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Updated: Jun 10, 2026

Cardiac Loading using Passive Left Atrial Pressurization and Passive Afterload for Graft Assessment
Published on: August 2, 2024
Size of left cardiac chambers correlates with cerebral microembolic load in open heart operations
Elena Z Golukhova1, Anna G Polunina, Svetlana V Zhuravleva
1A. N. Bakulev Scientific Center of Cardiovascular Surgery, Russian Academy of Medical Sciences, Moscow 119571, Russia.
Insights
Larger left heart chambers in cardiac surgery patients correlate with more cerebral microemboli during open heart operations. This suggests chamber size is a key risk factor for neurological complications.
Area of Science:
- Cardiology
- Neurology
- Surgical Research
Background:
- Cerebral microemboli are a known cause of complications in cardiac surgery patients.
- Understanding factors influencing microembolic load is crucial for patient outcomes.
Purpose of the Study:
- To investigate the relationship between left cardiac chamber size and cerebral microembolic load during open heart operations.
Main Methods:
- Echocardiography was used to measure left atrial and left ventricular dimensions preoperatively.
- Intraoperative microemboli were monitored using a transcranial Doppler system in 30 patients.
Main Results:
- Preoperative left atrium and left ventricular sizes significantly correlated with intraoperative microembolic load.
- These associations remained significant even after accounting for cardiopulmonary bypass time.
Conclusions:
- Increased left heart chamber size is an influential risk factor for elevated cerebral microembolic load.
- Minimally invasive surgery and CO2 insufflation may offer neuroprotection for high-risk patients.
Abstract:
Background. Microemboli are a widely recognized etiological factor of cerebral complications in cardiac surgery patients. The present study was aimed to determine if size of left cardiac chambers relates to cerebral microembolic load in open heart operations. Methods. Thirty patients participated in the study. Echocardiography was performed in 2-3 days before surgery. A transcranial Doppler system was used for registering intraoperative microemboli. Results. Preoperative left atrium and left ventricular end-systolic and end-diastolic sizes significantly correlated with intraoperative microembolic load (rs = 0.48, 0.57 and 0.53, Ps < .01, resp.). The associations between left ventricular diameters and number of cerebral microemboli remained significant when cardiopulmonary bypass time was included as a covariate into the analysis. Conclusions. The present results demonstrate that increased size of left heart chambers is an influential risk factor for elevated cerebral microembolic load during open heart operations. Mini-invasive surgery and carbon dioxide insufflation into wound cavity may be considered as neuroprotective approaches in patients with high risk of cerebral microembolism.
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