MöckelMSearleJHammC. Early discharge using single cardiac troponin and copeptin testing in patients with suspected ACS: a randomized, controlled clinical process study. Eur Heart J2015; 36: 369–376.
2.
KellerTZellerTPeetzD. Sensitive troponin I assay in early diagnosis of acute myocardial infarction. N Engl J Med2009; 361: 868–877.
3.
ReichlinTCullenLParsonageWA. Two-hour algorithm for triage toward rule-out and rule-in of acute myocardial infarction using high-sensitivity cardiac troponin T. Am J Med2015; 128: 369–379.
4.
ReichlinTIrfanATwerenboldR. Utility of absolute and relative changes in cardiac troponin concentrations in the early diagnosis of acute myocardial infarction. Circulation2011; 124: 136–145.
5.
ReichlinTSchindlerCDrexlerB. One 10 hour rule-out and rule-in of acute myocardial infarction using high-sensitivity cardiac troponin t. Arch Intern Med2012; 172: 1211–1218.
6.
RaskovalovaTTwerenboldRCollinsonPO. Diagnostic accuracy of combined cardiac troponin and copeptin assessment for early rule-out of myocardial infarction: a systematic review and meta-analysis. Eur Heart J Acute Cardiovasc Care2014; 3: 18–27.
7.
WildiKZellwegerCTwerenboldR. Incremental value of copeptin to highly sensitive cardiac troponin I for rapid rule-out of myocardial infarction. Int J Cardiol2015; 190: 170–176.
8.
RoffiMPatronoCColletJP. 2015 ESC Guidelines for the management of acute coronary syndromes in patients presenting without persistent ST-segment elevation: Task Force for the Management of Acute Coronary Syndromes in Patients Presenting without Persistent ST-Segment Elevation of the European Society of Cardiology (ESC). Eur Heart J2016; 37: 267–315.
9.
AppleFSLerRMurakamiMM. Determination of 19 cardiac troponin I and T assay 99th percentile values from a common presumably healthy population. Clin Chem2012; 58(11): 1574–1581.
10.
ThanMCullenLAldousS. 2-Hour accelerated diagnostic protocol to assess patients with chest pain symptoms using contemporary troponins as the only biomarker. J Am Coll Cardiol2012; 59: 2091–2098.
11.
CullenLMuellerCParsonageWA. Validation of high-sensitivity troponin I in a 2-h diagnostic strategy to assess 30-day outcomes in emergency-department patients with possible acute coronary syndrome. J Am Coll Cardiol2013; 62: 1242–1249.
12.
ThanMAldousSLordSJ. A 2-hour diagnostic protocol for possible cardiac chest pain in the emergency department: a randomized clinical trial. JAMA Intern Med2014; 174(1): 51–58.
13.
MellerBCullenLParsonageWA. Accelerated diagnostic protocol using high-sensitivity cardiac troponin T in acute chest pain patients. Int J Cardiol2015; 184: 208–215.
14.
ReichlinTTwerenboldRWildiK. Prospective validation of a 1-hour algorithm to rule-out and rule-in acute myocardial infarction using a high-sensitivity cardiac troponin T assay. CMAJ2015; 187(8): E243–E252.
15.
Rubini GimenezMTwerenboldRJaegerC. One-hour rule-in and rule-out of acute myocardial infarction using high-sensitivity cardiac troponin I. Am J Med2015; 128: 861–870.
16.
MuellerCGiannitsisEChristM.; for the TRAPID-AMI Investigators. Multicenter evaluation of a 0-hour/1-hour algorithm in the diagnosis of myocardial infarction with high-sensitivity cardiac troponin T. Ann Emerg Med2016January8. pii: S0196-0644(15)01501-2. doi: 10.1016/j.annemergmed.2015.11.013. [Epub ahead of print]
17.
JaegerCWildiKTwerenboldR. One-hour rule-in and rule-out of acute myocardial infarction using high-sensitivity cardiac troponin I. Am Heart J2016; 171: 92–102.
18.
BandsteinNLjungRJohanssonM. Undetectable high sensitivity cardiac troponin T level in the emergency department and risk of myocardial infarction. J Am Coll Cardiol2014; 63: 2569–2578.
19.
ZhelevZHydeCYoungmanE. Diagnostic accuracy of single baseline measurement of Elecsys Troponin T high-sensitive assay for diagnosis of acute myocardial infarction in emergency department: systematic review and meta-analysis. BMJ2015; 350: h15. doi: 10.1136/bmj.h15.
20.
BodyRBurrowsGCarleyS. High-sensitivity cardiac troponin T concentrations below the limit of detection to exclude acute myocardial infarction: a prospective evaluation. Clin Chem2015; 61(7): 983–989.
21.
ShahASAnandASandovalY.; High-STEACS investigators. High-sensitivity cardiac troponin I at presentation in patients with suspected acute coronary syndrome: a cohort study. Lancet2015December19; 386(10012): 2481–2488. doi: 10.1016/S0140-6736(15)00391-8. Epub ahead of print 8October2015.
22.
BoeddinghausJReichlinTCullenL. Two-hour algorithm for triage towards rule-out and rule-in of acute myocardial infarction by use of high-sensitivity cardiac troponin I. Clin Chem. Epub ahead of print 21January2016. pii: clinchem.2015.249508.
23.
NestelbergerTWildiKBoeddinghausJ. Characterization of the observe zone of the ESC 2015 high-sensitivity cardiac troponin 0 h/1 h-algorithm for the early diagnosis of acute myocardial infarction. Int J Cardiol2016; 207: 238–245.
24.
FrankensteinLWuAHHallermayerK. Biological variation and reference change value of high-sensitivity troponin T in healthy individuals during short and intermediate follow-up periods. Clin Chem2011; 57(7): 1068–1071.
25.
AppleFSJaffeAS. Clinical implications of a recent adjustment to the high sensitivity cardiac troponin T assay: user beware. Clin Chem2012; 58(11): 1599–1600.
26.
BasitMBakshiNHashemM. The effect of freezing and long-term storage on the stability of cardiac troponin T. Am J Clin Pathol2007; 128(1): 164–167.