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"Latronico, Nicola"
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Critical illness polyneuropathy and myopathy: a major cause of muscle weakness and paralysis
2011
Critical illness polyneuropathy (CIP) and myopathy (CIM) are complications of critical illness that present with muscle weakness and failure to wean from the ventilator. In addition to prolonging mechanical ventilation and hospitalisation, CIP and CIM increase hospital mortality in patients who are critically ill and cause chronic disability in survivors of critical illness. Structural changes associated with CIP and CIM include axonal nerve degeneration, muscle myosin loss, and muscle necrosis. Functional changes can cause electrical inexcitability of nerves and muscles with reversible muscle weakness. Microvascular changes and cytopathic hypoxia might disrupt energy supply and use. An acquired sodium channelopathy causing reduced muscle membrane and nerve excitability is a possible unifying mechanism underlying CIP and CIM. The diagnosis of CIP, CIM, or combined CIP and CIM relies on clinical, electrophysiological, and muscle biopsy investigations. Control of hyperglycaemia might reduce the severity of these complications of critical illness, and early rehabilitation in the intensive care unit might improve the functional recovery and independence of patients.
Journal Article
Intensive care unit-acquired weakness: unanswered questions and targets for future research version 1; peer review: 3 approved
2019
Intensive care unit-acquired weakness (ICU-AW) is the most common neuromuscular impairment in critically ill patients. We discuss critical aspects of ICU-AW that have not been completely defined or that are still under discussion. Critical illness polyneuropathy, myopathy, and muscle atrophy contribute in various proportions to ICU-AW. Diagnosis of ICU-AW is clinical and is based on Medical Research Council sum score and handgrip dynamometry for limb weakness and recognition of a patient's ventilator dependency or difficult weaning from artificial ventilation for diaphragmatic weakness (DW). ICU-AW can be caused by a critical illness polyneuropathy, a critical illness myopathy, or muscle disuse atrophy, alone or in combination. Its diagnosis requires both clinical assessment of muscle strength and complete electrophysiological evaluation of peripheral nerves and muscles. The peroneal nerve test (PENT) is a quick simplified electrophysiological test with high sensitivity and good specificity that can be used instead of complete electrophysiological evaluation as a screening test in non-cooperative patients. DW, assessed by bilateral phrenic nerve magnetic stimulation or diaphragm ultrasound, can be an isolated event without concurrent limb muscle involvement. Therefore, it remains uncertain whether DW and limb weakness are different manifestations of the same syndrome or are two distinct entities. Delirium is often associated with ICU-AW but a clear correlation between these two entities requires further studies. Artificial nutrition may have an impact on ICU-AW, but no study has assessed the impact of nutrition on ICU-AW as the primary outcome. Early mobilization improves activity limitation at hospital discharge if it is started early in the ICU, but beneficial long-term effects are not established. Determinants of ICU-AW can be many and can interact with each other. Therefore, future studies assessing early mobilization should consider a holistic patient approach with consideration of all components that may lead to muscle weakness.
Journal Article
ICU-acquired weakness
2020
Critically ill patients often acquire neuropathy and/or myopathy labeled ICU-acquired weakness. The current insights into incidence, pathophysiology, diagnostic tools, risk factors, short- and long-term consequences and management of ICU-acquired weakness are narratively reviewed. PubMed was searched for combinations of “neuropathy”, “myopathy”, “neuromyopathy”, or “weakness” with “critical illness”, “critically ill”, “ICU”, “PICU”, “sepsis” or “burn”. ICU-acquired weakness affects limb and respiratory muscles with a widely varying prevalence depending on the study population. Pathophysiology remains incompletely understood but comprises complex structural/functional alterations within myofibers and neurons. Clinical and electrophysiological tools are used for diagnosis, each with advantages and limitations. Risk factors include age, weight, comorbidities, illness severity, organ failure, exposure to drugs negatively affecting myofibers and neurons, immobility and other intensive care-related factors. ICU-acquired weakness increases risk of in-ICU, in-hospital and long-term mortality, duration of mechanical ventilation and of hospitalization and augments healthcare-related costs, increases likelihood of prolonged care in rehabilitation centers and reduces physical function and quality of life in the long term. RCTs have shown preventive impact of avoiding hyperglycemia, of omitting early parenteral nutrition use and of minimizing sedation. Results of studies investigating the impact of early mobilization, neuromuscular electrical stimulation and of pharmacological interventions were inconsistent, with recent systematic reviews/meta-analyses revealing no or only low-quality evidence for benefit. ICU-acquired weakness predisposes to adverse short- and long-term outcomes. Only a few preventive, but no therapeutic, strategies exist. Further mechanistic research is needed to identify new targets for interventions to be tested in adequately powered RCTs.
Journal Article
The Role of 18FFDG PET Imaging for the Assessment of Vegetative State or Unresponsive Wakefulness Syndrome: A Systematic Review
by
Latronico, Nicola
,
Bertagna, Francesco
,
Bellini, Pietro
in
18F-fluorodeoxyglucose
,
Brain research
,
Coma
2025
Background: Different evidence on the ability of [18F] fluorodeoxyglucose ([18F]FDG) positron emission tomography (PET) imaging to assess patients in the vegetative state (VS) or unresponsive wakefulness syndrome (UWS) has been reported. Therefore, this systematic review aimed to synthesize the existing literature on this topic. Methods: A wide literature search of the PubMed/MEDLINE, Scopus, and Embase databases was conducted to find relevant published articles investigating the role of [18F]FDG PET imaging in the assessment of VS/UWS. Results: Thirty-seven studies were included in the review, and the main fields of application of this imaging modality in these patients were the evaluation of hypometabolic patterns, differentiation of disorders of consciousness (DOC), prognostic value, and ability to assess the response to particular stimuli. Conclusions: The possible role of [18F]FDG PET imaging in the assessment of VS/UWS has emerged, in particular in the differential diagnosis of other DOC or prognosis. Some insights into its value in stimulation response and therapy evaluation have also been proposed. Standardization of protocols and larger prospective studies are needed to strengthen these clinical recommendations.
Journal Article
Early, goal-directed mobilisation in the surgical intensive care unit: a randomised controlled trial
2016
Immobilisation predicts adverse outcomes in patients in the surgical intensive care unit (SICU). Attempts to mobilise critically ill patients early after surgery are frequently restricted, but we tested whether early mobilisation leads to improved mobility, decreased SICU length of stay, and increased functional independence of patients at hospital discharge.
We did a multicentre, international, parallel-group, assessor-blinded, randomised controlled trial in SICUs of five university hospitals in Austria (n=1), Germany (n=1), and the USA (n=3). Eligible patients (aged 18 years or older, who had been mechanically ventilated for <48 h, and were expected to require mechanical ventilation for ≥24 h) were randomly assigned (1:1) by use of a stratified block randomisation via restricted web platform to standard of care (control) or early, goal-directed mobilisation using an inter-professional approach of closed-loop communication and the SICU optimal mobilisation score (SOMS) algorithm (intervention), which describes patients’ mobilisation capacity on a numerical rating scale ranging from 0 (no mobilisation) to 4 (ambulation). We had three main outcomes hierarchically tested in a prespecified order: the mean SOMS level patients achieved during their SICU stay (primary outcome), and patient's length of stay on SICU and the mini-modified functional independence measure score (mmFIM) at hospital discharge (both secondary outcomes). This trial is registered with ClinicalTrials.gov (NCT01363102).
Between July 1, 2011, and Nov 4, 2015, we randomly assigned 200 patients to receive standard treatment (control; n=96) or intervention (n=104). Intention-to-treat analysis showed that the intervention improved the mobilisation level (mean achieved SOMS 2·2 [SD 1·0] in intervention group vs 1·5 [0·8] in control group, p<0·0001), decreased SICU length of stay (mean 7 days [SD 5–12] in intervention group vs 10 days [6–15] in control group, p=0·0054), and improved functional mobility at hospital discharge (mmFIM score 8 [4–8] in intervention group vs 5 [2–8] in control group, p=0·0002). More adverse events were reported in the intervention group (25 cases [2·8%]) than in the control group (ten cases [0·8%]); no serious adverse events were observed. Before hospital discharge 25 patients died (17 [16%] in the intervention group, eight [8%] in the control group). 3 months after hospital discharge 36 patients died (21 [22%] in the intervention group, 15 [17%] in the control group).
Early, goal-directed mobilisation improved patient mobilisation throughout SICU admission, shortened patient length of stay in the SICU, and improved patients’ functional mobility at hospital discharge.
Jeffrey and Judy Buzen.
Journal Article
Physical, cognitive and mental health outcomes in 1-year survivors of COVID-19-associated ARDS
by
Latronico, Nicola
,
Novelli, Maria Paola
,
Cella, Andrea
in
Activities of Daily Living
,
ARDS
,
Body mass index
2022
We report on the outcome of 114 COVID-19-associated acute respiratory distress syndrome (ARDS) survivors evaluated at 3, 6 and 12 months after intensive care unit discharge with assessment of physical, mental and cognitive impairments. Critical illness polyneuromyopathy was diagnosed in 23 patients (39%). Handgrip dynamometry was 70% predicted at 3 months and significantly improved over time, whereas the 6 min walk test (80% predicted) and severe fatigue (27% of patients) did not. Independence in activities of daily living (ADL) was achieved by 98% at 3 months. Cognitive impairment (28% at 3 months) improved over time, whereas depression, anxiety and post-traumatic stress disorder symptoms, present in 9%, 10% and 4% at 3 months, did not. Normalised health-related quality of life was good. COVID-19-associated ARDS leads to persisting impairment in performance-based measures of physical function, while ADL, cognitive and mental health status, and health-related quality of life may be less impaired. Trial registration number NCT04608994.
Journal Article
Change in eating habits after 2 years of pandemic restrictions among adolescents living in a city in northern Italy: results of the COALESCENT Observational Study (Change amOng ItAlian adoLESCENTs)
by
Latronico, Nicola
,
Marullo, Monica
,
Gelatti, Umberto
in
Addictive behaviors
,
Child & adolescent mental health
,
COVID-19
2024
BackgroundLockdown measures during the recent pandemic, due to the novel COVID-19, affected several other aspects of lifestyle, but little is known about their long-term impact, especially among adolescents. Our study aimed to assess the long-term consequences of changes in diet, exercise and screen activity levels, sleep quality, smoke, smartphone addiction and emotional distress among a sample of Italian adolescents, 2 years after the beginning of the pandemic.MethodsWe submitted an online survey to high-school students in the province of Brescia, a city in Northern Italy, investigating changes in food consumption and in physical and screen activities, cooking skills, sleep duration and quality, emotional distress, smartphone addiction and nutrition knowledge. We assigned an Eating Habit Index (EHI) score from 0 to 54, reflecting a current worsening (lower score) or improvement (higher score) in overall diet quality, compared with the pre-pandemic period. The χ2 test or Fisher’s exact probability test and Mann-Whitney test were used as appropriate; a binary logistic regression model was carried out, with EHI score≥33 as the dependent variable.ResultsWe collected 1686 questionnaires. Consumption of healthy foods increased, as it was for ultraprocessed foods (UPFs). EHI score>33 (75° percentile value) was associated with female gender (OR 1.81, p<0.0001), better nutrition knowledge (OR 1.54, p=0.001), better cooking skills (OR 1.43, p=0.01), lower consumption of UPFs before the pandemic (OR 2.19, p<0.0001), self-perception of healthier diet quality (OR: 4.05, p<0.0001) and no smartphone addiction (OR: 1.35, p=0.02).ConclusionsConsidering the profound impact of lifestyle on both physical and mental health, our results could be relevant to understand how to promote healthy eating practices among young people.
Journal Article
Long-term outcomes after critical illness: recent insights
by
Creteur, Jacques
,
Latronico, Nicola
,
Brett, Stephen J.
in
Anesthesia
,
Anesthesia & intensive care
,
Anesthésie & soins intensifs
2021
Intensive care survivors often experience post-intensive care sequelae, which are frequently gathered together under the term “post-intensive care syndrome” (PICS). The consequences of PICS on quality of life, health-related costs and hospital readmissions are real public health problems. In the present Viewpoint, we summarize current knowledge and gaps in our understanding of PICS and approaches to management.
Journal Article
Electrophysiological investigations of peripheral nerves and muscles: a method for looking at cell dysfunction in the critically ill patients
by
Latronico, Nicola
,
Friedrich, Oliver
in
Cell Death - physiology
,
Critical Care Medicine
,
Critical Illness - classification
2019
Keywords: Muscle weakness, Polyneuropathy, Myopathy, Organ dysfunction, Mitochondrial dysfunction, Energy metabolism
Journal Article