Children' hospital of Fudan university
Shanghai, Shanghai Municipality, 201102, China
NCT Number: NCT07150637
Acquired weakness (AW) is a common complication among patients in the Intensive Care Unit (ICU). It is a systemic muscle weakness and dysfunction associated with critical illness, often related to prolonged bed rest, mechanical ventilation, systemic inflammatory response syndrome (SIRS), and multiple organ dysfunction syndrome (MODS). The primary clinical manifestations include weakness in limb and respiratory muscles, particularly diminished strength in distal muscle groups. As a result, the weaning process from mechanical ventilation becomes more challenging, leading to prolonged ICU stays, increased mortality, and a higher risk of long-term functional disability. The significance of AW lies not only in its substantial impediment to short-term recovery but also in its role as a core component of Post-Intensive Care Syndrome (PICS), profoundly affecting patients' long-term outcomes.
Mechanical ventilation is a vital life-support technology for critically ill children in the Pediatric Intensive Care Unit (PICU). However, complications associated with mechanical ventilation have garnered increasing attention, particularly Acquired Weakness in mechanically ventilated children. With improving survival rates in the PICU, a growing number of pediatric critical illness survivors are at risk of developing AW. Despite rapid advancements in pediatric critical care medicine in China, there is currently a lack of an early warning system for AW in children receiving mechanical ventilation, resulting in significantly delayed clinical interventions. This project aims to identify novel biomarkers for pediatric ICU-AW and develop an early warning model. It holds promise for transitioning from the traditional post-symptomatic diagnostic approach to subclinical prediction of AW in children, which is of great clinical value for reducing disability rates and optimizing critical care rehabilitation strategies.
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Request Info1 month–18 year
All sexes
Observational
Shanghai, Shanghai Municipality, 201102, China
A prospective cohort study of mechanically ventilated children was established to systematically analyze epidemiological characteristics. The modified Pediatric Medical Research Council (MRC) muscle strength scale (pMRC) combined with simplified bedside neuroelectrophysiological testing (measurement of common peroneal nerve compound muscle action potential amplitude) was used to determine the occurrence rate, subtype distribution (CIP/CIM/Mixed), and natural disease course of intensive care unit-acquired weakness (ICU-AW) among mechanically ventilated children in China. An age-stratified model was applied to analyze differences in the occurrence rate of ICU-AW among children of different age groups. A Cox regression model was employed to quantify the dose-response relationship between dynamic parameters-such as duration of mechanical ventilation, cumulative doses of sedative and analgesic drugs, and glycemic variability-and the development of ICU-AW, and to construct a risk prediction nomogram.
Clinical parameters-including demographic characteristics, disease types, critical illness scores, treatment indicators such as mechanical ventilation parameters, laboratory indicators (e.g., inflammatory and biomarkers, metabolic genes), imaging data (muscle and diaphragmatic ultrasound, electrophysiology), molecular biomarkers, and muscle biopsy data-were integrated. Data mining and machine learning techniques were applied to develop an early warning model for ICU-AW based on Cox regression. A logistic regression preliminary screening model was constructed by integrating demographic characteristics and biomarkers. Quantitative parameters from muscle ultrasound (e.g., diaphragmatic excursion, muscle thickness) were incorporated, and dynamic risk assessment was optimized using the Random Forest algorithm. The sensitivity and specificity of the model were evaluated.
Healthy volunteers accepted: No
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Inclusion criteria
Exclusion criteria
The enrolled children receiving mechanical ventilation were grouped based on the occurrence of ICU-acquired weakness (ICU-AW) at the study endpoint.
Time frame: Diagnosis of ICU-AW in mechanically ventilated children was determined based on assessments at day 10.
The occurrence rate of ICU-AW in mechanically ventilated children on day 10. ICU-AW was defined as: MRC score < 48, or slowed nerve conduction velocity on electromyography; CIP: normal or mildly reduced nerve conduction velocity, reduced CMAP amplitude, reduced mixed SNAP amplitude; CIM: normal or mildly reduced nerve conduction velocity, reduced CMAP amplitude, decreased muscle excitability to direct stimulation, increased CMAP duration, normal SNAP; or confirmed by muscle biopsy.
Time frame: mechanically ventilated children on day 0,day 3, day 7,day 10
The thickness of the right hemidiaphragm was assessed using a linear array probe placed along the right midaxillary line at the 7th/8th and 8th/9th intercostal spaces. Under the 2D ultrasound mode, the imaging depth was appropriately adjusted to identify the target diaphragmatic region. The diaphragm appeared as a heterogeneous echogenic layer sandwiched between two hyperechoic lines representing the pleural and peritoneal layers. The distance between these two hyperechoic lines (excluding the thickness of the lines themselves) was measured as the diaphragm thickness.
Time frame: mechanically ventilated children on day 0,day 3, day 7,day 10
The thickness and cross-sectional area (CSA) of the rectus femoris muscle were assessed using a linear array transducer. The child was placed in the supine position with the knee extended. A generous amount of coupling gel was applied to minimize compression of the muscle by the transducer. The probe was positioned perpendicular to the long axis of the limb at the midpoint between the superior border of the patella and the anterior superior iliac spine. The rectus femoris muscle was identified, with its hyperechoic fascial layers serving as anatomical boundaries. Muscle thickness was defined as the distance between the superficial and deep fascial layers. The cross-sectional area was measured by tracing the circumference of the rectus femoris muscle along its fascial border.
Time frame: when patient weaning from mechanical ventilation
duration of mechanical ventilation in days
Time frame: when patients leave from ICU and discharge hospital
length of stay in the ICU and in hospital
Time frame: mechanically ventilated children on day 0,day 3, day 7,day 10, leave ICU
hand-grip strength scoring at ICU
Children's Hospital of Fudan University
Other
Development of an Early Warning Model for Intensive Care Unit-Acquired Weakness in Mechanically Ventilated Children: A Disease-Specific Cohort and Database Study
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