Massive thrombotic intraoperative pulmonary emboli (IOPE) is rare but carries a great degree of morbidity and mortality. This is the first study to formally assess the utility of various tools for the diagnosis of these events and the impact of each tool on mortality. Due to both the infrequent occurrence of these events and the high mortality of massive IOPE, it was cost-prohibitive to prospectively randomize patients to study commonly used diagnostic tools. Hence, a descriptive review of all reported cases in the literature was performed. This review yielded 146 cases for past 4 decades. Following a careful review of these cases, the alerting monitor for the occurrence of IOPE was recorded. Furthermore, we recorded the confirming diagnostic tool and the outcome of these patients. We compared 4 monitoring tools: (1) end-tidal carbon dioxide; (2) central catheter pressures; (3) echocardiography; and (4) standard monitoring of vital signs. Pre-event use of transesophageal echocardiography had no survival benefit. End-tidal carbon dioxide changes as an alerting tool were associated with improved survival compared to changes in vital signs (P<0.0001). Signs of right heart strain were associated with greater mortality, but direct thrombus visualization was not. Echocardiography appears to be useful for diagnosis of massive IOPE. Compared with hemodynamic collapse, end-tidal carbon dioxide decline as the presenting sign of massive IOPE may be associated with a better prognosis because it may represent earlier detection of IOPE and allow for more time to intervene.
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http://dx.doi.org/10.15171/jcvtr.2014.002 | DOI Listing |
Acta Clin Belg
January 2025
Erzurum Regional Training and Research Hospital, Department of Emergency Medicine, Erzurum, Turkey.
Objectives: In this study, the capacity of End-tidal carbon dioxide (EtCO2) levels to predict the risk of major cardiovascular events (MACE) in patients diagnosed with acute coronary syndrome and the relationship between risk scoring systems (TIMI, GRACE, HEART) and EtCO2 values were examined.
Methods: EtCO2 values of the patients in the study were measured with a capnography device. Each patient's MACE status was recorded.
Front Physiol
January 2025
Environmental Physiology Group, Department of Health Sciences, Mid Sweden University, Östersund, Sweden.
Background And Aim: Hyperventilation before breath-hold diving (freediving) is widely accepted as a risk factor for hypoxic syncope or blackout (BO), but there is no practical way to address it before dives. This study explores the feasibility of using a force sensor to predict end-tidal carbon dioxide ( CO) to assess hyperventilation in freedivers.
Methods And Results: Twenty-one freedivers volunteered to participate during two national competitions.
Physiother Theory Pract
January 2025
APReCIAT Lab - Department of Physical Therapy, University of Miami, Coral Gables, Florida, USA.
Objective: To describe the clinical reasoning and use of the American Diabetes Association (ADA) blood glucose and exercise guidelines in the face of an emerging acute glycemic crisis for a patient with type 2 diabetes mellitus receiving physical therapy for chronic ankle instability and fibromyalgia.
Case Description: Assessment of the patient's baseline blood glucose and ketone urinalysis revealed hyperglycemia and ketonuria, respectively. Shortly after testing, the patient became nauseous and vomited.
J Appl Physiol (1985)
January 2025
Centre for Heart, Lung and Vascular Health, University of British Columbia - Okanagan Campus, Kelowna, BC, Canada.
Serotonin (5-HT) is integral to signalling in areas of the brainstem controlling ventilation and is involved in central chemoreception. Selective serotonin reuptake inhibitors (SSRIs), used to effectively increase 5-HT concentrations, are commonly prescribed for depression. The effects of SSRIs on the control of breathing and the potential influence of cerebral blood flow (CBF) have not been directly assessed.
View Article and Find Full Text PDFBMJ Open
January 2025
Department of Intensive Care and Neonatology and Children's Research Center, University of Zurich, University Children's Hospital Zürich, Zurich, Zurich, Switzerland.
Introduction: Digital trials are a promising strategy to increase the evidence base for common interventions and may convey considerable efficiency benefits in trial conduct. Although paediatric intensive care units (PICUs) are rich in routine electronic data, highly pragmatic digital trials in this field remain scarce. There are unmet evidence needs for optimal mechanical ventilation modes in paediatric intensive care.
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