scholarly journals Resuscitation After Cardiac Surgery Awareness an Egyptian Multicentre Survey

2021 ◽  
Vol 23 (Supplement_D) ◽  
Author(s):  
Moslem Abdelghafar ◽  
Taher Abdelmoneim ◽  
Alaa Mohamed ◽  
Mohamed Abdalla

Abstract Introduction There has been an increasing recognition that cardiac surgery patients have different resuscitative needs than other medical and surgical patients who experience in-hospital cardiac arrest. This was addressed in the 2010 European Resuscitation Council Guidelines and the 2010 American Heart Association Guidelines. However, it’s unknown how widely the guidelines are practiced, or a training protocol is followed in different units in Egypt. Objectives This national survey aims to identify the views and common practice of Egyptian cardiac teams regarding resuscitation after cardiac surgery. Methods A 21-question survey is created based on a prior survey used by the EACTS guidelines committee. Questions included the following topics: Participants demographics, Prevalence of cardiac arrest in the intensive care unit, Cardiac arrest with ventricular fibrillation or non-shockable rhythm, Emergency resternotomy technique, Training and arrest protocols. Survey dissemination was through social media platforms, mobile messaging applications and emails during the time period between November 2020 and January 2021. Results Of 126 responses, 95 were suitable for inclusion. Responses were from 11 centres across Egypt. 68.5% of the respondents were surgeons while cardiac anaesthetists and intensivists formed 12.6% and 18.9% respectively. 76.8% of participants were middle-grade doctors, consultant participation was 23.2%. The median annual number of cases performed in the units was 480 and this ranged from 10 to 3000. The average percentage of cardiac arrests was 7%, Median survival to hospital discharge of all arrests was 33% For patients who go into VF after cardiac surgery, respondents would attempt a mean of 5 shocks with only 24.2% commencing defibrillation shocks before external cardiac massage, while the majority initiating CPR immediately. They would perform emergency resternotomy in a mean time of 12 mins and in 15 mins if the rhythm was not shockable. 56.8% would give 1 mg of adrenaline as soon the cardiac arrest was established, only 6.3% thought that it should be given rarely or not at all. If a surgeon was not immediately available 36.8% of respondents would be happy for any trained personnel to perform the emergency resternotomy while 58.9% expect only the surgeon to perform the resternotomy. 49.4% of the participants have not practised any training to perform an emergency sternotomy. 41% of the respondents state they occasionally practice or talk with the staff about it. Only 9.5% practice regularly on emergency sternotomies. 25% assume current training is enough and does not need modification, while 75% think tailored training is important and staff should be oriented about it in the future. Conclusion An action plan is required to improve the awareness of the junior surgeons with the Cardiac Advanced Life Support Protocol. Proper training of the intensive care staff to implement the protocol in a timely organised manner is needed. Assessment of the rhythm before starting external chest compressions is the corner stone in cardiac patients undergoing cardiac arrest. VF/pVT rhythm, 3 defibrillation shocks are given first; for the non- shockable rhythm, the emergency pacing switched on, this is followed by compressions till resternomtomy. Emergency resternotomy under 5 minutes is the only effective way to save patients with tamponade and extreme hypovolemia.

Author(s):  
Moslem Abdelghafar ◽  
Taher Abdelmoiem ◽  
Alaa Mohamed ◽  
Mohamed Abdalla

Aim: Cardiac surgery patients have different resuscitative needs than other patients who experience in-hospital cardiac arrest, this was addressed in the guidelines. However, it is unknown how widely the guidelines are practiced, or a training protocol is followed in different cardiac surgery units in Egypt. Methods: A 21-question survey is created and included: Participants demographics, Prevalence of cardiac arrest, Cardiac arrest protocol, Emergency resternotomy technique, Training protocols. Survey was disseminated through social media messaging platforms during the period between November 2020 and January 2021. Results: 95 responses were from 11 centres across Egypt. 68.5% of the respondents were surgeons, 76.8% of participants were junior surgeons. For patients who go into VF after cardiac surgery, respondents would attempt a median of 3 shocks with only 24.2% commencing defibrillation shocks before external cardiac massage, while the majority initiating CPR immediately and performing emergency resternotomy in a median time of 10 mins. 56.8% would give 1 mg of adrenaline as soon the cardiac arrest was established. If a surgeon was not available, only 36.8% of respondents would allow any trained personnel to perform the emergency resternotomy. Only 9.5% practice regularly on emergency sternotomies. 75% think tailored training is important and staff should be oriented about it in the future. Conclusion: An action plan is required to improve the awareness of the junior surgeons with the Cardiac Advanced Life Support Protocol.


Author(s):  
Caryl Bailey ◽  
Michael Faulkner

This chapter explores advanced cardiovascular life support (ACLS) after cardiac surgery. In 2009, the European Association of Cardiothoracic Surgeons provided recommendations for the management of post–cardiac surgery arrest, which have since been augmented by publication of consensus guidelines from the European Resuscitation Council in 2015 and the Society of Thoracic Surgeons in 2017. These guidelines are preferred over traditional ACLS guidelines for cardiac arrest resuscitation of post–cardiac surgery patients. Ventricular fibrillation is the cause of 25%–50% of cardiac arrests in post–cardiac surgery patients. Guidelines recommend up to 3 attempted shocks prior to external cardiac massage (ECM) if they can be delivered within 1 minute of arrest. Early defibrillation is often successful in this population and minimizes potential intrathoracic trauma from ECM on a fresh sternotomy. In patients with severe bradycardia or asystole, the epicardial pacer should be set to emergency mode, which provides dual-chamber, asynchronous pacing at 80–100 bpm with maximum atrial and ventricular amperage. Resternotomy within 5 minutes is recommended when resuscitation after cardiac arrest has been unsuccessful or when cardiac arrest from tamponade is highly likely.


2021 ◽  
Vol 23 (2) ◽  
pp. 54-61
Author(s):  
Bhargavi Gali ◽  
◽  
Grace Arteaga ◽  
Glen Au ◽  
Vitaly Herasevich

Background: Advanced life support interventions have been modified for patients who have recently undergone sternotomy for cardiac surgery and have new suture lines. We aimed to determine whether the use of in-situ simulation increased adherence to the cardiac surgery unit-advanced life support algorithm (CSU-ALS) for patients with cardiac arrest after cardiac surgery (CAACS). Methods: This was a retrospective chart review of cardiac arrest management of patients who sustained CAACS before and after implementation of in-situ simulation scenarios utilizing CSU-ACLS in place of traditional advanced cardiac life support. We utilized classroom education of CSU-ACLS followed by in-situ high-fidelity simulated scenarios of patients with CAACS.. Interprofessional learners (n = 210) participated in 18 in-situ simulations of CAACS. Two groups of patients with CAACS were retrospectively compared before and after in situ training (preimplementation, n=22 vs postimplementation, n=38). Outcomes included adherence to CSU-ALS for resuscitation, delay in initiation of chest compressions, use of defibrillation and pacing before external cardiac massage, and time to initial medication. Results: Chest compressions were used less often in the postimplementation vs the preimplementation period (11/22 [29%] vs 13/38 [59%], P = 0.02). Time to initial medication administration, use of defibrillation and pacing, return to the operating room, and survival were similar between periods. Conclusion: In this pilot, adherence to a key component of the CSU-ALS algorithm—delaying initiation of chest compressions—improved


2012 ◽  
Vol 28 (5) ◽  
pp. S366 ◽  
Author(s):  
Y. Lamarche ◽  
M. Pagé ◽  
M. Laflamme ◽  
I. El-Hamamsy ◽  
D. Bouchard ◽  
...  

Circulation ◽  
2019 ◽  
Vol 140 (Suppl_2) ◽  
Author(s):  
Akil Awad ◽  
Fabio Silvio Taccone ◽  
Martin Jonsson ◽  
Sune Forsberg ◽  
Jacob Hollenberg ◽  
...  

Background: Early initiation of hypothermia has shown to be important to reduce brain injuries in experimental cardiac arrest models. The aim of this study was to investigate the association between time to initiate cooling and neurological intact survival in patients with out-of-hospital cardiac arrest (OHCA). Methods: A secondary analysis of prospectively collected data from the PRINCESS trial (NCT01400373) including 677 OHCA patients randomized to transnasal evaporative intra-arrest cooling or standard advanced life support and cooling started subsequent to hospital arrival. Time to randomization was used a proxy measurement for time to initiate cooling. An early treatment group was defined as patients randomized by the EMS <20 minutes from the time of the cardiac arrest. Propensity scores were used to find matching patients in the control group. Patients with initial shockable rhythms were analyzed as a predefined subgroup. The primary outcome was good neurologic outcome, Cerebral Performance Category (CPC) 1-2 at 90 days. Secondary outcome was complete recovery (CPC 1). Results: In total 406 patients were randomized <20 minutes from the cardiac arrest and were propensity score matched (1:1). In the propensity score matched analysis the proportion of patients with CPC 1-2 was 21.7% in the intervention and 17.2% in the control group, odds ratio (OR) 1.33, 95% confidence interval (CI) 0.80-2.21, p=0.273. In patients with initial shockable rhythm (79 intervention, 79 control) the difference in CPC 1-2 was 48.1% versus 32.0%, OR 2.05, 95%CI 1.00-4.21, p=0.0498. The proportion of patients with complete neurologic recovery, CPC 1, was 19.7% in the intervention and 13.3% in the control group, OR 1.60, 95% CI 0.92-2.79, p=0.097. In patients with initial shockable rhythm the proportion with CPC 1 was 45.6% versus 24.6%, OR 2.81, 95% CI 1.23-6.42, p=0.014. Conclusions: In this ancillary study of OHCA patients receiving intra-arrest cooling, there were differences in survival with good neurologic outcome and in complete neurological recovery in favor of early intra-arrest cooling patient group compared to standard care. These differences were statistically significant in the subgroup of patients with initial shockable rhythms.


Circulation ◽  
2020 ◽  
Vol 142 (Suppl_4) ◽  
Author(s):  
Juan J Russo ◽  
Paul Boland ◽  
Simon Parlow ◽  
Jordan Bernick ◽  
Rebecca Mathew ◽  
...  

Introduction: Comatose survivors of OHCA develop a post cardiac arrest syndrome (PCAS) characterized by myocardial dysfunction and cerebrovascular dysregulation. Hemodynamic derangements related to PCAS can jeopardize cerebral oxygen delivery and therefore impair neurologic recovery. However, optimal hemodynamic targets to ensure adequate cerebral oxygen delivery following OHCA remain undefined. Accordingly, we examined the relationship between cardiac index (CI), mean arterial pressure (MAP), and regional cerebral oxygen saturation (rO 2 %) following OHCA. Methods: CAPITAL-RETURN was a prospective, single-center observational study examining hemodynamics in comatose survivors of OHCA undergoing targeted temperature management after an initial shockable rhythm. Between August 2016 and December 2017, comatose survivors of OHCA underwent continuous, blinded, non-invasive monitoring of CI and rO 2 % using bioimpedance (Cheetah Medical, Portland, OR, USA) and near-infrared spectroscopy (Covidien, Boulder, CO, USA), respectively, for 96 hours after intensive care unit admission. In the present study, we examined the relationship between CI, MAP, and rO 2 % using multivariable linear regression. Results: In 56 patients in this analysis, the mean CI and MAP during the first 96 hours of intensive care unit admission were 3.2±0.5 L/min/m 2 and 76±6 mmHg, respectively (Figure). The mean rO 2 % was 63±9% and increased over time (+0.1% per hour; p<0.001). Higher CI was associated with improved rO 2 % (+3.2% per L/min/m2 increase in CI; p<0.0001). There was no association between MAP and rO 2 % (p=0.42). After adjustment for MAP, the association between CI and rO 2 % remained significant (+3.1% per L/min/m2 increase in CI; p<0.0001). Conclusion: In comatose survivors of OHCA with an initial shockable rhythm, a higher CI is associated with improved rO 2 %. Further studies are needed to determine whether CI targets improve rO2% and neurologic outcomes following OHCA.


Author(s):  
Mark S. Link ◽  
Mark Estes III

Resuscitation on the playing field is at least as important as screening in the prevention of death. Even if a screening strategy is largely effective, individuals will suffer sudden cardiac arrests. Timely recognition of a cardiac arrest with rapid implementation of cardiopulmonary resuscitation (CPR) and deployment and use of automated external defibrillators (AEDs) will save lives. Basic life support, including CPR and AED use, should be a requirement for all those involved in sports, including athletes. An emergency action plan is important in order to render advanced cardiac life support and arrange for transport to medical centres.


2014 ◽  
Vol 25 (2) ◽  
pp. 123-129 ◽  
Author(s):  
Cheryl Herrmann

Cardiac arrest in the immediate postoperative recovery period in a patient who underwent cardiac surgery is typically related to reversible causes—tamponade, bleeding, ventricular arrhythmias, or heart blocks associated with conduction problems. When treated promptly, 17% to 79% of patients who experience cardiac arrest after cardiac surgery survive to discharge. The Cardiac Advanced Life Support–Surgical (CALS-S) guideline provides a standardized algorithm approach to resuscitation of patients who experience cardiac arrest after cardiac surgery. The purpose of this article is to discuss the CALS-S guideline and how to implement it.


Anaesthesia ◽  
2019 ◽  
Vol 75 (2) ◽  
pp. 162-170 ◽  
Author(s):  
Y.‐D. Chiu ◽  
S. S. Villar ◽  
J. W. Brand ◽  
M. V. Patteril ◽  
D. J. Morrice ◽  
...  

2010 ◽  
Vol 2010 ◽  
pp. 1-4 ◽  
Author(s):  
Edward Gologorsky ◽  
Francisco Igor B. Macedo ◽  
Enisa M. Carvalho ◽  
Angela Gologorsky ◽  
Marco Ricci ◽  
...  

Early institution of extracorporeal perfusion support (ECPS) may improve survival after cardiac arrest. Two patients sustained unexpected cardiac arrest in the Intensive Care Unit (ICU) following cardiac interventions. ECPS was initiated due to failure to restore hemodynamics after prolonged (over 60 minutes) advanced cardiac life support (ACLS) protocol-guided cardiopulmonary resuscitation. Despite relatively late institution of ECPS, both patients survived with preserved neurological function. This communication focuses on the utility of ECPS in the ICU as a part of resuscitative efforts.


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