Background: Children with invasive long-term mechanical ventilation (LTMV) dependence are a complex, heterogeneous population with wide variability in respiratory outcomes. Limited data exist on their ventilator weaning trajectories and respiratory characteristics as they progress toward liberation from the ventilator.
Objective: To describe a population of children with invasive LTMV dependence who have successfully liberated from ventilator support, focusing on ventilator parameters as potential early predictors of liberation.
Methods: This was a retrospective study of children who initiated chronic ventilator support at < 12 months of age at our institution, received ventilator support through a tracheostomy tube, were followed through our outpatient clinic, and were fully liberated from mechanical ventilation. Our primary outcome was age at liberation from ventilator support. Multiple covariates were described, including baseline descriptors, health system utilization descriptors, disease markers, and care milestones.
Results: Seventy-eight patients were identified. The median age of tracheostomy was 3.8 [IQR: 3.0-4.8] months. The median age of first hospital discharge to home care was 9.3 months [IQR: 7.5-12], with a median of 44 hospital encounters after initial discharge. These patients were liberated at a median age of 23.9 [18.3-32.2] months. Age at liberation from the ventilator was highly variable within our institution.
Conclusion: The most significant variation in outcome was introduced after hospital discharge and appears to be largely independent of lung disease severity as indicated by ventilatory support. No single covariate was strongly correlated with liberation outcome. Further studies are needed to identify underlying pathophysiology that may contribute to the varied weaning trajectories to better define objective weaning strategies.
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http://dx.doi.org/10.1002/ppul.27405 | DOI Listing |
Arch Orthop Trauma Surg
December 2024
Sitaram Bhartia Institute of Science and Research, New Delhi, India.
Purpose: Achieving precise postoperative alignment is critical for the long-term success of total knee arthroplasty (TKA). Long-leg standing radiograph (LLR) at 6 weeks post-op is the gold standard for assessing alignment, but its reliance on weight-bearing and positioning makes it less practical in the early postoperative period. Supine computed tomography scanogram (CTS) offers a potential alternative.
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December 2024
School of Mechanical and Electrical Engineering, Qiqihar University, Qiqihar, 161006, China.
A prediction model of the pig house environment based on Bayesian optimization (BO), squeeze and excitation block (SE), convolutional neural network (CNN) and gated recurrent unit (GRU) is proposed to improve the prediction accuracy and animal welfare and take control measures in advance. To ensure the optimal model configuration, the model uses a BO algorithm to fine-tune hyper-parameters, such as the number of GRUs, initial learning rate and L2 normal form regularization factor. The environmental data are fed into the SE-CNN block, which extracts the local features of the data through convolutional operations.
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December 2024
Laboratory of Biology, Engineering, and Imaging for Ophthalmology, BiiO, Faculty of Medicine, University of Jean Monnet, 10 rue de la Marandière, 42270, Saint-Priest en Jarez, France.
The cornea, the anterior meniscus-shaped transparent and refractive structure of the eyeball, is the first mechanical barrier of the eye. Its functionality heavily relies on the health of its endothelium, its most posterior layer. The treatment of corneal endothelial cells (CECs) deficiency is allogeneic corneal graft using stored donor corneas.
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December 2024
Physical Chemistry and Soft Matter, Wageningen University and Research, 6708 WE Wageningen, Netherlands. Electronic address:
This study aimed to develop eco-friendly multifunctional nanocellulose (NC) hybrid films with tailored properties for versatile applications including packaging and photovoltaics. Hybrid films composed by cellulose nanocrystals (CNC) and carboxymethylated cellulose nanofibrils (CNF) were produced at various mass ratio (CNC - 100:0 to 0:100). Montmorillonite clay (MTM) was incorporated (50 % by mass) into the CNC:CNF films.
View Article and Find Full Text PDFInt J Biol Macromol
December 2024
Department of Dermatology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology (HUST), Wuhan 430022, China; Hubei Engineering Research Center for Skin Repair and Theranostics, Wuhan 430022, China. Electronic address:
Intralesional injection of 5-fluorouracil for the clinical treatment of hypertrophic scars (HS) remains challenging due to its short half-life, as well as the absence of evidence-based dosage and frequency injection guidelines. Herein, we developed a matrix metalloproteinases (MMPs)/reactive oxygen species (ROS)-responsive injectable prodrug hydrogel (GFP) that exhibits sustained drug release and fluorescence imaging capability, aiming to facilitate the optimization of injection dosage and frequency in HS treatment. The GFP hydrogel comprises gelatin methacryloyl and pendant methacryloyl-decorated tetrapeptide (PPPK) with 5-fluorouracil acetic acid/rhodamine B at the N-terminus.
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