veins. Eur Radiol. 2001;11(9):1557–1562. doi:10.1007/s003300101016
  • Greenfield LJ, Proctor MC, Rodriguez JL, et al. Posttrauma thromboembolism prophylaxis. J Trauma. 1997;42(1):100–103. doi:10.1097/00005373-199701000-00017
  • Kearon C, Akl EA, Comerota AJ, et al. Antithrombotic therapy for VTE disease: antithrombotic therapy and prevention of thrombosis, 9th ed: American College of Chest Physicians evidence-based clinical practice guidelines. Chest. 2012;141(2 Suppl):e419S–e496S. doi:10.1378/chest.11-2301
  • Kumar A, Lloyd-Jones D. Clinical significance of minor nonspecific ST-segment and T-wave abnormalities in asymptomatic subjects: a systematic review. Cardiol Rev. 2007;15(3):133–142. doi:10.1097/01.crd.0000249382.65955.14
  • Greenland P, Xie X, Liu K, et al. Impact of minor electrocardiographic ST-segment and/or T-wave abnormalities on cardiovascular mortality during long-term follow-up. Am J Cardiol. 2003;91(9):1068–1074. doi:10.1016/S0002-9149(03)00150-4
  • Bartel A, Heyden S, Tyroler H, et al. Electrocardiographic predictors of coronary heart disease. Arch Intern Med. 1971;128(6):929–937. doi:10.1001/archinte.1971.00310240083010
  • Miall W, Del Campo E, Fodor J, et al. Longitudinal study of heart disease in a Jamaican rural population. I. Prevalence, with special reference to ECG findings. Bull World Health Organ. 1972;46(4):429–441.
  • Strogatz D, Tyroler H, Watkins L, et al. Electrocardiographic abnormalities and mortality among middle-aged black men and white men of Evans County, Georgia. J Chronic Dis. 1987;40(2):149–155. doi:10.1016/0021-9681(87)90066-X
  • Sutherland S, Gazes P, Keil J, et al. Electrocardiographic abnormalities and 30-year mortality among white and black men of the Charleston Heart Study. Circulation. 1993;88(6):2685–2692. doi:10.1161/01.CIR.88.6.2685
  • Rose G, Baxter P, Reid D, et al. Prevalence and prognosis of electrocardiographic findings in middle-aged men. Br Heart J. 1978;40(6):636–643. doi:10.1136/hrt.40.6.636
  • Higgins I, Kannel W, Dawber T. The electrocardiogram in epidemiological studies: reproducibility, validity, and international comparison. Br J Prev Soc Med. 1965;19:53–68. doi:10.1136/jech.19.2.53
  • Ostrander L, Brandt R, Kjelsberg M, et al. Electrocardiographic findings among the adult population of a total natural community, Tecumseh, Michigan. Circulation. 1965;31(6):888–898. doi:10.1161/01.CIR.31.6.888
  • Cullen K, Murphy B, Cumpston G. Electrocardiograms in the Busselton population. Aust N Z J Psychiatry. 1974;4(4):325–330. doi:10.1111/j.1445-5994.1974.tb03199.x
  • Ostör E, Schnohr P, Jensen G, et al. Electrocardiographic findings and their association with mortality in the Copenhagen City Heart Study. Eur Heart J. 1981;2(4):317–328. doi:10.1093/oxfordjournals.eurheartj.a061212
  • Reunanen A, Aromaa A, Pyörälä K, et al. The Social Insurance Institution’s coronary heart disease study. Baseline data and 5-year mortality experience. Acta Med Scand Suppl. 1983;673:1–120.
  • Kumar A, Prineas R, Arnold A, et al. Prevalence, prognosis, and implications of isolated minor nonspecific ST-segment and T-wave abnormalities in older adults: cardiovascular health study. Circulation. 2008;118(25):2790–2796. doi:10.1161/CIRCULATIONAHA.108.772541
  • Farhan HL, Hassan KS, Al-Belushi A, et al. Diagnostic value of electrocardiographic T wave inversion in lead aVL in diagnosing coronary artery disease in patients with chronic stable angina. Oman Med J. 2010;25(2):124–127. doi:10.5001/omj.2010.33
  • Birnbaum Y, Wilson JM, Fiol M, et al. ECG diagnosis and classification of acute coronary syndromes. Ann Noninvasive Electrocardiol. 2014;19(1):4–14. doi:10.1111/anec.12130
  • Jupiter D, Saenz F, Mileski W, et al. Acute deep venous thrombosis and pulmonary embolism in foot and ankle trauma in the national trauma data bank: an update and reanalysis. J Foot Ankle Surg. 2019;58(6):1152–1162. doi:10.1053/j.jfas.2019.03.011
  • Weinraub G, Newport I, Kim B, et al. Outcomes following Open Reduction Internal Fixation of ankle fractures (ORIF) by Podiatric surgeons. J Foot Ankle Surg. 2021;60(5):960–963. doi:10.1053/j.jfas.2021.04.004
  • Wen J, Su M. A randomized trial of Tai Chi on preventing hypertension and hyperlipidemia in middle-aged and elderly patients. Int J Environ Res Public Health. 2021;18(10):5480. doi:10.3390/ijerph18105480
  • Almegbel F, Alotaibi I, Alhusain F, et al. Period prevalence, risk factors and consequent injuries of falling among the Saudi elderly living in Riyadh, Saudi Arabia: a cross-sectional study. BMJ Open. 2018;8(1):e019063. doi:10.1136/bmjopen-2017-019063
  • Prestmo A, Hagen G, Sletvold O, et al. Comprehensive geriatric care for patients with hip fractures: a prospective, randomised, controlled trial. Lancet. 2015;385(9978):1623–1633.
  • George J, Sharma V, Farooque K, et al. Injury mechanisms of hip fractures in India. Hip Pelvis. 2021;33(2):62–70. doi:10.5371/hp.2021.33.2.62