The analysis of amplitude parameters of the diaphragm mechanomyographic (MMGdi) signal is a non-invasive technique to assess respiratory muscle effort and to detect and quantify the severity of respiratory muscle weakness. The amplitude of the MMGdi signal is usually evaluated using the average rectified value or the root mean square of the signal. However, these estimations are greatly affected by the presence of cardiac vibration or mechanocardiographic (MCG) noise. In this study, we present a method for improving the estimation of the respiratory muscle effort from MMGdi signals that is robust to the presence of MCG. This method is based on the calculation of the sample entropy using fixed tolerance values (fSampEn), that is, with tolera...
The use of non-invasive methods for the study of respiratory muscle signals can provide clinical inf...
Respiratory muscle dysfunction is a common problem in patients with chronic obstructive pulmonary di...
A recursive least square (RLS) adaptive filtering algorithm for reduction of cardiac interference in...
The analysis of amplitude parameters of the diaphragm mechanomyographic (MMGdi) signal is a non-inva...
The study of the mechanomyographic signal of the diaphragm muscle (MMGdi) is a promising technique i...
Diaphragm electromyography is a valuable technique for the recording of electrical activity of the d...
Fixed sample entropy (fSampEn) has been successfully applied to myographic signals for inspiratory m...
Non-invasive evaluation of respiratory activity is an area of increasing research interest, resultin...
The current gold standard assessment of human inspiratory muscle function involves using invasive me...
Extracting clinical information from one single measurement represents a step forward in the assessm...
The study of the amplitude of respiratory muscle mechanomyographic (MMG) signals could be useful in ...
Fixed sample entropy (fSampEn) is a robust technique that allows the evaluation of inspiratory effor...
Fixed sample entropy (fSampEn) is a robust technique that allows the evaluation of inspiratory effor...
The relationship between surface diaphragm mechanomyography (sMMGdi), as a noninvasive measure of ...
The study of mechanomyographic (MMG) signals of respiratory muscles is a promising noninvasive techn...
The use of non-invasive methods for the study of respiratory muscle signals can provide clinical inf...
Respiratory muscle dysfunction is a common problem in patients with chronic obstructive pulmonary di...
A recursive least square (RLS) adaptive filtering algorithm for reduction of cardiac interference in...
The analysis of amplitude parameters of the diaphragm mechanomyographic (MMGdi) signal is a non-inva...
The study of the mechanomyographic signal of the diaphragm muscle (MMGdi) is a promising technique i...
Diaphragm electromyography is a valuable technique for the recording of electrical activity of the d...
Fixed sample entropy (fSampEn) has been successfully applied to myographic signals for inspiratory m...
Non-invasive evaluation of respiratory activity is an area of increasing research interest, resultin...
The current gold standard assessment of human inspiratory muscle function involves using invasive me...
Extracting clinical information from one single measurement represents a step forward in the assessm...
The study of the amplitude of respiratory muscle mechanomyographic (MMG) signals could be useful in ...
Fixed sample entropy (fSampEn) is a robust technique that allows the evaluation of inspiratory effor...
Fixed sample entropy (fSampEn) is a robust technique that allows the evaluation of inspiratory effor...
The relationship between surface diaphragm mechanomyography (sMMGdi), as a noninvasive measure of ...
The study of mechanomyographic (MMG) signals of respiratory muscles is a promising noninvasive techn...
The use of non-invasive methods for the study of respiratory muscle signals can provide clinical inf...
Respiratory muscle dysfunction is a common problem in patients with chronic obstructive pulmonary di...
A recursive least square (RLS) adaptive filtering algorithm for reduction of cardiac interference in...