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Review Article
Infection
Microbial infections in burn patients
Souvik Roy, Preeti Mukherjee, Sutrisha Kundu, Debashrita Majumder, Vivek Raychaudhuri, Lopamudra Choudhury
Acute Crit Care. 2024;39(2):214-225.   Published online May 24, 2024
DOI: https://doi.org/10.4266/acc.2023.01571
  • 1,280 View
  • 115 Download
AbstractAbstract PDF
Polymicrobial infections are the leading causes of complications incurred from injuries that burn patients develop. Such patients admitted to the hospital have a high risk of developing hospital-acquired infections, with longer patient stays leading to increased chances of acquiring such drug-resistant infections. Acinetobacter baumannii, Klebsiella pneumoniae, Pseudomonas aeruginosa, and Proteus mirabilis are the most common multidrug-resistant (MDR) Gram-negative bacteria identified in burn wound infections (BWIs). BWIs caused by viruses, like Herpes Simplex and Varicella Zoster, and fungi-like Candida spp. appear to occur occasionally. However, the preponderance of infection by opportunistic pathogens is very high in burn patients. Variations in the causative agents of BWIs are due to differences in geographic location and infection control measures. Overall, burn injuries are characterized by elevated serum cytokine levels, systemic immune response, and immunosuppression. Hence, early detection and treatment can accelerate the wound-healing process and reduce the risk of further infections at the site of injury. A multidisciplinary collaboration between burn surgeons and infectious disease specialists is also needed to properly monitor antibiotic resistance in BWI pathogens, help check the super-spread of MDR pathogens, and improve treatment outcomes as a result.
Original Articles
Pediatrics
Eleven years of experience in operating a pediatric rapid response system at a children’s hospital in South Korea
Yong Hyuk Jeon, Bongjin Lee, You Sun Kim, Won Jin Jang, June Dong Park
Acute Crit Care. 2023;38(4):498-506.   Published online November 29, 2023
DOI: https://doi.org/10.4266/acc.2023.01354
  • 1,159 View
  • 49 Download
AbstractAbstract PDFSupplementary Material
Background
Various rapid response systems have been developed to detect clinical deterioration in patients. Few studies have evaluated single-parameter systems in children compared to scoring systems. Therefore, in this study we evaluated a single-parameter system called the acute response system (ARS).
Methods
This retrospective study was performed at a tertiary children’s hospital. Patients under 18 years old admitted from January 2012 to August 2023 were enrolled. ARS parameters such as systolic blood pressure, heart rate, respiratory rate, oxygen saturation, and whether the ARS was activated were collected. We divided patients into two groups according to activation status and then compared the occurrence of critical events (cardiopulmonary resuscitation or unexpected intensive care unit admission). We evaluated the ability of ARS to predict critical events and calculated compliance. We also analyzed the correlation between each parameter that activates ARS and critical events.
Results
The critical events prediction performance of ARS has a specificity of 98.5%, a sensitivity of 24.0%, a negative predictive value of 99.6%, and a positive predictive value of 8.1%. The compliance rate was 15.6%. Statistically significant increases in the risk of critical events were observed for all abnormal criteria except low heart rate. There was no significant difference in the incidence of critical events.
Conclusions
ARS, a single parameter system, had good specificity and negative predictive value for predicting critical events; however, sensitivity and positive predictive value were not good, and medical staff compliance was poor.
CPR/Resuscitation
Lower limb muscle matters in patients with hypoxic brain injury following out-of-hospital cardiac arrest
Dong-Hyun Jang, Seung Min Park, Dong Keon Lee, Dong Won Kim, Chang Woo Im, You Hwan Jo, Kui Ja Lee
Acute Crit Care. 2023;38(1):104-112.   Published online February 27, 2023
DOI: https://doi.org/10.4266/acc.2022.01389
  • 1,960 View
  • 78 Download
AbstractAbstract PDFSupplementary Material
Background
There are conflicting results regarding the association between body mass index and the prognosis of cardiac arrest patients. We investigated the association of the composition and distribution of muscle and fat with neurologic outcomes at hospital discharge in successfully resuscitated out-of-hospital cardiac arrest (OHCA) patients. Methods: This prospective, single-centre, observational study involved adult OHCA patients, conducted between April 2019 and June 2021. The ratio of total skeletal muscle, upper limb muscle, lower limb muscle, and total fat to body weight was measured using InBody S10, a bioimpedance analyser, after achieving the return of spontaneous circulation. Restricted cubic spline curves with four knots were used to examine the relationship between total skeletal muscle, upper limb muscle, and lower limb muscle relative to total body weight and neurologic outcome at discharge. Multivariable logistic regression analysis was performed to assess an independent association. Results: A total of 66 patients were enrolled in the study. The proportion of total muscle and lower limb muscle positively correlated with the possibility of having a good neurologic outcome. The proportion of lower limb muscle showed an independent association in the multivariable analysis (adjusted odds ratio, 2.29; 95% confidence interval, 1.06–13.98), and its optimal cut-off value calculated through receiver operating characteristic curve analysis was 23.1%, which can predict a good neurological outcome. Conclusions: A higher proportion of lower limb muscle to body weight was independently associated with the probability of having a good neurologic outcome in OHCA patients.
Infection
Study of the gut microbiome as a novel target for prevention of hospital-associated infections in intensive care unit patients
Suzan Ahmed Elfiky, Shwikar Mahmoud Ahmed, Ahmed Mostafa Elmenshawy, Gehad Mahmoud Sultan, Sara Lotfy Asser
Acute Crit Care. 2023;38(1):76-85.   Published online February 23, 2023
DOI: https://doi.org/10.4266/acc.2022.01116
  • 2,392 View
  • 94 Download
  • 2 Web of Science
  • 3 Crossref
AbstractAbstract PDF
Background
Hospital-acquired infections (HAIs) are increasing due to the spread of multi-drugresistant organisms. Gut dysbiosis in an intensive care unit (ICU) patients at admission showed an altered abundance of some bacterial genera associated with the occurrence of HAIs and mortality. In the present study, we investigated the pattern of the gut microbiome in ICU patients at admission to correlate it with the development of HAIs during ICU stay. Methods: Twenty patients admitted to an ICU with a cross-matched control group of 30 healthy subjects of matched age and sex. Quantitative SYBR green real-time polymerase chain reaction was done for the identification and quantitation of selected bacteria. Results: Out of those twenty patients, 35% developed ventilator-associated pneumonia during their ICU stay. Gut microbiome analysis showed a significant decrease in Firmicutes and Firmicutes to Bacteroidetes ratio in ICU patients in comparison to the control and in patients who developed HAIs in comparison to the control group and patients who did not develop HAIs. There was a statistically significant increase in Bacteroides in comparison to the control group. There was a statistically significant decrease in Bifidobacterium and Faecalibacterium prausnitzii and an increase in Lactobacilli in comparison to the control group with a negative correlation between Acute Physiology and Chronic Health Evaluation (APACHE) II score and Firmicutes to Bacteroidetes and Prevotella to Bacteroides ratios. Conclusions: Gut dysbiosis of patients at the time of admission highlights the importance of identification of the microbiome of patients admitted to the ICU as a target for preventing of HAIs

Citations

Citations to this article as recorded by  
  • Safety, feasibility, and impact on the gut microbiome of kefir administration in critically ill adults
    Vinod K. Gupta, Sanu Rajendraprasad, Mahmut Ozkan, Dhanya Ramachandran, Sumera Ahmad, Johan S. Bakken, Krzysztof Laudanski, Ognjen Gajic, Brent Bauer, Simon Zec, David W. Freeman, Sahil Khanna, Aditya Shah, Joseph H. Skalski, Jaeyun Sung, Lioudmila V. Kar
    BMC Medicine.2024;[Epub]     CrossRef
  • Bringing gut microbiota into the spotlight of clinical research and medical practice
    Efstathia Davoutis, Zoi Gkiafi, Panagis M Lykoudis
    World Journal of Clinical Cases.2024; 12(14): 2293.     CrossRef
  • Antimicrobial Peptides and Their Assemblies
    Ana Maria Carmona-Ribeiro
    Future Pharmacology.2023; 3(4): 763.     CrossRef
Pediatrics
Multicenter validation of a deep-learning-based pediatric early-warning system for prediction of deterioration events
Yunseob Shin, Kyung-Jae Cho, Yeha Lee, Yu Hyeon Choi, Jae Hwa Jung, Soo Yeon Kim, Yeo Hyang Kim, Young A Kim, Joongbum Cho, Seong Jong Park, Won Kyoung Jhang
Acute Crit Care. 2022;37(4):654-666.   Published online October 26, 2022
DOI: https://doi.org/10.4266/acc.2022.00976
  • 2,982 View
  • 183 Download
  • 3 Web of Science
  • 5 Crossref
AbstractAbstract PDFSupplementary Material
Background
Early recognition of deterioration events is crucial to improve clinical outcomes. For this purpose, we developed a deep-learning-based pediatric early-warning system (pDEWS) and aimed to validate its clinical performance. Methods: This is a retrospective multicenter cohort study including five tertiary-care academic children’s hospitals. All pediatric patients younger than 19 years admitted to the general ward from January 2019 to December 2019 were included. Using patient electronic medical records, we evaluated the clinical performance of the pDEWS for identifying deterioration events defined as in-hospital cardiac arrest (IHCA) and unexpected general ward-to-pediatric intensive care unit transfer (UIT) within 24 hours before event occurrence. We also compared pDEWS performance to those of the modified pediatric early-warning score (PEWS) and prediction models using logistic regression (LR) and random forest (RF). Results: The study population consisted of 28,758 patients with 34 cases of IHCA and 291 cases of UIT. pDEWS showed better performance for predicting deterioration events with a larger area under the receiver operating characteristic curve, fewer false alarms, a lower mean alarm count per day, and a smaller number of cases needed to examine than the modified PEWS, LR, or RF models regardless of site, event occurrence time, age group, or sex. Conclusions: The pDEWS outperformed modified PEWS, LR, and RF models for early and accurate prediction of deterioration events regardless of clinical situation. This study demonstrated the potential of pDEWS as an efficient screening tool for efferent operation of rapid response teams.

Citations

Citations to this article as recorded by  
  • Predicting cardiac arrest after neonatal cardiac surgery
    Alexis L. Benscoter, Mark A. Law, Santiago Borasino, A. K. M. Fazlur Rahman, Jeffrey A. Alten, Mihir R. Atreya
    Intensive Care Medicine – Paediatric and Neonatal.2024;[Epub]     CrossRef
  • Volumetric regional MRI and neuropsychological predictors of motor task variability in cognitively unimpaired, Mild Cognitive Impairment, and probable Alzheimer's disease older adults
    Michael Malek-Ahmadi, Kevin Duff, Kewei Chen, Yi Su, Jace B. King, Vincent Koppelmans, Sydney Y. Schaefer
    Experimental Gerontology.2023; 173: 112087.     CrossRef
  • Predicting sepsis using deep learning across international sites: a retrospective development and validation study
    Michael Moor, Nicolas Bennett, Drago Plečko, Max Horn, Bastian Rieck, Nicolai Meinshausen, Peter Bühlmann, Karsten Borgwardt
    eClinicalMedicine.2023; 62: 102124.     CrossRef
  • A model study for the classification of high-risk groups for cardiac arrest in general ward patients using simulation techniques
    Seok Young Song, Won-Kee Choi, Sanggyu Kwak
    Medicine.2023; 102(37): e35057.     CrossRef
  • An advanced pediatric early warning system: a reliable sentinel, not annoying extra work
    Young Joo Han
    Acute and Critical Care.2022; 37(4): 667.     CrossRef
Review Article
Basic science and research
Barriers and facilitators in the provision of palliative care in adult intensive care units: a scoping review
Christantie Effendy, Yodang Yodang, Sarah Amalia, Erna Rochmawati
Acute Crit Care. 2022;37(4):516-526.   Published online October 18, 2022
DOI: https://doi.org/10.4266/acc.2022.00745
  • 4,797 View
  • 348 Download
  • 3 Web of Science
  • 6 Crossref
AbstractAbstract PDF
The provision of palliative care in the intensive care unit (ICU) is increasing. While some scholars have suggested the goals of palliative care to not be aligned with the ICU, some evidence show benefits of the integration. This review aimed to explore and synthesize research that identified barriers and facilitators in the provision of palliative care in the ICU. This review utilized Preferred Reporting Items for Systematic Reviews and Meta-Analyses Scoping Review guidelines based on population, concept, and context. We searched for eligible studies in five electronic databases (Scopus, PubMed, ProQuest, Science Direct, and Sage) and included studies on the provision of palliative care (concept) in the ICU (context) that were published in English between 2005–2021. We describe the provision of palliative care in terms of barriers and facilitators. We also describe the study design and context. A total of 14 papers was included. Several barriers and facilitators in providing palliative care in the ICU were identified and include lack of capabilities, family boundaries, practical issues, cultural differences. Facilitators of the provision of palliative care in an ICU include greater experience and supportive behaviors, i.e., collaborations between health care professionals. This scoping review demonstrates the breadth of barriers and facilitators of palliative care in the ICU. Hospital management can consider findings of the current review to better integrate palliative care in the ICU.

Citations

Citations to this article as recorded by  
  • A necessidade dos cuidados paliativos na Unidade de Terapia Intensiva (UTI)
    Larissa Kênia de Oliveira Barros Dos Santos, Isabella Rodrigues Ribeiro, João Pedro Manduca Ferreira, Victor Hugo Oliveira Moraes, Érika Aguiar Lara Pereira
    Cuadernos de Educación y Desarrollo.2024;[Epub]     CrossRef
  • End-of-life Care in the Intensive Care Unit and Ethics of Withholding/Withdrawal of Life-sustaining Treatments
    Andrea Cortegiani, Mariachiara Ippolito, Sebastiano Mercadante
    Anesthesiology Clinics.2024;[Epub]     CrossRef
  • What helps or hinders effective end-of-life care in adult intensive care units in Middle Eastern countries? A systematic review
    Nabat Almalki, Breidge Boyle, Peter O’Halloran
    BMC Palliative Care.2024;[Epub]     CrossRef
  • Patterns of care at the end of life: a retrospective study of Italian patients with advanced breast cancer
    Irene Giannubilo, Linda Battistuzzi, Eva Blondeaux, Tommaso Ruelle, Francesca Benedetta Poggio, Giulia Buzzatti, Alessia D’Alonzo, Federica Della Rovere, Maria Maddalena Latocca, Chiara Molinelli, Maria Grazia Razeti, Simone Nardin, Luca Arecco, Marta Per
    BMC Palliative Care.2024;[Epub]     CrossRef
  • Palliative Care in the Intensive Care Unit: The Standard of Care
    Clareen Wiencek
    AACN Advanced Critical Care.2024; 35(2): 112.     CrossRef
  • Healthcare Professionals’ Attitudes towards and Knowledge and Understanding of Paediatric Palliative Medicine (PPM) and Its Meaning within the Paediatric Intensive Care Unit (PICU): A Summative Content Analysis in a Tertiary Children’s Hospital in Scotlan
    Satyajit Ray, Emma Victoria McLorie, Jonathan Downie
    Healthcare.2023; 11(17): 2438.     CrossRef
Original Articles
Infection
Nosocomial meningitis in intensive care: a 10-year retrospective study and literature review
Sofia R. Valdoleiros, Cristina Torrão, Laura S. Freitas, Diana Mano, Celina Gonçalves, Carla Teixeira
Acute Crit Care. 2022;37(1):61-70.   Published online January 26, 2022
DOI: https://doi.org/10.4266/acc.2021.01151
  • 6,455 View
  • 276 Download
  • 8 Web of Science
  • 10 Crossref
AbstractAbstract PDFSupplementary Material
Background
Nosocomial meningitis is a medical emergency that requires early diagnosis, prompt initiation of therapy, and frequent admission to the intensive care unit (ICU). Methods: A retrospective study was conducted in adult patients diagnosed with nosocomial meningitis who required admission to the ICU between April 2010 and March 2020. Meningitis/ventriculitis and intracranial infection were defined according to Centers for Disease Control and Prevention guidelines. Results: An incidence of 0.75% of nosocomial meningitis was observed among 70 patients. The mean patient age was 59 years and 34% were ≥65 years. Twenty-two percent of patients were in an immunocompromised state. A clear predisposing factor for nosocomial meningitis (traumatic brain injury, basal skull fracture, brain hemorrhage, central nervous system [CNS] invasive procedure or device) was present in 93% of patients. Fever was the most frequent clinical feature. A microbiological agent was identified in 30% of cases, of which 27% were bacteria, with a predominance of Gram-negative over Gram-positive. Complications developed in 47% of cases, 24% of patients were discharged with a Glasgow coma scale <14, and 37% died. There were no clear clinical predictors of complications. Advanced age (≥65 years old) and the presence of complications were associated with higher hospital mortality. Conclusions: Nosocomial meningitis in critical care has a low incidence rate but high mortality and morbidity. In critical care patients with CNS-related risk factors, a high level of suspicion for meningitis is warranted, but diagnosis can be hindered by several confounding factors.

Citations

Citations to this article as recorded by  
  • Procalcitonin As Diagnostic Tool for CNS Infections—Overall, Not Good Enough (Yet?)*
    Michael A. Pizzi, Katharina M. Busl
    Critical Care Medicine.2024; 52(1): 163.     CrossRef
  • A retrospective analysis of 20,178 adult neurological infection admissions to United Kingdom critical care units from 2001 to 2020
    Joseph Donovan, Abena Glover, John Gregson, Andrew W. Hitchings, Emma C. Wall, Robert S. Heyderman
    BMC Infectious Diseases.2024;[Epub]     CrossRef
  • Clinical Characteristics, Treatment, and Outcomes of Veterans with Cerebrospinal Fluid Culture Positive for Gram-Negative Rod Bacteria: A Retrospective Analysis over 18 Years in 125 Veterans Health Administration Hospitals
    Shinya Hasegawa, Eiyu Matsumoto, Jennifer R. Carlson, Hiroyuki Suzuki
    Current Microbiology.2024;[Epub]     CrossRef
  • Confronting multidrug-resistantKlebsiellameningitis after mid-clival Cerebrospinal Fluid leak repair: a therapeutic odyssey
    Anbarasi Madoure, Dharanya Gopalakrishnan Srinivasan, Tejaswi Mishra, Lokesh Kumar Penubarthi
    BMJ Case Reports.2024; 17(6): e257872.     CrossRef
  • Bacterial meningitis in adults: a retrospective study among 148 patients in an 8-year period in a university hospital, Finland
    Sakke Niemelä, Laura Lempinen, Eliisa Löyttyniemi, Jarmo Oksi, Jussi Jero
    BMC Infectious Diseases.2023;[Epub]     CrossRef
  • Bacterial meningitis in children with an abnormal craniocerebral structure
    Jiali Pan, Wei Xu, Wenliang Song, Tao Zhang
    Frontiers in Pediatrics.2023;[Epub]     CrossRef
  • Fieber in der Intensivmedizin
    Jan-Hendrik Naendrup, Boris Böll, Jorge Garcia Borrega
    Intensivmedizin up2date.2023; 19(01): 17.     CrossRef
  • Neurosurgical management of penetrating brain injury during World War I: A historical cohort
    Rayan Fawaz, Mathilde Schmitt, Philémon Robert, Nathan Beucler, Jean-Marc Delmas, Nicolas Desse, Aurore Sellier, Arnaud Dagain
    Neurochirurgie.2023; 69(3): 101439.     CrossRef
  • Etiology and Outcomes of Healthcare-Associated Meningitis and Ventriculitis—A Single Center Cohort Study
    Hana Panic, Branimir Gjurasin, Marija Santini, Marko Kutlesa, Neven Papic
    Infectious Disease Reports.2022; 14(3): 420.     CrossRef
  • Healthcare-associated central nervous system infections
    Mariachiara Ippolito, Antonino Giarratano, Andrea Cortegiani
    Current Opinion in Anaesthesiology.2022; 35(5): 549.     CrossRef
Rapid response system
Analysis of avoidable cardiopulmonary resuscitation incidents with a part-time rapid response system in place
Jun Yeun Cho, Dong Seon Lee, Yun Young Choi, Jong Sun Park, Young-Jae Cho, Ho Il Yoon, Jae Ho Lee, Choon-Taek Lee, Yeon Joo Lee
Acute Crit Care. 2021;36(2):109-117.   Published online April 16, 2021
DOI: https://doi.org/10.4266/acc.2020.01095
  • 5,208 View
  • 151 Download
  • 2 Web of Science
  • 2 Crossref
AbstractAbstract PDFSupplementary Material
Background
Although a rapid response system (RRS) can reduce the incidence of cardiopulmonary resuscitation (CPR) in general wards, avoidable CPR cases still occur. This study aimed to investigate the incidence and causes of avoidable CPR.
Methods
We retrospectively reviewed the medical records of all adult patients who received CPR between April 2013 and March 2016 (35 months) at a tertiary teaching hospital where a part-time RRS was introduced in October 2012. Four experts reviewed all of the CPR cases and determined whether each event was avoidable.
Results
A total of 192 CPR cases were identified, and the incidence of CPR was 0.190 per 1,000 patient admissions. Of these, 56 (29.2%) were considered potentially avoidable, with the most common cause being doctor error (n=32, 57.1%), followed by delayed do-not-resuscitate (DNR) placement (n=12, 21.4%) and procedural complications (n=5, 8.9%). The percentage of avoidable CPR was significantly lower in the RRS operating time group than in the RRS non-operating time group (20.7% vs. 35.5%; P=0.026). Among 44 avoidable CPR events (excluding cases related to DNR issues), the rapid response team intervened in only three cases (6.8%), and most of the avoidable CPR cases (65.9%) occurred during the non-operating time.
Conclusions
A significant number of avoidable CPR events occurred with a well-functioning, part-time RRS in place. However, RRS operation does appear to lower the occurrence of avoidable CPR. Thus, it is necessary to extend RRS operation time and modify RRS activation criteria. Moreover, policy and cultural changes are needed prior to implementing a full-time RRS.

Citations

Citations to this article as recorded by  
  • Changes in the incidence of cardiopulmonary resuscitation before and after implementation of the Life-Sustaining Treatment Decisions Act
    Hyunjae Im, Hyun Woo Choe, Seung-Young Oh, Ho Geol Ryu, Hannah Lee
    Acute and Critical Care.2022; 37(2): 237.     CrossRef
  • A Review of the Commercially Available ECG Detection and Transmission Systems—The Fuzzy Logic Approach in the Prevention of Sudden Cardiac Arrest
    Michał Lewandowski
    Micromachines.2021; 12(12): 1489.     CrossRef
Pulmonary
Clinical characteristics and outcomes of critically Ill patients with COVID-19 in Northeast Ohio: low mortality and length of stay
Francois Abi Fadel, Mohammed Al-Jaghbeer, Sany Kumar, Lori Griffiths, Xiaofeng Wang, Xiaozhen Han, Robert Burton
Acute Crit Care. 2020;35(4):242-248.   Published online October 12, 2020
DOI: https://doi.org/10.4266/acc.2020.00619
  • 6,371 View
  • 276 Download
  • 9 Web of Science
  • 9 Crossref
AbstractAbstract PDF
Background
Published coronavirus disease 2019 (COVID-19) reports suggest higher mortality with increasing age and comorbidities. Our study describes the clinical characteristics and outcomes for all intensive care unit (ICU) patients admitted across the Cleveland Clinic enterprise, a 10-hospital health care system in Northeast Ohio, serving more than 2.7 million people.
Methods
We analyzed the quality data registry for clinical characteristics and outcomes of all COVID-19-confirmed ICU admissions. Differences in outcomes from other health care systems and published cohorts from other parts of the world were delineated.
Results
Across our health care system, 495 COVID-19 patients were admitted from March 15 to June 1, 2020. Mean patient age was 67.3 years, 206 (41.6%) were females, and 289 (58.4%) were males. Mean Acute Physiology Score was 45.3, and mean Acute Physiology and Chronic Health Evaluation III score was 60.5. In total, 215 patients (43.3%) were intubated for a mean duration of 9.2 days. Mean ICU and hospital length of stay were 7.4 and 13.9 days, respectively, while mean ICU and hospital mortality rates were 18.4% and 23.8%.
Conclusions
Our health care system cohort is the fourth largest to be reported. Lower ICU and hospital mortality and length of stay were seen compared to most other published reports. Better preparedness and state-level control of the surge in COVID-19 infections are likely the reasons for these better outcomes. Future research is needed to further delineate differences in mortality and length of stay across health care systems and over time.

Citations

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  • Racial inequality in COVID-treatment and in-hospital length of stay in the US over time
    Benjamin M. Althouse, Charlotte Baker, Peter D. Smits, Samuel Gratzl, Ryan H. Lee, Brianna M. Goodwin Cartwright, Michael Simonov, Michael D. Wang, Nicholas L. Stucky
    Frontiers in Public Health.2023;[Epub]     CrossRef
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    Getahun Abate, Aniruddh Kapoor, Edward Charbek, Bryan Beck, Qian Wang, Grace C. Wang, Mackenzie Steck, Jason Zoglman, Robin R. Chambeg, Sharon Frey, Daniel F. Hoft, Timothy L. Wiemken
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    Yousef Alimohamadi, Elahe Mansouri Yekta, Mojtaba Sepandi, Maedeh Sharafoddin, Maedeh Arshadi, Elahe Hesari
    Multidisciplinary Respiratory Medicine.2022;[Epub]     CrossRef
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    David Pilcher, Matthew Durie
    American Journal of Respiratory and Critical Care Medicine.2021; 203(5): 532.     CrossRef
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    Muhammed Elhadi, Ahmed Alsoufi, Abdurraouf Abusalama, Akram Alkaseek, Saedah Abdeewi, Mohammed Yahya, Alsnosy Mohammed, Mohammed Abdelkabir, Mohammed Huwaysh, Emad Amkhatirah, Kamel Alshorbaji, Samer Khel, Marwa Gamra, Abdulmueti Alhadi, Taha Abubaker, Mo
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    Abhishek Bhardwaj, Mahmoud Alwakeel, Talha Saleem, Saira Afzal, Sura Alqaisi, Aisha R. Saand, Hanan Al. Najjar, Lori Griffiths, Xiaozhen Han, Xiaofeng Wang, Silvia Perez-Protto, Benjamin S. Abella, David F. Gaieski, Abhijit Duggal, Francois Abi Fadel
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    Michael G Usher, Roshan Tourani, Gyorgy Simon, Christopher Tignanelli, Bryan Jarabek, Craig E Strauss, Stephen C Waring, Niall A M Klyn, Burke T Kealey, Rabindra Tambyraja, Deepti Pandita, Karyn D Baum
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    Abbas Al Mutair, Alyaa Elhazmi, Saad Alhumaid, Gasmelseed Ahmad, Ali Rabaan, Mohammed Alghadeer, Hiba Chagla, Raghavendra Tirupathi, Amit Sharma, Kuldeep Dhama, Khulud Alsalman, Zainab Alalawi, Ziyad Aljofan, Alya Al Mutairi, Mohammed Alomari, Mansour Awa
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    Imran Khalid, Romaysaa M Yamani, Maryam Imran, Muhammad Ali Akhtar, Manahil Imran, Rumaan Gul, Tabindeh Jabeen Khalid, Ghassan Y Wali
    Acute and Critical Care.2021; 36(3): 223.     CrossRef
Rapid response system
Effectiveness of a daytime rapid response system in hospitalized surgical ward patients
Eunjin Yang, Hannah Lee, Sang-Min Lee, Sulhee Kim, Ho Geol Ryu, Hyun Joo Lee, Jinwoo Lee, Seung-Young Oh
Acute Crit Care. 2020;35(2):77-86.   Published online May 13, 2020
DOI: https://doi.org/10.4266/acc.2019.00661
  • 6,480 View
  • 213 Download
  • 6 Web of Science
  • 8 Crossref
AbstractAbstract PDFSupplementary Material
Background
Clinical deteriorations during hospitalization are often preventable with a rapid response system (RRS). We aimed to investigate the effectiveness of a daytime RRS for surgical hospitalized patients.
Methods
A retrospective cohort study was conducted in 20 general surgical wards at a 1,779-bed University hospital from August 2013 to July 2017 (August 2013 to July 2015, pre-RRS-period; August 2015 to July 2017, post-RRS-period). The primary outcome was incidence of cardiopulmonary arrest (CPA) when the RRS was operating. The secondary outcomes were the incidence of total and preventable cardiopulmonary arrest, in-hospital mortality, the percentage of “do not resuscitate” orders, and the survival of discharged CPA patients.
Results
The relative risk (RR) of CPA per 1,000 admissions during RRS operational hours (weekdays from 7 AM to 7 PM) in the post-RRS-period compared to the pre-RRS-period was 0.53 (95% confidence interval [CI], 0.25 to 1.13; P=0.099) and the RR of total CPA regardless of RRS operating hours was 0.76 (95% CI, 0.46 to 1.28; P=0.301). The preventable CPA after RRS implementation was significantly lower than that before RRS implementation (RR, 0.31; 95% CI, 0.11 to 0.88; P=0.028). There were no statistical differences in in-hospital mortality and the survival rate of patients with in-hospital cardiac arrest. Do-not-resuscitate decisions significantly increased during after RRS implementation periods compared to pre-RRS periods (RR, 1.91; 95% CI, 1.40 to 2.59; P<0.001).
Conclusions
The day-time implementation of the RRS did not significantly reduce the rate of CPA whereas the system effectively reduced the rate of preventable CPA during periods when the system was operating.

Citations

Citations to this article as recorded by  
  • Development and Validation of a Machine Learning Algorithm Using Clinical Pages to Predict Imminent Clinical Deterioration
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Review Article
CPR/Resuscitation
Role of extracorporeal cardiopulmonary resuscitation in adults
Hongsun Kim, Yang Hyun Cho
Acute Crit Care. 2020;35(1):1-9.   Published online February 29, 2020
DOI: https://doi.org/10.4266/acc.2020.00080
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  • 21 Web of Science
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AbstractAbstract PDF
Extracorporeal cardiopulmonary resuscitation (ECPR) has been performed with increasing frequency worldwide to improve the low survival rate of conventional cardiopulmonary resuscitation (CCPR). Several studies have shown that among patients who experience in-hospital cardiac arrest, better survival outcomes and neurological outcomes can be expected after ECPR than after CCPR. However, studies have not clearly shown a short-term survival benefit of ECPR for patients who experience out-of-hospital cardiac arrest. Favorable outcomes are associated with a shorter low-flow time, an initial shockable rhythm, lower serum lactate levels, higher blood pH, and a lower Sequential Organ Failure Assessment score. Indications for ECPR include young age, witnessed arrest with bystander cardiopulmonary resuscitation, an initial shockable rhythm, correctable causes such as a cardiac etiology, and no return of spontaneous circulation within 10–20 minutes of CCPR. ECPR is a complex intervention that requires a highly trained team, specialized equipment, and multidisciplinary support within a healthcare system, and it has the risk of several life-threatening complications. Therefore, physicians should carefully select patients for ECPR who can gain the most benefit, instead of applying ECPR indiscriminately.

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Original Articles
Rapid response system
Utilization of a rapid response team and associated outcomes in patients with malignancy
Jongmin Lee, Woo Ho Ban, Sei Won Kim, Eun Young Kim, Mi Ra Han, Seok Chan Kim
Acute Crit Care. 2020;35(1):16-23.   Published online February 29, 2020
DOI: https://doi.org/10.4266/acc.2019.00675
  • 5,659 View
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AbstractAbstract PDF
Background
Recent advances in diagnosis and treatment have improved long-term outcomes in cancer patients. As a result, the requirement for a rapid response team (RRT) for cancer patients is also increasing. This study aimed to analyze utilization of an RRT and the associations between related factors and mortality in a population of cancer patients. Methods: This retrospective cohort study included hospitalized patients at a single academic medical center in Seoul, Korea, who required RRT activation during a 6-year period from June 2013 to December 2018. Results: Overall, 164 of the 457 patients who met the above criteria were cancer patients, and they had a significantly higher Charlson comorbidity score than the non-cancer patients (5.0 vs. 7.0, P<0.001). A significantly larger proportion of cancer patients required intensive care unit transfer (51.8% vs. 41.0%, P=0.032). Cancer patients also had significantly higher in-hospital mortality compared with other patients (39.6% vs. 10.9%, P<0.001). Furthermore, presence of cancer was independently associated with in-hospital mortality (adjusted odds ratio [OR], 2.09; 95% confidence interval [CI], 1.11 to 3.93). Among cancer patients, higher Acute Physiology and Chronic Health Evaluation (APACHE) II at the time of RRT activation was significantly associated with in-hospital mortality regardless of malignancy (adjusted OR, 1.08; 95% CI, 1.01 to 1.15). Conclusions: Cancer patients requiring RRT activation have significantly higher rates of inhospital mortality than patients not using RRT. Higher severity score at the time of RRT activation in patients with malignancy was significantly associated with in-hospital mortality.

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    Catherina Lück
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Rapid response system
Effect of a rapid response system on code rates and in-hospital mortality in medical wards
Hong Yeul Lee, Jinwoo Lee, Sang-Min Lee, Sulhee Kim, Eunjin Yang, Hyun Joo Lee, Hannah Lee, Ho Geol Ryu, Seung-Young Oh, Eun Jin Ha, Sang-Bae Ko, Jaeyoung Cho
Acute Crit Care. 2019;34(4):246-254.   Published online November 29, 2019
DOI: https://doi.org/10.4266/acc.2019.00668
  • 6,243 View
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  • 8 Web of Science
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AbstractAbstract PDF
Background
To determine the effects of implementing a rapid response system (RRS) on code rates and in-hospital mortality in medical wards.
Methods
This retrospective study included adult patients admitted to medical wards at Seoul National University Hospital between July 12, 2016 and March 12, 2018; the sample comprised 4,224 patients admitted 10 months before RRS implementation and 4,168 patients admitted 10 months following RRS implementation. Our RRS only worked during the daytime (7 AM to 7 PM) on weekdays. We compared code rates and in-hospital mortality rates between the preintervention and postintervention groups.
Results
There were 62.3 RRS activations per 1,000 admissions. The most common reasons for RRS activation were tachypnea or hypopnea (44%), hypoxia (31%), and tachycardia or bradycardia (21%). Code rates from medical wards during RRS operating times significantly decreased from 3.55 to 0.96 per 1,000 admissions (adjusted odds ratio [aOR], 0.29; 95% confidence interval [CI], 0.10 to 0.87; P=0.028) after RRS implementation. However, code rates from medical wards during RRS nonoperating times did not differ between the preintervention and postintervention groups (2.60 vs. 3.12 per 1,000 admissions; aOR, 1.23; 95% CI, 0.55 to 2.76; P=0.614). In-hospital mortality significantly decreased from 56.3 to 42.7 per 1,000 admissions after RRS implementation (aOR, 0.79; 95% CI, 0.64 to 0.97; P=0.024).
Conclusions
Implementation of an RRS was associated with significant reductions in code rates during RRS operating times and in-hospital mortality in medical wards.

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Review Articles
CPR/Resuscitation
Management of post-cardiac arrest syndrome
Youngjoon Kang
Acute Crit Care. 2019;34(3):173-178.   Published online August 31, 2019
DOI: https://doi.org/10.4266/acc.2019.00654
  • 34,067 View
  • 2,168 Download
  • 30 Web of Science
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AbstractAbstract PDF
Post-cardiac arrest syndrome is a complex and critical issue in resuscitated patients undergone cardiac arrest. Ischemic-reperfusion injury occurs in multiple organs due to the return of spontaneous circulation. Bundle of management practicies are required for post-cardiac arrest care. Early invasive coronary angiography should be considered to identify and treat coronary artery obstructive disease. Vasopressors such as norepinephrine and dobutamine are the first-line treatment for shock. Maintainance of oxyhemoglobin saturation greater than 94% but less than 100% is recommended to avoid fatality. Target temperature therapeutic hypothermia helps to resuscitated patients. Strict temperature control is required and is maintained with the help of cooling devices and monitoring the core temperature. Montorings include electrocardiogram, oxymetry, capnography, and electroencephalography (EEG) along with blood pressue, temprature, and vital signs. Seizure should be treated if EEG shows evidence of seizure or epileptiform activity. Clinical neurologic examination and magnetic resonance imaging are considered to predict neurological outcome. Glycemic control and metabolic management are favorable for a good neurological outcome. Recovery from acute kidney injury is essential for survival and a good neurological outcome.

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Rapid response system
Rapid response systems in Korea
Bo Young Lee, Sang-Bum Hong
Acute Crit Care. 2019;34(2):108-116.   Published online May 31, 2019
DOI: https://doi.org/10.4266/acc.2019.00535
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AbstractAbstract PDF
The inpatient treatment process is becoming more and more complicated with advanced treatments, aging of the patient population, and multiple comorbidities. During the process, patients often experience unexpected deterioration, about half of which might be preventable. Early identification of patient deterioration and the proper response are priorities in most healthcare facilities. A rapid response system (RRS) is a safety net to identify antecedents of these adverse events and to respond in a timely manner. The RRS has become an essential part of the medical system worldwide, supported by all major quality improvement organizations. An RRS consists of a trigger system and response team and needs constant assessment and process improvement. Although the effectiveness and cost-benefit of RRS remain controversial, according to previous studies, it may be beneficial by decreasing in-hospital cardiac arrest and mortality. Since the first implementation of RRS in Korea in 2008, it has been developed in over 15 medical centers and continues to expand. Recent accreditation standards and an RRS pilot program by the Korean government will promote the proliferation of RRSs in Korea.

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