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Noninvasive Determination of Vortex Formation Time Using Transesophageal Echocardiography During Cardiac Surgery
Published on: November 28, 2018
Poor Agreement Between Preoperative Transthoracic Echocardiography and Intraoperative Transesophageal
David R McIlroy1,2, Pagen Wettig3, Jedidah Burton3
1From the Department of Anesthesiology, Vanderbilt University, Nashville, Tennessee.
Insights
Agreement between preoperative transthoracic echocardiography (TTE) and intraoperative transesophageal echocardiography (TEE) for grading diastolic dysfunction is poor. This highlights potential discrepancies in assessing cardiac function during surgery.
Area of Science:
- Cardiology
- Medical Imaging
- Anesthesiology
Background:
- Echocardiography guidelines exist for diastolic dysfunction grading via transthoracic echocardiography (TTE).
- Transesophageal echocardiography (TEE) is used intraoperatively, but its agreement with TTE for diastolic dysfunction grading is unknown.
- This study assesses agreement between awake preoperative TTE and intraoperative TEE for diastolic dysfunction grading.
Purpose of the Study:
- To evaluate the agreement between awake preoperative TTE and intraoperative TEE in grading diastolic dysfunction.
- To compare Doppler measurements, including e'lat and E/e'lat, between TTEawake and TEEanesth.
Main Methods:
- 98 patients undergoing cardiac surgery had Doppler measurements taken via TTE (awake and after anesthesia) and TEE (after anesthesia).
- Diastolic dysfunction grade was the primary endpoint, assessed using a simplified algorithm and weighted κ statistic.
- Secondary endpoints (e'lat, E/e'lat) were compared using Bland-Altman limits of agreement.
Main Results:
- Poor agreement was observed: 54% of patients showed ≥1 grade difference, and 10% showed ≥2 grade difference (weighted κ = 0.35).
- Bland-Altman analysis revealed significant differences and wide limits of agreement for e'lat and E/e'lat.
- 36-39% of paired measurements fell outside acceptable agreement boundaries.
Conclusions:
- There is poor agreement between awake TTE and intraoperative TEE for grading diastolic dysfunction.
- Further research is needed to understand the reasons for disagreement and its clinical implications.
- Investigating the prognostic utility of both TTE and TEE in relation to adverse outcomes is recommended.
Background:
Guidelines for the evaluation and grading of diastolic dysfunction are available for transthoracic echocardiography (TTE). Transesophageal echocardiography (TEE) is used for this purpose intraoperatively but the level of agreement between these 2 imaging modalities for grading diastolic dysfunction is unknown. We assessed agreement between awake preoperative TTE and intraoperative TEE for grading diastolic dysfunction.
Methods:
In 98 patients undergoing cardiac surgery, key Doppler measurements were obtained using TTE and TEE at the following time points: TTE before anesthesia induction (TTEawake), TTE following anesthesia induction (TTEanesth), and TEE following anesthesia induction (TEEanesth). The primary endpoint was grade of diastolic dysfunction categorized by a simplified algorithm, and measured by TTEawake and TEEanesth, for which the weighted κ statistic assessed observed agreement beyond chance. Secondary endpoints were peak early diastolic lateral mitral annular tissue velocity (e'lat) and the ratio of peak early diastolic mitral inflow velocity (E) to e'lat (E/e'lat), measured by TTEawake and TEEanesth, were compared using Bland-Altman limits of agreement.
Results:
Disagreement in grading diastolic dysfunction by ≥1 grade occurred in 43 (54%) of 79 patients and by ≥2 grades in 8 (10%) patients with paired measurements for analysis, yielding a weighted κ of 0.35 (95% confidence interval [CI], 0.19-0.51) for the observed level of agreement beyond chance. Bland-Altman analysis of paired data for e'lat and E/e'lat demonstrated a mean difference (95% CI) of 0.51 (-0.06 to 1.09) and 0.70 (0.07-1.34), respectively, for measurements made by TTEawake compared to TEEanesth. The percentage (95% CI) of paired measurements for e'lat and E/e'lat that lay outside the [-2, +2] study-specified boundary of acceptable agreement was 36% (27%-48%) and 39% (29%-51%), respectively. Results were generally robust to sensitivity analyses, including comparing measurements between TTEawake and TTEanesth, between TTEanesth and TEEanesth, and after regrading diastolic dysfunction by the American Society of Echocardiography (ASE)/European Association of CardioVascular Imaging (EACVI) algorithm.
Conclusions:
There was poor agreement between TTEawake and TEEanesth for grading diastolic dysfunction by a simplified algorithm, with disagreement by ≥1 grade in 54% and by ≥2 grades in 10% of the evaluable cohort. Future studies, including comparing the prognostic utility of TTEawake and TEEanesth for clinically important adverse outcomes that may be a consequence of diastolic dysfunction, are needed to understand whether this disagreement reflects random variability in Doppler variables, misclassification by the changed technique and physiological conditions of intraoperative TEE, or the accurate detection of a clinically relevant change in diastolic dysfunction.
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