Chest pain

Four killers first — ACS, aortic dissection, PE, tamponade — then the structural causes.

Echo approach, step by step

Echo during or soon after pain answers four time-critical questions: is there ischaemia, and is there an aortic, pulmonary-embolic or pericardial catastrophe? It then looks for structural causes [195]. A new regional wall-motion abnormality supports ischaemia. Normal wall motion during ongoing pain makes significant ischaemia less likely but does not exclude it [138,195].

  1. Subcostal / PLAX — first 60 secondsLook for pericardial effusion and signs of tamponade, gross LV function and RV size.
  2. Apical 4, 2, 3 + PSAXScore regional wall motion in 17 segments and name the coronary territory. Use contrast if two or more segments are not seen [1].
  3. Mechanical complicationsIf the infarct is not new, look for a septal colour jet (VSD), flail mitral leaflet (papillary rupture) and an effusion after MI (rupture) [138].
  4. AortaMeasure the root and ascending aorta, and look for a flap and aortic regurgitation. View the arch from the suprasternal notch [9,173].
  5. Right heartLook for RV/LV >1.0, the McConnell sign, septal flattening, TR gradient and the 60/60 sign → PE [124,147,148].
  6. PericardiumEffusion with pleuritic pain or rub → pericarditis or myopericarditis [125].
  7. Structural causesAS (calcified valve, Vmax), HCM with LVOT obstruction, takotsubo pattern [5,13,133].
  8. LungsLung sliding (pneumothorax), B-lines and consolidation [199].

Causes & echo clues

CauseWhat echo showsConfirm with
Acute coronary syndromeNew RWMA in a coronary territory; mechanical complicationsECG, hs-troponin, angiography [138]
Aortic dissectionFlap, dilated root, AR, effusion; RWMA if a coronary is involvedCT angiography, TOE [9,173]
Pulmonary embolismRV dilatation, McConnell, 60/60, D-shaped LV, thrombus in transitCT pulmonary angiography [124]
Pericarditis / myopericarditisEffusion (often absent); regional or global dysfunction if myocarditisECG, CRP, troponin, CMR [125]
TamponadeEffusion with collapse and respiratory Doppler variationClinical findings, drainage [149]
TakotsuboWall motion abnormality beyond one coronary territoryAngiography, recovery [133]
Aortic stenosisCalcified valve, Vmax ≥4 m/sEcho grading [5]
HCMHypertrophy, SAM, LVOT gradientEcho with provocation, CMR [13]
PneumothoraxNo lung sliding, lung pointChest X-ray / CT [199]
Non-cardiac (oesophageal, musculoskeletal)Normal echoClinical

Clinical pathway to the diagnosis

  1. 0–10 minutes12-lead ECG within 10 minutes. ST elevation or equivalent → reperfusion pathway without waiting for echo [138,195].
  2. High-sensitivity troponinUse the 0/1-hour or 0/2-hour algorithm to rule in or rule out NSTEMI [138].
  3. Pre-test probability of the other killersADD-RS for dissection (ADD-RS ≥1 → aortic imaging) [203]. Clinical probability and D-dimer for PE (Wells or Geneva; age-adjusted D-dimer) [124].
  4. EchoIn the ED, use echo if ECG and troponin are non-diagnostic, the patient is unstable, a mechanical complication is suspected, or to find an alternative diagnosis [195].
  5. Further imagingCT angiography of the aorta or pulmonary arteries as indicated. Coronary CT angiography for intermediate-risk stable patients without known CAD [139,195].
  6. DispositionAdmission for ACS, dissection, PE or tamponade. Outpatient testing (stress imaging or CCTA) for low-risk patients with non-diagnostic tests [195].

Clinical pearls & pitfalls

PitfallInferior STEMI + AR murmur or pulse deficit = type A dissection involving the right coronary until proved otherwise. Look at the aortic root before antithrombotic therapy [9].

Red flags