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RESUMEN Objetivos. Determinar el requerimiento y tiempo para ventilación mecánica y Unidad de Cuidados Intensivos (UCI), hospitalización y tiempo de hospitalización, muerte y discapacidad de las variantes axonales del Síndrome de Guillain-Barré (SGB) en comparación con la variante aguda desmielinizante en pacientes de todas las edades. Materiales y métodos. Revisión sistemática que incluyó pacientes con SGB; la exposición fueron las variantes axonales y el comparador la polineuropatía desmielinizante inflamatoria aguda (AIDP) los desenlaces fueron el requerimiento y tiempo en ventilación mecánica (VM), requerimiento y tiempo en la UCI, tiempo de hospitalización, discapacidad y muerte. Se utilizó la escala NewCasttle-Ottawa (NOS) para evaluar el riesgo de sesgo. Se realizó un metaanálisis para calcular las diferencias de medias y los riesgos relativos (RR) con sus intervalos de confianza (IC) del 95% utilizando varianzas inversas y modelos de efectos aleatorios. Resultados. De los 3116 artículos encontrados, 46 cumplieron los criterios de selección. El tiempo en VM fue 7,42 días (IC95%: 0,36 a 1,48) y el tiempo de hospitalización fue 3,11 (IC95%: 0,73 a 5,49) días en las variantes axonales. Las variantes axonales tuvieron un RR de 0,47 (IC95%: 0,24 a 0,92) para el requerimiento de VM en adultos, pero en niños fue de 1,68 (IC95%: 1,25 a 2,25). Hubo una alta heterogeneidad estadística. Conclusiones. Las variantes axonales tienen en promedio mayor tiempo de VM y de hospitalización, en total y por subgrupos. Se observó un mayor requerimiento de VM para las variantes axonales en niños; mientras que en los adultos fue menor.
ABSTRACT Objectives. To determine the requirement and time to mechanical ventilation and Intensive Care Unit (ICU), hospitalization and hospitalization time, death and disability of the axonal variants of Guillain-Barré Syndrome (GBS) in comparison with the acute demyelinating variant in patients of all the ages. Materials and methods. The systematic review that included patients with GBS. The exposure variable was the axonal variants and the comparator was acute inflammatory demyelinating polyneuropathy (AIDP). The outcomes were the requirement and time on mechanical ventilation (MV), requirement and time in the ICU, hospitalization time, disability and death. The NewCasttle-Ottawa Scale (NOS) was used to assess risk of bias. A meta-analysis was conducted to calculate mean differences and relative risks (RR) with their 95% confidence intervals (CI) using inverse variances and random effects models. Results. Of the 3116 articles found, 46 met the selection criteria. The time on MV was 7.42 days (95% CI: 0.36 to 1.48) and the hospitalization time was 3.11 (95% CI: 0.73 to 5.49) days for the axonal variants. The axonal variants had a RR of 0.47 (95% CI: 0.24 to 0.92) for the requirement of MV in adults, but it was 1.68 (95% CI: 1.25 to 2.25) in children. There was a high statistical heterogeneity. Conclusions. Axonal variants showed, on average, longer MV and hospitalization time, overall and by subgroups. A high MV requirement was found for axonal variants in children; it was lower for adults.
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La tomografía por impedancia eléctrica (TIE) es una modalidad de monitorización funcional respiratoria por imagen, no invasiva y libre de radiación, que permite visualizar en tiempo real la ventilación pulmonar regional y global en pacientes adultos y pediátricos conectados a Ventilación Mecánica (VM). OBJETIVO: Se describe la utilidad de la TIE en dos pacientes críticos pediátricos, en quienes no fue factible realizar medición de mecánica pulmonar, como herramienta para el ajuste de parámetros ventilatorios. CASOS CLÍNICOS: Se presentan dos pacientes pediátricos de 27 y 11 meses con condiciones clínicas diferentes, conectados a VM, en quienes se utilizó la TIE como método de monitoreo de la distribución pulmonar y titulación de la presión positiva al final de la espiración (PEEP) óptima, con el objetivo de obtener una ventilación pulmonar más homogénea. Se presentan mediciones funcionales con diferentes niveles de PEEP y valores de distribución en las distintas regiones de interés (ROI), además de un flujograma de situaciones en las que la TIE podría resultar útil para el ajuste ventilatorio. CONCLUSIÓN: La información funcional proporcionada por la TIE, permitió monitorizar de forma dinámica la VM y optimizar los parámetros ventilatorios, facilitando la implementación de estrategias de protección pulmonar en ambos pacientes, imposibilitados de realizar una medición estática de la mecánica respiratoria.
The Electrical Impedance Tomography (EIT) is a non-invasive and radiation-free respiratory functional imaging monitoring modality that allows real-time visualization of regional and global lung ventilation in adult and pediatric patients connected to mechanical ventilation (MV). OBJECTIVE: This paper describes the utility of EIT in two critical pediatric patients for whom measuring pulmonary mechanics was not feasible. EIT is used as a tool for adjusting ventilatory parameters. CLINICAL CASES: Two pediatric patients aged 27 and 11 months, with different clinical conditions, connected to MV are presented. EIT was used to monitor lung distribution and titrate the optimal Positive End-Expiratory Pressure (PEEP), to achieve more homogeneous lung ventilation. Functional measurements are presented with different PEEP levels and distribution values in different regions of interest (ROI), along with a flowchart illustrating situations where EIT could be useful for ventilatory adjustment. CONCLUSION: The functional information provided by EIT, allowed dynamic monitoring of MV, optimizing ventilatory parameters and facilitating the implementation of lung protective strategies in both patients, unable to undergo static respiratory mechanics measurements.
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Humanos , Masculino , Lactante , Preescolar , Respiración Artificial/métodos , Pruebas de Función Respiratoria , Tomografía Computarizada por Rayos X/métodos , Impedancia Eléctrica , Respiración con Presión Positiva , Cuidados Críticos , Monitoreo FisiológicoRESUMEN
Background: The incidence of malnutrition in children admitted to pediatric intensive care unit (PICU), has always been significant. In addition, nutritional status of critically ill children deteriorates further during their PICU stay and may have negative effect on patients` outcome. This study aims to determine the critically ill children, to analyse and document its impact on outcome and to survey current nutritional practices and support in PICU.Methods: This was a prospective observational study done over a period of 10 months on critically ill patients admitted in PICU of department of pediatrics at Baroda medical college and Sir Sayajirao Gaekwad hospital, Vadodara.Results: Total of 350 patients admitted in PICU of S. S. G. hospital, Vadodara were enrolled in the study. Malnutrition was higher in age 6-60-month age group (57%) of patients admitted in PICU, 81% of severe acute malnutrition patients required mechanical ventilation and 19% required HFNC support, there was statistically significant difference in mortality (51.1%) of SAM patients as compared to normal patients.Conclusions: Malnutrition is one of the leading causes of mortality in patients admitted to PICU, with more complications with prolonged ventilator support, longer duration of stay in PICU.
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Objetivo: Descrever os parâmetros validados por enfermeiros relacionando com a sua prática assistencial na monitorização de pacientes críticos sob ventilação mecânica. Métodos: Estudo descritivo-exploratório, de abordagem quantitativa, cujos dados foram discutidos à luz da Resolução Conselho Federal de Enfermagem n. 639/2020 e de parâmetros clínicos obtidos validados por enfermeiros intensivistas. Resultados: Os parâmetros validados foram discutidos em termos de sua aplicabilidade clínica para o alcance da competência monitorização respiratória, um dos itens presentes na referida resolução como privativa do enfermeiro. Criou-se um quadro com os parâmetros gerais para a monitorização respiratória/ventilatória por enfermeiros, com alvo clínico e local de obtenção do parâmetro no ventilador mecânica, para colaborar com a sua usabilidade. Conclusão: Apresentou-se a aplicabilidade de parâmetros validados por enfermeiros na assistência aos pacientes sob ventilação mecânica. Pondera-se sua contribuição para maior qualidade na assistência, melhores desfechos clínicos, assim como, evitar complicações associadas à ventilação mecânica. (AU)
Objective: To describe the respiratory/ventilatory parameters validated by nurses relating to their care practice in critical patients on mechanical ventilation. Methods: Descriptive-exploratory study with quantitative approach, whose data were discussed based on COFEN Resolution 639/2020 and clinical parameters obtained validated by critical care nurses. Results: The validated parameters were discussed in terms of clinical applicability for achieving the competence "respiratory monitoring", one of the items present in the aforementioned resolution as private nurse care. A framework was created with the general parameters for respiratory/ventilatory monitoring by nurses, with clinical target and location of obtaining the parameter on the mechanical ventilator, to collaborate with its usability. Conclusion: The applicability of parameters validated by nurses in care of mechanically ventilated patients was presented. Its contribution to better quality care and clinical outcomes, as well as avoiding complications associated with mechanical ventilation. (AU)
Objetivo: describir los parámetros respiratorios/ventilatorios validados por enfermeros relacionando con su práctica asistencial en pacientes críticos con ventilación mecánica. Métodos: investigación descriptiva-exploratoria con abordaje cuantitativo, cuyos datos fueron discutidos en la Resolución COFEN 639/2020 y de parámetros clínicos obtenidos y validados por enfermeros intensivistas. Resultados: los parámetros validados fueron discutidos en términos de su aplicabilidad clínica para el alcance de la competencia "monitoreo respiratorio", uno de los ítems presentes en la referida resolución como exclusiva del enfermero. Se creó un cuadro con los parámetros generales para el monitoreo respiratorio/ventilatorio por enfermeros, con objetivo clínico y lugar de obtención del parámetro en el ventilador mecánico, para colaborar con su usabilidad. Conclusión: se presentó la aplicabilidad de parámetros validados por enfermeros en la asistencia a pacientes con ventilación mecánica. Se pondera su contribución para una mayor calidad en la asistencia, mejores desenlaces clínicos y, también, para evitar complicaciones asociadas con la ventilación mecánica. (AU)
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Respiración Artificial , Insuficiencia Respiratoria , Infecciones por Coronavirus , Enfermería de Cuidados CríticosRESUMEN
Introducción. Las cardiopatías congénitas (CC) en Chile corresponden a la segunda causa de muerte en menores de 1 año, requiriendo cirugías paliativas y/o correctivas el 65% de estas. En el post operatorio frecuentemente se utiliza ventilación mecánica invasiva (VM) y succión endotraqueal (SET) para remover secreciones. Sin embargo, la kinesiología respiratoria (KTR) ha mostrado mejoras significativas en la distensibilidad toracopulmonar (Cest) y resistencia de vía aérea (Rva) en otros grupos de usuarios pediátricos y adultos en VM. Objetivo. Comparar los cambios en la Cest y Rva en usuarios pediátricos en VM post cirugía de cardiopatía congénita (CCC) sometidos a KTR versus SET exclusiva. Métodos. Revisión sistemática de estudios publicados en bases de datos PUBMED, PeDro, Scielo y Google Scholar que comparan el uso de KTR ó SET sobre los cambios en mecánica ventilatoria en usuarios pediátricos en VM post cirugía de cardiopatía congénita, limitados a inglés, español y portugués, excluyendo a sujetos con traqueostomía o con oxigenación por membrana extracorpórea. Se utilizó guía PRISMA para la selección de artículos. Se revisaron 397 artículos y se seleccionó 1 artículo extra de los artículos sugeridos. Se eliminó 1 artículo por duplicidad. Por títulos y resúmenes se seleccionaron 2 artículos, los cuales al leer el texto completo fueron retirados debido a que la población no correspondía a cardiópatas. Resultados. El final de artículos seleccionados fue de 0 artículos, debido a lo cual se removió el operador Booleano "NOT", y se removió la población de cardiopatías. De este modo quedaron 2 artículos seleccionados para la revisión cualitativa final donde se compara KTR versus SET, y KTR en kinesiólogos especialistas y no especialistas, mostrando ambos aumento en la Cest y disminución de la Rva a favor de la KTR, hasta los 30 minutos post intervención. Conclusiones. No se encontraron artículos que demuestren cambios en Cest y Rva con el uso de KTR + SET versus SET exclusiva, en usuarios pediátricos ventilados posterior a CCC. Con la remoción de filtros seleccionamos 2 artículos que demuestran aumento de Cest y disminución de Rva en sujetos pediátricos en VM, uno comparando con SET, y por grupos de especialistas y no especialistas en respiratorio. Se sugieren estudios primarios para evaluar los efectos de esta intervención en esta población.
Introduction. Congenital heart diseases (CHD) are the second general cause for children death under 1 year. In Chile, approximately 65% CHD need surgery, could was palliative or corrective. In the postoperative period, invasive mechanical ventilation (MV) is frequently used as a life support method, but it is associated with complications. Tracheal suction (SET) is regularly used to remove secretions; however, respiratory chest physiotherapy (KTR) has shown significant improvements in thoraco-pulmonary compliance and airway resistance in other groups of pediatrics and adult's users in MV. Objetive. to compare changes in thoraco-pulmonary compliance and airway resistance in pediatric subjects under mechanical ventilation after congenital heart disease surgery comparing chest physiotherapy and exclusive tracheal suction. Methods. systematic review of studies published in PUBMED, PeDro, Scielo and Google Scholar databases who compares KTR or SET use on changes in ventilatory mechanics in pediatric users under MV after congenital heart disease surgery, limited to English, Spanish and Portuguese languages, excluding user with tracheostomy or extracorporeal membrane of oxygenation. It was use the PRISMA guide to articles selection. A search was carried out, with a total of 397 articles reviewed (English: PubMed = 3, PeDro = 8, Scholar = 383; Spanish: Scholar = 3, Scielo = 0; and Portuguese: Scielo = 0). One extra article was selected from the suggested articles, and 1 article was eliminated due to duplication. By titles and abstracts, 2 articles were selected, but the population did not correspond to heart disease. Results. the final selected articles were 0 articles. By this reason, it were removed: Boolean operator "NOT", and congenital heart disease population. Thus, 2 articles were selected for the final qualitative review where it was compares KTR versus SET, and KTR by specialist and non-specialist. Both articles shown improvement in compliance and resistance until 30 minutes post intervention. The CC population was in a 40 to 60% range in both studies. Conclusions. it was no found articles that demonstrate changes in compliance and resistance in the airway with the use of KTR + SET versus exclusive SET in pediatric users after CCC connected to MV. After filter remotion, we found 2 studies shown improves in increase compliance and reduce resistance in pediatric user in MV, ones comparing with SET, and the other one comparing between specialists in respiratory pediatric physiotherapy and not specialists. It suggests to made primary clinical studies about this intervention in CC population.
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With the optimization of surgical technologies and postoperative management regimens, the number of lung transplantation has been significantly increased, which has become an important treatment for patients with end-stage lung disease. However, due to the impact of comprehensive factors, such as bronchial ischemia and immunosuppression, the incidence of airway stenosis after lung transplantation is relatively high, which severely affects postoperative survival and quality of life of lung transplant recipients. In recent years, with the improvement of perioperative management, organ preservation and surgical technologies, the incidence of airway stenosis after lung transplantation has been declined, but it remains at a high level. Early diagnosis and timely intervention play a significant role in enhancing clinical prognosis of patients with airway stenosis. In this article, the general conditions, diagnosis, treatment and prevention of airway stenosis after lung transplantation were reviewed, aiming to provide reference for comprehensive management of airway stenosis after lung transplantation and improving clinical prognosis of lung transplant recipients.
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This article takes pectoral qi as the starting point to discuss the traditional Chinese medicine(TCM)pathogenesis as well as the diagnostic and therapeutic approach to difficult withdrawal of mechanical ventilation in mechanically ventilated patients.According to the five-viscera correlation theory,it is believed that the onset of difficult withdrawal of mechanical ventilation is closely related to pectoral qi.The core pathogenesis of difficult withdrawal of mechanical ventilation is due to the insufficiency of pectoral qi and the deficiency of the lung,spleen and kidney,and the obstruction of pectoral qi and disharmony of qi and blood contribute to the key pathogenesis.Chinese medicine treatment can be carried out by the usage of Sijunzi Tang(Four Mild-Drug Decoction),Bufei Tang(Decoction for Replenishing Lung),Shenling Baizhu San(Powder of Radix Ginseng,Poria and Rhizoma Atractylodis Macrocephalae)to supplement and benefit pectoral qi,and by the utilization of Buzhong Yiqi Tang(Decoction for Tonifying Middle Energizer and Replenishing Qi),Shengxian Tang(Decoction for Lifting the Sinking of Qi in Chest),Juyuan Jian(Decoction for Replenishing Qi and Lifting the Sunken Qi)to elevate yang and lift the sinking of Qi.Moreover,herbs for regulating qi and blood should be added,and the management of the diet and daily living based on the identification of the deficiency and excess of the five viscera is stressed,so as to enhance the success rate of withdrawal of mechanical ventilation.The exploration will provide ideas for the treatment of difficult withdrawal of mechanical ventilation with the integrated Chinese and western medicine.
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Appropriate positive end-expiratory pressure(PEEP)level is an important component of protective lung ventilation strategy.PEEP can maintain the openness of alveoli and reduce lung collapse in-jury.Although individualized PEEP application has been increasingly recognized by clinical physicians,the optimal PEEP titration method is still controversial.Electrical impedance tomography(EIT)is a non-inva-sive and radiation-free imaging technique that can be used to dynamically assess lung function at the bedside.EIT presents changes in impedance during ventilation as dynamic images,which can reflect altera-tions in ventilation and gas distribution before and after PEEP adjustments.Therefore,EIT can be utilized to tailor individualized PEEP.This article provides a brief overview of the basic principles and monitoring pa-rameters of EIT.It elucidates the PEEP titration method under the guidance of EIT in clinical applications(PEEPEIT),aiming at enhancing the understanding of the advantages and limitations of EIT and providing reference for the setting of individualized PEEP.
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Objective:To investigate the intervention effect of sling exercise therapy on ventilator-induced diaphragm dysfunction (VIDD) in patients with mechanical ventilation, and to provide the reference for prevention and treatment of VIDD.Methods:By a prospective randomized controlled study method, a total of 74 mechanical ventilation patients in Guangzhou Red Cross Hospital from July 2022 to July 2023 were convenient selected, they were divided into the experimental group and the control group according to the random number table method with 37 cases in each group. Both groups were given routine nursing care, the control group carried out early rehabilitation exercise, the experimental group implemented sling exercise therapy. The diaphragm function, respiratory function after the different time of intervention, and outcome events were compared between two groups.Results:Finally, the experimental group included 34 cases, 22 males and 12 females, aged (55.50 ± 12.03) years old. The control group included 36 cases, 25 males and 11 females, aged (54.78 ± 12.81) years old. There was no significant difference in the diaphragm function, respiratory function before intervention(all P>0.05). After 7 d of intervention, the diaphragmatic excursion, diaphragm thickening fraction were (1.59 ± 0.21) cm, (45.90 ± 5.20) % in the experimental group, which were higher than those in the control group (1.49 ± 0.21) cm, (42.78 ± 5.51) %, the differences were statistically significant ( t=2.13, 2.44, both P<0.05). After 5, 7 d of intervention, the rapid shallow breathing index was (81.47 ± 6.97), (77.29 ± 8.91) times. min -1.L -1 in the experimental group, which were lower than those in the control group (88.36 ± 9.04), (84.67 ± 9.64) times.min -1.L -1; after 3, 5, 7 d on intervention, the oxygenation index was (230.79 ± 44.79), (241.59 ± 23.79), (258.56 ± 23.09) mmHg(1 mmHg=0.133 kPa) in the experimental group, which were higher than those in the control group (197.25 ± 21.21), (212.72 ± 21.81), (242.75 ± 24.37) mmHg, the differences were statistically significant ( t values were 2.78-5.30, all P<0.05). The mechanical ventilator time and the length of stay in ICU were (225.29 ± 47.31) h, (12.47 ± 3.71) d in the experimental group, which were lower than those in the control group (260.53 ± 56.32) h, (14.64 ± 4.53) d, the differences were statistically significant ( t=2.83, 2.18, both P<0.05). The incidence rate of VIDD was 5.9%(2/34) in the experimental group, which was lower than that in the control group 22.2%(8/36), and the weaning success rate was 91.2%(31/34) in the experimental group, which was higher than that in the control group 72.2% (26/36), the differences were statistically significant ( χ2=4.18, 4.15, both P<0.05). Conclusions:Sling exercise therapy can effectively promote diaphragm function and respiratory function, shorten mechanical ventilator time and the length of stay in ICU of patients with mechanical ventilation, and reduce the occurrence of VIDD.
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Objective:To analyze clinical characteristics of patients within 48 hours in pediatric intensive care unit(PICU),and investigate causes and prognosis of extubation failure in reintubation children.Methods:A single-center retrospective study was conducted.Patients who were reintubated within 48 hours after extubation in PICU at Children's Hospital of Fudan University from January 1,2019 to December 31,2022 were retrospectively enrolled.Patients with unplanned extubation for various reasons which include re-intubation due to surgery and replacement of tracheal intubation were excluded.We analyzed the clinical characteristics,causes of extubation failure and prognosis.Main outcome measures included principal diagnosis,pediatric critical illness score(PCIS),the reason of intubation,the glasgow coma scale(GCS),the direct cause of reintubation,aeration time,hospitalization period,outcomes at PICU discharge and whether to extubate successfully.Results:During the study period,a total of 2 652 patients were extubated in PICU,and a total of 87 children were enrolled.Finally,63(72.4%)patients survived at PICU,nine(10.3%)patients died in hospital,and 15(17.2%)patients were discharged automatically.In the survival group,38(60.3%)patients were decannulated and 25(39.7%)patients underwent tracheotomy.The top three principal diagnosis in 87 cases were central nervous system disease[34(39.1%)cases],lower airway disease[18(20.7%)cases] and sepsis[nine(10.3%)cases].Of the 87 children,28(32.2%)patients were reintubated due to central respiratory failure,21(24.1%)patients were reintubated due to lower airway disease,20(23.0%)patients were reintubated due to upper airway obstruction,14(16.1%)patients were reintubated due to cough weakness and/or swallowing disturbance,and four(4.6%)patients were reintubated for other reasons.In children with mechanical ventilation duration ≥7 days before first extubation,central nervous system diseases were the most common primary diseases,and it accounts for 55.6%.Central respiratory failure was the main direct cause of reintubation,accounting for 40.0%,and more patients(40.0%) had GCS scores<8 before the first intubation.Compared with the successful decannulation group,the extubation failure group had the higher proportion of children with GCS<8(32.7% vs.10.5%, P<0.05),the longer median duration of mechanical ventilation before the first extubation[239(123,349)h vs.68.5(19,206)h, P<0.05]and the longer median length of ICU stay[38(23,54)d vs.24(12,43)d, P<0.05].After comparing the three groups including survival group,in-hospital death group and automatic discharge group,the PCIS score of the survival group was the highest,and the in-hospital death group was the lowest( P<0.05). Conclusion:The rate of reintubation at 48 h after extubation in PICU is 3.3%.The immediate causes of reintubation mainly included central respiratory failure,lower airway disease,upper airway obstruction,cough weakness and/or dysphagia.The mortality rate of reintubation in critically ill children is high and the prognosis is poor.
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Objective:To study the predictive values of lung ultrasound (LUS) score and Downes score in selecting respiratory support strategies for newborns with dyspnea.Methods:From September 2021 to July 2022, newborns admitted to our hospital with dyspnea were selected and assigned into the non-invasive respiratory support (N) group, invasive respiratory support (I) group and control (C) group based on the respiratory support strategies on admission. LUS scores and Downes scores at 6, 24, and 48 h after birth were recorded. ROC curves were drawn to determine the predictive values of LUS and Downes scores for respiratory support strategies.Results:A total of 263 cases were enrolled, including 105 cases in N group, 56 cases in I group and 102 cases in C group. The differences of LUS and Downes scores between the three groups at the same timepoint were statistically significant with I group had the highest scores, N group second and C group lowest ( P<0.05). LUS and Downes scores within each group at different timepoints were significantly different ( P<0.05).In all three groups, LUS and Downes scores were decreased with longer duration of treatment. LUS score, Downes score and PaO 2/FiO 2 were positively correlated with each other ( P<0.05). The area under the curve (AUC) of LUS score and Downes score predicting non-invasive respiratory support within 6 h after birth were 0.900 (95% CI 0.861-0.940, P<0.05) and 0.889 (95% CI 0.847-0.931, P<0.05), respectively, with the same cutoff of 2.5. The AUC of the combination of LUS and Downes scores predicting non-invasive respiratory support was 0.944 (95% CI 0.915-0.973, P<0.05). The AUC of LUS score and Downes score predicting invasive respiratory support were 0.979 (95% CI 0.963-0.995, P<0.05) and 0.831 (95% CI 0.760-0.902, P<0.05), respectively, with the same cutoff of 5.5. The AUC of the combination of LUS and Downes scores predicting invasive respiratory support was 0.985 (95% CI 0.972-0.998, P<0.05). Conclusions:Both LUS score and Downes score have certain predictive values for respiratory support strategies in newborns with dyspnea.
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Objective The best evidence of respiratory muscle training for patients with mechanical ventilation in ICU after machine withdrawal was extracted and summarized to provide evidence-based evidence for respiratory muscle training for patients with mechanical ventilation after machine withdrawal.Methods We searched relevant guideline networks and association websites,as well as PubMed,Web of Science,Embase,CINAHL,CNKI,VIP,Wanfang and other databases to collect relevant guidelines,clinical decisions,evidence summaries,expert consensuses,systematic reviews and randomized controlled studies,and the search time limit is from the establishment of the databases to July 30,2023.There were 2 researchers who independently evaluated the literature quality and extracted data.Results A total of 13 articles were included,including 2 guidelines,2 clinical decisions,5 systematic reviews and 4 expert consensuses.There were 24 pieces of evidence being summarized in 7 categories,including training team,training evaluation,training methods,training frequency,training safety,training effect evaluation and health education.Conclusion This study summarizes the best evidence for respiratory muscle training in patients with mechanical ventilation after withdrawal,which can provide references for medical staffs to conduct respiratory muscle training for patients after withdrawal.It is recommended that medical staff should consider the clinical situation when applying the evidence,and selectively apply the best evidence.
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From the perspective of state differentiation and treatment, it is believed that the pathogenesis of acute respiratory distress syndrome (ARDS) is that evil poisons injured the lungs, and the lung qi suddenly collapsed, then blocked and exhausted, and the qi failure to control blood and liquid, then the fluids overflow outside the vessels, and damp phlegm, stasis, and toxins became knotted up in the body, which ultimately leads to qi dysfunction, and a series of symptom arise, so qi impairment is the principal mechanism of ARDS. A combination of Chinese and Western medicine was proposed to treat ARDS by combining tangible qi and intangible qi, using Chinese herbal medicine to boost qi and relieve collapse, percolate and drain dampness with bland medicinals, resolve toxins and dissolve stasis, and regulate qi, and combining with Western medicine to assist qi circulation to improve qi's consolidation, propulsion, and transformation, so as to make the evil qi go away, the positive qi restored, the viscera qi circulated, qi, blood, yin, and yang connected, and the activities of life maintained, and thus to achieve the goal of treating ARDS by integrated Chinese medicine and Western medicine.
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Objective To analyze the influencing factors of survival of patients with airway stenosis requiring clinical interventions after lung transplantation. Methods Clinical data of 66 patients with airway stenosis requiring clinical interventions after lung transplantation were retrospectively analyzed. Univariate and multivariate Cox’s regression models were adopted to analyze the influencing factors of survival of all patients with airway stenosis and those with early airway stenosis. Kaplan-Meier method was used to calculate the overall survival and delineate the survival curve. Results For 66 patients with airway stenosis, the median airway stenosis-free time was 72 (52,102) d, 27% (18/66) for central airway stenosis and 73% (48/66) for distal airway stenosis. Postoperative mechanical ventilation time [hazard ratio (HR) 1.037, 95% confidence interval (CI) 1.005-1.070, P=0.024] and type of surgery (HR 0.400, 95%CI 0.177-0.903, P=0.027) were correlated with the survival of patients with airway stenosis after lung transplantation. The longer the postoperative mechanical ventilation time, the higher the risk of mortality of the recipients. The overall survival of airway stenosis recipients undergoing bilateral lung transplantation was better than that of their counterparts after single lung transplantation. Subgroup analysis showed that grade 3 primary graft dysfunction (PGD) (HR 4.577, 95%CI 1.439-14.555, P=0.010) and immunosuppressive drugs (HR 0.079, 95%CI 0.022-0.287, P<0.001) were associated with the survival of patients with early airway stenosis after lung transplantation. The overall survival of patients with early airway stenosis after lung transplantation without grade 3 PGD was better compared with that of those with grade 3 PGD. The overall survival of patients with early airway stenosis after lung transplantation treated with tacrolimus was superior to that of their counterparts treated with cyclosporine. Conclusions Long postoperative mechanical ventilation time, single lung transplantation, grade 3 PGD and use of cyclosporine may affect the survival of patients with airway stenosis after lung transplantation.
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OBJECTIVE To systematically evaluate the efficacy and safety of midazolam and dexmedetomidine/propofol for the sedation of critically ill patients undergoing mechanical ventilation, and to provide evidence-based reference for clinical treatment. METHODS Retrieved from PubMed, Embase, Web of Science, Cochrane Library, Clinical trials. gov, China Journal Full Text Database, Chinese Science and Technology Journal Database, Wanfang database and China Biomedical Literature Database, the data on the efficacy and safety of midazolam and dexmetomidine/propofol for the sedation of critically ill patients undergoing mechanical ventilation were collected from the establishment of the database to March 31, 2023. After extracting data from clinical studies that met the inclusion criteria, the meta-analysis was conducted by using the RevMan 5.3 statistical software. RESULTS A total of 31 literature were included, with a total of 2 765 patients. Results of meta-analysis showed that the mechanical ventilation time [MD=14.13, 95%CI (13.75, 14.52), P<0.000 01] and the length of hospitalization in the intensive care unit [MD=0.92, 95%CI (0.54, 1.30), P<0.000 01] of patients in the midazolam group was longer than dexmedetomidine/ propofol group. The incidence of bradycardia in midazolam group was lower dexmedetomidine/propofol group [OR=0.60, 95%CI (0.41, 0.90), P=0.01], but there was no statistically significant difference in the incidence of hypotension between the two groups [OR=0.69, 95%CI (0.47, 1.01), P=0.06]. The incidence of delirium [OR=3.88, 95%CI (2.74, 5.49), P<0.000 01], ventilator- associated pneumonia [OR=2.32, 95%CI (1.19, 4.51), P=0.01], and respiratory depression [OR=5.70, 95%CI (3.09, 10.52), P<0.000 01] in midazolam group were higher than dexmedetomidine/propofol group. CONCLUSIONS Compared with dexmedetomidine/propofol, midazolam increases patients’ mechanical ventilation time and the length of hospitalization in the intensive care unit in terms of efficacy, and increases the risk of delirium and pulmonary complications in terms of safety, but has a smaller cardiovascular impact.
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Objective To compare the anesthetic effect and safety of Ciprofol and Propofol combined with Fentanyl in painless bronchoscopy for conscious patients in intensive care unit(ICU).Methods 60 conscious patients who underwent painless bronchoscopy from October 2022 to January 2023 were selected.According to the random number table method,30 cases were divided into the control group(Propofol 1.5 mg/kg + Fentanyl 1 μg/kg)and 30 cases were divided into the experimental group(Ciprofol 0.4 mg/kg + Fentanyl 1 μg/kg).Systolic blood pressure,diastolic blood pressure,heart rate,respiratory frequency,and percutaneous arterial oxygen saturation(SpO2)were recorded before anesthesia(T1),during the examination(T2),and at the completion of the examination(T3)in the two groups,and the success rate of induction of general anesthesia,the time of induction of anesthesia,the time of bronchoscopy,the time of eye-opening,the total dosage of medications used,the incidence of injection pain,and the incidence of intraoperative adverse reactions(hypotension,respiratory depression,bradycardia,and bucking)in the two groups were compared.Results Analysis of the data revealed significant group,time,and interaction effects for systolic blood pressure,diastolic blood pressure,heart rate,and respiratory frequency at different time points(P<0.05).The experimental group had a shorter induction time of anesthesia[1.40(1.10,1.62)min]in comparison to the control group[1.60(1.30,2.10)min](P<0.05),and the experimental group required a less amount of drug to achieve the desired outcome[(21.40±1.82)mg]compared to the control group[(78.75±6.71)mg](P<0.05).Furthermore,the incidence of injection pain(3.33%)and respiratory depression(6.67%)was significantly reduced in the experimental group compared to the control group(36.67%)and(30.00%)(P<0.05).Conclusion The use of Ciprofol in combination with Fentanyl has been found to provide effective anesthesia during bronchoscopy,while also increasing safety and decreasing the incidence of adverse events.It is worthy of clinical application.
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Objective:To explore a simple method for measuring the dynamic intrinsic positive end-expiratory pressure (PEEPi) during invasive mechanical ventilation.Methods:A 60-year-old male patient was admitted to the critical care medicine department of Dongying People's Hospital in September 2020. He underwent invasive mechanical ventilation treatment for respiratory failure due to head and chest trauma, and incomplete expiratory flow occurred during the treatment. The expiratory flow-time curve of this patient was served as the research object. The expiratory flow-time curve of the patient was observed, the start time of exhalation was taken as T 0, the time before the initiation of inspiratory action (inspiratory force) was taken as T 1, and the time when expiratory flow was reduced to zero by inspiratory drive (inspiratory force continued) was taken as T 2. Taking T 1 as the starting point, the follow-up tracing line was drawn according to the evolution trending of the natural expiratory curve before the T 1 point, until the expiratory flow reached to 0, which was called T 3 point. According to the time phase, the intrapulmonary pressure at the time just from expiratory to inspiratory (T 1 point) was called PEEPi 1. When the expiratory flow was reduced to 0 (T 2 point), the intrapulmonary pressure with the inhaling power being removed hypothetically was called PEEPi 2. And it was equal to positive end-expiratory pressure (PEEP) set in the ventilator at T 3 point. The area under the expiratory flow-time curve (expiratory volume) between T 0 and T 1 was called S 1. And it was S 2 between T 0 and T 2, S 3 between T 0 and T 3. After sedation, in the volume controlled ventilation mode, approximately one-third of the tidal volume was selected, and the static compliance of patient's respiratory system called "C" was measured using the inspiratory pause method. PEEPi 1 and PEEP 2 were calculated according to the formula "C =ΔV/ΔP". Here, ΔV was the change in alveolar volume during a certain period of time, and ΔP represented the change in intrapulmonary pressure during the same time period. This estimation method had obtained a National Invention Patent of China (ZL 2020 1 0391736.1). Results:① PEEPi 1: according to the formula "C =ΔV/ΔP", the expiratory volume span from T 1 to T 3 was "S 3-S 1", and the intrapulmonary pressure decreased span was "PEEPi 1-PEEP". So, C = (S 3-S 1)/(PEEPi 1-PEEP), PEEPi 1 = PEEP+(S 3-S 1)/C. ②PEEPi 2: the expiratory volume span from T 2 to T 3 was "S 3-S 2", and the intrapulmonary pressure decreased span was "PEEPi 2-PEEP". So, C = (S 3-S 2)/(PEEPi 2-PEEP), PEEPi 2 = PEEP+(S 3-S 2)/C. Conclusion:For patients with incomplete expiratory during invasive mechanical ventilation, the expiratory flow-time curve extension method can theoretically be used to estimate the dynamic PEEPi in real time.
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The main clinical research advances of critical care in 2023 includes: new trials of Chinese herbal medicine, hydroxocobalamin (vitamin B12), methylene blue as well glucocorticoids have shown the potential to improve outcomes of patients with sepsis and septic shock; international committees launched new global definition and managing recommendations for acute respiratory distress syndrome (ARDS). Besides, a cluster of new evidences has emerged in many aspects as following: fluid control strategy in sepsis (restrictive/liberative), antibiotic infusion strategy (continuous/intermittent), oxygen-saturation targets for mechanical ventilation (conservative/liberative), blood pressure targets after resuscitation from out-of-hospital cardiac arrest (hypotension/hypertension), blood pressure targets after successful stroke thrombectomy (intensive/conventional), and nutritional support strategies (low protein-calories/conventional protein-calories, fasting/persistent feeding before extubation). Thus, given above progress, carrying out high -quality domestic multi-center clinical registration researches, constructing shareable standardized databases, as well raising public awareness of sepsis, should be the essential steps to improve our level of intensive care medicine.
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Objective:To investigate the effects of extracorporeal carbon dioxide removal (ECCO 2R) combined with continuous renal replacement therapy (CRRT) on respiratory efficiency and diaphragm function in patients with acute respiratory distress syndrome (ARDS) received mechanical ventilation. Methods:A prospective randomized controlled study was conducted. Sixty patients with mild to moderate ARDS admitted to the department of respiratory and critical care medicine of Henan Provincial People's Hospital from January 2019 to January 2021 were enrolled, and they were divided into observation group and control group according to the random number table method, with 30 cases in each group. All patients received antibiotics, anti-inflammatory, and mechanical ventilation therapy. On this basis, the observation group received ECCO 2R and CRRT, while the control group received bedside CRRT. Baseline data including gender, age, etiology, acute physiology and chronic health evaluationⅡ(APACHEⅡ), etc., were recorded. Arterial blood gas analysis [including arterial partial pressure of oxygen (PaO 2), arterial partial pressure of carbon dioxide (PaCO 2), and oxygenation index (PaO 2/FiO 2)] was performed at 12 hours and 24 hours during the treatment, and respiratory mechanics parameters [including tidal volume, respiratory rate, maximum expiratory pressure (MEP), and maximum inspiratory pressure (MIP)] were recorded, and rapid shallow breathing index (RSBI) was calculated. The levels of glutathione peroxidase (GSH-Px), malondialdehyde (MDA), and superoxide dismutase (SOD) in serum were detected by enzyme-linked immunosorbent assay (ELISA). Diaphragm thickness and diaphragm activity were measured by ultrasonography at 24 hours during the treatment. Results:There were no significantly differences in age, gender, etiology, and APACHEⅡ score between the two groups, indicating that the baseline data of the two groups were balanced and comparable. Compared with the 12 hours after treatment, the PaO 2 and PaO 2/FiO 2 in the observation group significantly increased, PaCO 2 significantly decreased, RSBI significantly decreased, MEP and MIP significantly increased, and serum GSH-Px and MDA significantly decreased, while SOD significantly increased at 24 hours during the treatment. In the control group, only PaCO 2 significantly decreased. Compared with the control group, the PaCO 2 significantly decreased in the observation group at 12 hours and 24 hours [mmHg (1 mmHg≈0.133 kPa): 55.05±7.57 vs. 59.49±6.95, 52.77±7.88 vs. 58.25±6.92, both P < 0.05], but no significantly differences in PaO 2 and PaO 2/FiO 2. Compared with the control group, the observation group showed significant decreases in RSBI at 12 hours and 24 hours (times·min -1·L -1: 85.92±8.83 vs. 90.38±3.78, 75.73±3.86 vs. 90.05±3.66, both P < 0.05), significant increases in MEP and MIP [MEP (mmH 2O, 1 mmH 2O≈0.01 kPa): 86.64±5.99 vs. 83.88±4.18, 93.70±5.59 vs. 85.04±3.73; MIP (mmH 2O): 44.19±6.66 vs. 41.17±3.13, 57.52±5.28 vs. 42.34±5.39, all P < 0.05], and significant decreases in serum GSH-Px and MDA [GSH-Px (mg/L): 78.52±8.72 vs. 82.10±3.37, 57.11±4.67 vs. 81.17±5.13; MDA (μmol/L): 7.84±1.97 vs. 8.71±0.83, 3.67±0.78 vs. 8.41±1.09, all P < 0.05], as well as a significant increase in SOD (U/L: 681.85±49.24 vs. 659.40±26.47, 782.32±40.56 vs. 676.65±51.97, both P < 0.05). Compared with the control group, the observation group showed significant increases in diaphragm thickness and diaphragm activity at 24 hours of treatment [diaphragm thickness (cm): 1.93±0.28 vs. 1.40±0.24, diaphragmatic thickening fraction: (0.22±0.04)% vs. (0.19±0.02)%, quiet breathing diaphragm displacement (cm): 1.42±0.13 vs. 1.36±0.06, deep breathing diaphragm displacement (cm): 5.11±0.75 vs. 2.64±0.59, all P < 0.05]. Conclusion:ECCO 2R combined with CRRT can reduce work of breathing and oxidative stress levels in ARDS patients receiving non-invasive ventilation, and protect diaphragm function.
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Objective:To investigate the correlation between diaphragmatic-rapid shallow breathing index (D-RSBI) and lung ultrasound score (LUS) in elderly patients with mechanical ventilation and its predictive value for weaning results.Methods:A retrospective study was conducted. The clinical data of elderly patients (age > 60 years old) with invasive positive pressure ventilation (IPPV) admitted to the department of intensive care unit (ICU) of the First Affiliated Hospital of Jinzhou Medical University from January 2021 to June 2022 were enrolled. According to the outcome of withdrawal, the patients were divided into successful and failed groups. The differences in gender, age, acute physiology and chronic health evaluation Ⅱ (APACHEⅡ), D-RSBI and LUS before weaning and extubation were compared between the two groups. Pearson correlation was used to analyze the correlation between D-RSBI and LUS. The predictive value of D-RSBI and LUS on weaning results of elderly patients with IPPV was analyzed by receiver operator characteristic curve (ROC curve).Results:A total of 398 elderly patients with IPPV were enrolled, including 300 successful weaning patients and 98 failed weaning patients. There were no significant differences in gender and age between the failed group and successful group [male: 55.1% (54/98) vs. 59.0% (177/300), age (years old): 67.02±5.03 vs. 66.96±4.99, both P > 0.05]. APACHEⅡ score in the failed group was significantly higher than that in the successful group (17.09±3.30 vs. 16.06±3.81, P < 0.05), and the D-RSBI and LUS score before extubation were significantly higher than those in the successful group [D-RSBI (time·min -1·mm -1): 2.19±0.33 vs. 1.60±0.22, LUS: 17.30±3.04 vs. 11.97±3.20, both P < 0.01]. All patients showed a significant positive correlation between D-RSBI and LUS score ( r = 0.406, P = 0.000). ROC curve analysis showed that the area under the curve (AUC) of D-RSBI for predicting weaning outcomes in elderly IPPV patients was 0.920, with a 95% confidence interval (95% CI) of 0.881-0.958 and P = 0.000. When the cut-off value was 1.85 times·min -1·mm -1, the sensitivity was 88.7% and the specificity was 86.7%. The AUC of LUS score for predicting weaning outcome in elderly IPPV patients was 0.875, with a 95% CI of 0.839-0.912 and P = 0.000. When the cut-off value was 14.50, the sensitivity was 75.7% and the specificity was 84.7%. Conclusion:There is a significant correlation between D-RSBI and LUS score in elderly mechanically ventilated patients, both of them can predict weaning outcome in elderly patients with mechanical ventilation.