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1.
Diagnostics (Basel) ; 13(12)2023 Jun 07.
Article in English | MEDLINE | ID: mdl-37370884

ABSTRACT

Long COVID syndrome has emerged as a long-lasting consequence of acute SARS-CoV-2 infection in adults. In addition, children may be affected by Long COVID, with potential clinical issues in different fields, including problems in school performance and daily activities. Yet, the pathophysiologic bases of Long COVID in children are largely unknown, and it is difficult to predict who will develop the syndrome. In this multidisciplinary clinical review, we summarise the latest scientific data regarding Long COVID and its impact on children. Special attention is given to diagnostic tests, in order to help the physicians to find potential disease markers and quantify impairment. Specifically, we assess the respiratory, upper airways, cardiac, neurologic and motor and psychological aspects. Finally, we also propose a multidisciplinary clinical approach.

2.
J Appl Physiol (1985) ; 132(5): 1137-1144, 2022 05 01.
Article in English | MEDLINE | ID: mdl-35358399

ABSTRACT

Inhaling carbon dioxide (CO2) in humans is known to cause inconsistent effects on airway function. These could be due to direct effects of CO2 on airway smooth muscle or to changes in minute ventilation (V̇e). To address this issue, we examined the responses of the respiratory system to inhaled methacholine in healthy subjects and subjects with mild asthma while breathing air or gas mixtures containing 2% or 4% CO2. Respiratory mechanics were measured by a forced oscillation technique at 5 Hz during tidal breathing. At baseline, respiratory resistance (R5) was significantly higher in subjects with asthma (2.53 ± 0.38 cmH2O·L-1·s) than healthy subjects (2.11 ± 0.42 cmH2O·L-1·s) (P = 0.008) with room air. Similar values were observed with CO2 2% or 4% in the two groups. V̇e, tidal volume (VT), and breathing frequency (BF) significantly increased with CO2-containing mixtures (P < 0.001) with insignificant differences between groups. After methacholine, the increase in R5 and the decrease in respiratory reactance (X5) were significantly attenuated up to about 50% with CO2-containing mixtures instead of room air in both asthmatic (P < 0.001) and controls (P < 0.001). Mediation analysis showed that the attenuation of methacholine-induced changes in respiratory mechanics by CO2 was due to the increase in V̇e (P = 0.006 for R5 and P = 0.014 for X5) independently of the increase in VT or BF, rather than a direct effect of CO2. These findings suggest that the increased stretching of airway smooth muscle by the CO2-induced increase in V̇e is a mechanism through which hypercapnia can attenuate bronchoconstrictor responses in healthy subjects and subjects with mild asthma.NEW & NOTEWORTHY The main results of the present study are as follows: 1) breathing gas mixtures containing 2% or 4% CO2 significantly attenuated bronchoconstrictor responses to methacholine, not differently in healthy subjects and subjects with mild asthma, and 2) the causal inhibitory effect of CO2 was significantly mediated via an indirect effect of the increment of V̇e in response to intrapulmonary hypercapnia.


Subject(s)
Asthma , Bronchoconstriction , Airway Resistance/physiology , Bronchoconstrictor Agents/pharmacology , Carbon Dioxide/pharmacology , Humans , Hypercapnia , Hyperventilation , Methacholine Chloride/pharmacology
3.
Arch Phys Med Rehabil ; 102(8): 1562-1567, 2021 08.
Article in English | MEDLINE | ID: mdl-33711277

ABSTRACT

OBJECTIVE: To investigate whether the decrease in dyspnea in neuromuscular diseases after air stacking (AS) occurs mostly in patients with decreased inspiratory muscle force and ensuing chest wall restriction or heterogeneous ventilation across the lungs. DESIGN: Interventional, before-after study. SETTING: A neurorehabilitation inpatient and outpatient center. PARTICIPANTS: Fifteen consecutive adult patients affected by neuromuscular diseases (N=15). INTERVENTIONS: AS treatment. MAIN OUTCOME MEASURES: Patients had vital capacity (VC) and sniff nasal inspiratory pressure (SNIP) measured. We measured Borg score, oxygen saturation, and ventilation heterogeneity across the lung as estimated from the difference between respiratory resistance at 5 and 19 Hz (R5-19) with the forced oscillation technique before and 5, 30, 60, and 120 minutes after applying AS. RESULTS: Before AS, Borg score was significantly related to R5-19 (r2 0.46, P<.05) but not to VC % predicted, SNIP % predicted, and time since symptom onset. After AS, average Borg score gradually decreased (P=.005), whereas inspiratory flow resistance at 5 Hz, R5-19, and inspiratory reactance at 5 Hz tended to improve, despite not reaching statistical significance. The decrease in dyspnea at 60 and 120 minutes after AS significantly correlated with baseline R5-19 (r2 0.49, P<.01 and r2 0.29, P<.05, respectively), but not with VC % predicted, SNIP % predicted, time since symptom onset, and clinical severity score for patients affected by amyotrophic lateral sclerosis. CONCLUSIONS: These findings suggest that dyspnea in neuromuscular diseases is related to heterogeneous ventilation rather than inspiratory muscle force and/or lung volumes decrease. Restoring ventilation distribution across the lungs with AS appears to improve dyspnea.


Subject(s)
Dyspnea/physiopathology , Dyspnea/rehabilitation , Neuromuscular Diseases/physiopathology , Neuromuscular Diseases/rehabilitation , Respiratory Muscles/physiopathology , Respiratory Therapy/methods , Aged , Female , Humans , Male , Middle Aged , Respiratory Function Tests , Spirometry
4.
Respir Med ; 176: 106277, 2021 01.
Article in English | MEDLINE | ID: mdl-33310203

ABSTRACT

BACKGROUND: Deterioration of vital capacity (VC) in amyotrophic lateral sclerosis (ALS) signifies disease progression and indicates need for non-invasive ventilation. Weak facial muscles consequent to ALS, with resulting poor mouth seal, may interfere with the accuracy of VC measurements. OBJECTIVES: To determine whether different interfaces affect VC measurements in ALS patients and whether the interface yielding the largest VC produces an even higher VC when re-measured after one week (learning effect). To explore the relationship between optimal interface VC and sniff nasal pressure (SNIP), a measurement of global inspiratory muscle strength. METHODS: Thirty-five patients (17 bulbar and 18 spinal ALS) were studied. Three interfaces (rigid-cylindrical, flanged, oronasal mask) were tested. One week after the first visit, VC was recorded using the optimal interface. SNIP recordings were also obtained. RESULTS: In the bulbar ALS group, median (interquartile range) VC with the flanged mouthpiece was 8.4% (3.9-15.5) larger than with the cylindrical mouthpiece (p < 0.001). VC values with oronasal mask were intermediate to VC with the other two interfaces. In spinal ALS, flanged mouthpiece VC was 4.6% (2.3-7.5) larger than with oronasal mask (p < 0.0006). The latter was 4.5% (0.6-5.2) smaller than with the cylindrical mouthpiece (p = 0.002). In both groups, VC during the second visit was greater than during the first visit (p < 0.025). SNIPs were logarithmically related to VC values recorded with the flanged mouthpiece. CONCLUSION: A flanged mouthpiece yields the largest values of VC in patients with bulbar and spinal ALS.


Subject(s)
Amyotrophic Lateral Sclerosis/physiopathology , Respiratory Function Tests/methods , Vital Capacity , Aged , Female , Humans , Male , Middle Aged , Muscle Strength , Nasal Cavity/physiopathology , Pressure , Reproducibility of Results , Respiratory Muscles/physiopathology , Sensitivity and Specificity
5.
Respiration ; 99(8): 667-677, 2020.
Article in English | MEDLINE | ID: mdl-32756065

ABSTRACT

BACKGROUND: Coronavirus disease 2019 (COVID-19) is a potentially fatal disease that is of great global public health concern. OBJECTIVE: We explored the clinical management of inpatients with COVID-19 in Italy. METHODS: A self-administered survey was sent by email to Italian physicians caring for adult patients with COVID-19. A panel of experts was selected according to their clinical curricula and their responses were analyzed. RESULTS: A total of 1,215 physicians completed the survey questionnaire (17.4% response rate). Of these, 188 (15.5%) were COVID-19 experts. Chest computed tomography was the most used method to detect and monitor COVID-19 pneumonia. Most of the experts managed acute respiratory failure with CPAP (56.4%), high flow nasal cannula (18.6%), and non-invasive mechanical ventilation (8%), while an intensivist referral for early intubation was requested in 17% of the cases. Hydroxychloroquine was prescribed as an antiviral in 90% of cases, both as monotherapy (11.7%), and combined with protease inhibitors (43.6%) or azithromycin (36.2%). The experts unanimously prescribed low-molecular-weight heparin to patients with severe COVID-19 pneumonia, and half of them (51.6%) used a dose higher than standard. The respiratory burden in patients who survived the acute phase was estimated as relevant in 28.2% of the cases, modest in 39.4%, and negligible in 9%. CONCLUSIONS: In our survey some major topics, such as the role of non-invasive respiratory support and drug treatments, show disagreement between experts, likely reflecting the absence of high-quality evidence studies. Considering the significant respiratory sequelae reported following COVID-19, proper respiratory and physical therapy programs should be promptly made available.


Subject(s)
Anti-Bacterial Agents/therapeutic use , Antiviral Agents/therapeutic use , Coronavirus Infections/therapy , Hospitalization , Pneumonia, Viral/therapy , Practice Patterns, Physicians' , Protease Inhibitors/therapeutic use , Respiration, Artificial/methods , Respiratory Insufficiency/therapy , Adult , Aged , Anticoagulants/therapeutic use , Azithromycin/therapeutic use , Betacoronavirus , COVID-19 , Cannula , Cardiology , Continuous Positive Airway Pressure/methods , Coronavirus Infections/complications , Coronavirus Infections/diagnosis , Coronavirus Infections/drug therapy , Critical Care , Heparin, Low-Molecular-Weight/therapeutic use , Humans , Hydroxychloroquine/therapeutic use , Intensive Care Units , Internal Medicine , Italy , Lung/diagnostic imaging , Middle Aged , Noninvasive Ventilation/methods , Pandemics , Physicians , Pneumonia, Viral/complications , Pneumonia, Viral/diagnosis , Pulmonary Medicine , Referral and Consultation , Respiratory Insufficiency/etiology , SARS-CoV-2 , Surveys and Questionnaires , Tomography, X-Ray Computed , COVID-19 Drug Treatment
6.
Respiration ; 99(2): 171-176, 2020.
Article in English | MEDLINE | ID: mdl-31927551

ABSTRACT

INTRODUCTION: Thoracic ultrasound is accurate in the diagnosis of a wide range of respiratory diseases. Yet the extent of its use is unknown. Through a national survey, we aimed to explore the clinical use of thoracic ultrasound and the barriers to the diffusion of the technique in Italy. METHODS: Accademia di Ecografia Toracica (AdET) developed a self-administered survey which was sent by email to Italian pulmonologists via national scientific societies and networks. RESULTS: Of the 2010 physicians invited, 514 completed the survey (26% response rate). According to 99% of responders, thoracic ultrasound had a relevant clinical role. Seventy-nine percent of the responders used thoracic ultrasound at least once a month. The main settings were: 53% pulmonology ward, 15% outpatient clinic, 15% interventional pulmonology room, 10% internal medicine ward, 4% respiratory intensive care units, and 9% other. Thoracic ultrasound was primarily used: (1) with both diagnostic and interventional aims (72%), (2) as diagnostic imaging (17%), and (3) as guidance for interventional procedures (11%). The main clinical applications were: (1) diagnosis and management of pleural effusion, (2) pneumothorax, (3) pneumonia, (4) cardiac failure, and (5) acute dyspnea. Twenty-one percent of the responders do not use thoracic ultrasound. The main reported bar-riers were: (1) availability of an ultrasound system (52%), (2) lack of protected time and training (22%), and (3) use of the technique by other specialists (15%). CONCLUSION: Thoracic ultrasound is widely used by Italian pulmonologists and considered a clinically relevant tool. The availability of dedicated ultrasound systems seems to be a major limit of the use of the technique.


Subject(s)
Pleural Effusion/diagnostic imaging , Pneumonia/diagnostic imaging , Pneumothorax/diagnostic imaging , Practice Patterns, Physicians' , Pulmonologists , Ultrasonography/methods , Adult , Ambulatory Care , Chest Pain/diagnostic imaging , Diaphragm/diagnostic imaging , Diffusion of Innovation , Dyspnea/diagnostic imaging , Female , Heart Failure/diagnostic imaging , Hospitalization , Humans , Italy , Lung/diagnostic imaging , Male , Middle Aged , Pleura/diagnostic imaging , Pleural Effusion/therapy , Pulmonary Embolism/diagnostic imaging , Surveys and Questionnaires , Thoracic Wall/diagnostic imaging , Time Factors , Ultrasonography/instrumentation
8.
J Ultrasound Med ; 36(8): 1687-1692, 2017 Aug.
Article in English | MEDLINE | ID: mdl-28417478

ABSTRACT

OBJECTIVES: Point-of-care lung sonography has theoretical usefulness in numerous diseases; however clinical indications and the impact of this technique have not been fully investigated. We aimed to describe the current use of point-of-care lung sonography. METHODS: A 2-year prospective observational study was performed by pulmonologists in an Italian university hospital. Techniques, indications, consequences of lung sonography, and barriers to the examination were analyzed. RESULTS: A total of 1150 lung sonographic examinations were performed on 951 patients. The most common indications were diagnosis and follow-up of pleural effusion in 361 cases (31%), evaluation of lung consolidation (322 [28%]), acute heart failure (195 [17%]), guide to pleural procedures (117 [10%]), pneumothorax (54 [5%]) and acute exacerbations of chronic obstructive pulmonary disease (30 [3%]). The mean duration of the examination ± SD was 6 ± 4 minutes. The transducers most frequently used were convex (746 [65%]) and linear (161 [14%]), whereas in 205 examinations (18%), both transducers were used. According to the judgment of the caring clinician, 51% of the examinations were clinically relevant. CONCLUSIONS: Point-of-care lung sonography performed by pulmonologists is quick and feasible and could be widely used for different clinical indications with a potentially high clinical impact. The widespread use of this technique may have a relevant clinical impact in several indications.


Subject(s)
Lung Diseases/diagnostic imaging , Point-of-Care Systems , Ultrasonography/methods , Female , Humans , Italy , Lung/diagnostic imaging , Male , Middle Aged , Prospective Studies , Reproducibility of Results , Ultrasonography/instrumentation
11.
Respiration ; 91(5): 403-11, 2016.
Article in English | MEDLINE | ID: mdl-27216909

ABSTRACT

Ultrasonography is the only non-invasive, non-ionizing imaging technique widely available to directly assess diaphragmatic function. Two different sonographic approaches permit the assessment of muscle thickening in the zone of apposition and excursion of the dome of the diaphragm. Thanks to the new hand-held ultrasound instruments, the morphology and function of the diaphragm can be assessed in different settings, such as outpatient clinic, pulmonary function test laboratory, hospital department and intensive care unit, and under different conditions. Despite the existence of different acoustic views and several codified approaches, a comprehensive sonographic examination has never been standardized for clinical use. In this review, we summarize the clinical indications, methods and perspectives of the technique in adults.


Subject(s)
Diaphragm/diagnostic imaging , Ultrasonography/methods , Diaphragm/physiology , Diaphragm/physiopathology , Dyspnea/diagnostic imaging , Electromyography , Humans , Neuromuscular Diseases/diagnostic imaging , Pulmonary Disease, Chronic Obstructive/diagnostic imaging , Respiratory Paralysis/diagnostic imaging , Stroke/diagnostic imaging
13.
Respirology ; 19(7): 960-9, 2014 Oct.
Article in English | MEDLINE | ID: mdl-25060051

ABSTRACT

Bronchial asthma is a chronic disease characterized by airway hyperresponsiveness, airway inflammation and remodelling. The hypothesis that the illness is inflammatory in nature has recently been challenged by studies showing that airway smooth muscle (ASM) plays a more important role than previously thought. For example, it is now known that in asthma patients, ASM proliferates more and faster than in healthy subjects, carries intrinsic defects and exhibits impaired relaxation, increased velocity of shortening, plastic adaptation to short length and perturbed equilibrium of actin-to-myosin during cycling. Similar conclusions can be drawn from studies on airway mechanics. For instance, in asthma, abnormal ASM contributes to limiting the response to deep lung stretching and accelerates the return of bronchial tone to baseline conditions, and contributes to increased airway stiffness. Upon stimulation, ASM causes airway narrowing that is heterogeneous across the lung and variable over time. This heterogeneity leads to patchy ventilation. Experimental studies have shown that patchy ventilation may precipitate an asthma attack, and inability to maintain bronchial tone control over time can predict the occurrence of bronchospastic attacks over a matter of a few days. To improve our knowledge on the pathogenesis of asthma, we believe that it is necessary to explore the disease within the framework of the topographical, volume and time domains of the lung that play an important role in setting the severity and progression of the disease. Application of the forced oscillation technique and multiple breath nitrogen washout may, alone or in combination, help address questions unsolvable until now.


Subject(s)
Asthma/pathology , Asthma/physiopathology , Bronchial Hyperreactivity/physiopathology , Airway Remodeling/physiology , Airway Resistance/physiology , Asthma/complications , Bronchial Hyperreactivity/etiology , Bronchial Hyperreactivity/pathology , Humans , Lung Volume Measurements , Muscle, Smooth/physiopathology
14.
J Appl Physiol (1985) ; 116(9): 1175-81, 2014 May 01.
Article in English | MEDLINE | ID: mdl-24651986

ABSTRACT

Obesity is associated with important decrements in lung volumes. Despite this, ventilation remains normally or near normally distributed at least for moderate decrements in functional residual capacity (FRC). We tested the hypothesis that this is because maximum flow increases presumably as a result of an increased lung elastic recoil. Forced expiratory flows corrected for thoracic gas compression volume, lung volumes, and forced oscillation technique at 5-11-19 Hz were measured in 133 healthy subjects with a body mass index (BMI) ranging from 18 to 50 kg/m(2). Short-term temporal variability of ventilation heterogeneity was estimated from the interquartile range of the frequency distribution of the difference in inspiratory resistance between 5 and 19 Hz (R5-19_IQR). FRC % predicted negatively correlated with BMI (r = -0.72, P < 0.001) and with an increase in slope of either maximal (r = -0.34, P < 0.01) or partial flow-volume curves (r = -0.30, P < 0.01). Together with a slight decrease in residual volume, this suggests an increased lung elastic recoil. Regression analysis of R5-19_IQR against FRC % predicted and expiratory reserve volume (ERV) yielded significantly higher correlation coefficients by nonlinear than linear fitting models (r(2) = 0.40 vs. 0.30 for FRC % predicted and r(2) = 0.28 vs. 0.19 for ERV). In conclusion, temporal variability of ventilation heterogeneities increases in obesity only when FRC falls approximately below 65% of predicted or ERV below 0.6 liters. Above these thresholds distribution is quite well preserved presumably as a result of an increase in lung recoil.


Subject(s)
Body Mass Index , Lung/physiology , Obesity/physiopathology , Respiratory Mechanics/physiology , Adult , Female , Humans , Lung/pathology , Lung Volume Measurements/methods , Male , Middle Aged , Obesity/diagnosis
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