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Enrolling by Invitation

NCT Number: NCT06841341

Electrophysiology and Ultrasound of Respiratory Muscles and Respective Nerves to Predict Respiratory Insufficiency in ALS

Respiratory insufficiency is a common complication in amyotrophic lateral sclerosis (ALS). Survival can be prolonged with noninvasive ventilation (NIV). The goal of this study is to assess the value of electromyography of respiratory muscles as well as the ultrasound of the diaphragm and nerves involved in respiration in predicting the onset of respiratory insufficiency, which may improve the timing of NIV start. The study will recruit 80 patients with definite or probable ALS. Investigations include electromyography of bilateral sternocleidomastoideus and rectus abdominis with assessment of presence of acute and chronic denervation. Ultrasonographic measurements include crosssectional area and diameter of bilateral phrenicus, vagus and accesory nerves as well as diameter of diaphragm. Respiratory insufficiency is asessed with slow vital capacity and partial pressure of arterial oxygen and arterial carbon dioxide. Forthermore, ALS severity is assessed with revised ALS Functional Rating Scale and the symptoms which may reflect respiratory insufficiency even in the absence of dyspnea such as sleepiness, fatigue and depression are assessed with Fatigue Severity Scale, Epworth Sleepiness Scale and Hamilton Depression Rating Scale respectively. SVC and blood gases will be compared between group with and without denervation in investigated muscles. SVC and blood gases will be correlated with corssectional areas and diameters of investigated nerves and diaphragm as well as with the scores obtained in used scales and questionnaires.

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Key information

Age range

18 year–80 year

Sex eligibility

All sexes

Study type

Observational

Primary location

Jagiellonian University Medical College, Department of Neurology

Krakow, Lesser Poland Voivodeship, 31503, Poland

About this study

Amyotrophic lateral sclerosis (ALS) is a rare condition with progressing degeneration of upper and lower motor neurons. Main symptoms include muscle weakness, spasticity, atrophy and fasciculations, which lead to gait impairment, dysphagia, dysarthria and loss of hand dexterity. Currently no disease modifying treatment is available and the condition leads to death, usually within three to five years. Respiratory insufficiency is a common complication, especially in later stages of the disease. It results from weakness of respiratory muscles and in some cases also from chronic aspiration pneumonia. It decreases significantly quality of life and may shorten the survival. Not infrequently it is not accompanied by feeling of dyspnea but may be associated with other symptoms like tiredness, sleepiness, and depression. Survival and the quality of life can be improved with noninvasive ventilation (NIV), but the timing of detection of respiratory insufficiency and starting the therapy is crucial to achieve the best possible efficacy. The goal of this study is to assess the value of electromyography of respiratory muscles as well as the ultrasound of the diaphragm and nerves involved in respiration in predicting the onset of respiratory insufficiency. Electromyography is a method commonly used to confirm the diagnosis and neuromuscular ultrasound it is increasingly used along with electromyography to exclude mimics, especially in atypical cases. Investigators hypothesize, including nerves and muscles involved in respiration into electrophysiological and ultrasonographic testing may yield additional benefit of detecting actual or antecedent respiratory failure. The study will recruit 80 patients with definite or probable ALS. Investigations include electromyography of bilateral sternocleidomastoideus and rectus abdominis with assessment of presence of acute and chronic denervation. Ultrasonographic measurements include cross-sectional area and diameter of bilateral phrenicus, vagus and accessory nerves as well as diameter of diaphragm. Respiratory insufficiency is assessed with slow vital capacity and partial pressure of arterial oxygen and arterial carbon dioxide. Furthermore, ALS severity is assessed with revised ALS Functional Rating Scale and the symptoms which may reflect respiratory insufficiency even in the absence of dyspnea such as sleepiness, fatigue and depression are assessed with Fatigue Severity Scale, Epworth Sleepiness Scale and Hamilton Depression Rating Scale respectively. SVC and blood gases will be compared between group with and without denervation in investigated muscles. SVC and blood gases will be correlated with corssectional areas and diameters of investigated nerves and diaphragm as well as with the scores obtained in used scales and questionnaires.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Diagnosis of definite ALS or probable ALS or clinically probable laboratory supported ALS according to revised El Escorial Criteria [Brooks et al. 2000]

Exclusion criteria

  • Diagnosis of fronto-temporal dementia
  • Significant cognitive or behavioral deficits of other origin, which may disturb the participation in the study
  • Medical conditions other than SLA likely to cause respiratory insufficiency, significant changes in the blood gases or SVC
  • INR (internal normalized ratio) more than 3 (in the last test performed) in patients with history of coagulation disturbances or intake of oral anticoagulants

Treatment and study plan

Electromyography

Diagnostic Test

electromyography of a set of muscles usually examined during diagnosis of ALS (typically tongue, bilateral deltoid, first dorsal interosseur, abductor pollicis brevis, paraspinals, vastus lateralis, anterior tibialis and additionally bilateral sternocleidomastoideus and rectus abdominis). In each muscle recording in relaxation and in maximal voluntary effort will be done. The presence of signs of acute (fibrillations, sharp waves) and chronic (fasciculations, reduction of the recording of the effort) denervation as well as presence of activity coupled with the rhythm of respiration will be assessed.

ultrasonography

Diagnostic Test

Ultrasonographic measurements include cross-sectional area (CSA) and diameter of bilateral phrenicus, vagus and accessory nerves as well as diameter of diaphragm. The diameter of diaphragm will be measured during normal, quiet respiration as well as at the peak inspiration and expiration.

Arterial blood gas analysis

Diagnostic Test

Assessment of partial oxygen (PaO2) and partial carbondioxide pressure (PaCO2) in arterial blood.

slow vital capacity

Diagnostic Test

Slow vital capacity (SVC) will be measured as the full exhalation done after inspiration which will follow a period of quiet breathing. The test will be performed thrice and the final value will be the average value.

Primary outcomes

  1. Relation of denervation in respiratory muscles to PaO2

    Time frame: Through study completion, an average of 1 year

    Difference in PaO2 between patients with signs of denervation in at least one of the examined respiratory muscles and without signs of denervation.

  2. Relation of denervation in respiratory muscles to PaCO2

    Time frame: Through study completion, an average of 1 year

    Difference in PaCO2 between patients with signs of denervation in at least one of the examined respiratory muscles and without signs of denervation.

  3. Relation of denervation in respiratory muscles to SVC

    Time frame: Through study completion, an average of 1 year

    Difference in SVC between patients with signs of denervation in at least one of the examined respiratory muscles and without signs of denervation.

  4. Correlation between fatigue and SVC

    Time frame: Through study completion, an average of 1 year

    Correlation between FSS score and SVC.

Secondary outcomes

  1. Correlation of CSA of phrenic nerves with SVC

    Time frame: Through study completion, an average of 1 year

    Correlation of CSA of phrenic nerve (averaged for both sides) with SVC.

  2. Correlation of CSA of accessory nerves with SVC

    Time frame: Through study completion, an average of 1 year

    Correlation of CSA of accessory nerve (averaged for both sides) with SVC.

  3. Correlation of diaphragm diameter with SVC

    Time frame: Through study completion, an average of 1 year

    Correlation of diaphragm diameter (averaged for both sides) with SVC.

  4. Correlation of daytime sleepiness with SVC

    Time frame: Through study completion, an average of 1 year

    Correlation of ESS score with SVC.

  5. Correlation of depression with SVC

    Time frame: Through study completion, an average of 1 year

    Correlation of HDRS score with SVC.

Sponsors and collaborators

Lead sponsor

Jagiellonian University

Other

Registry information

Official study title

EMG and Ultrasound of Respiratory Muscles and Respective Nerves and to Predict Respiratory Insufficiency in ALS

Important dates

Study start
2025
Primary completion
2028
Study completion
2029
First posted
Feb 24, 2025
Registry last updated
Sep 15, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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