Several physiological metrics can be derived from pharyngeal high-resolution impedance manometry (HRPM), but their clinical relevance has not been well established. We investigated the diagnostic performance of these metrics in relation to videofluoroscopic (VFS) assessment of aspiration and residue in patients with oropharyngeal dysphagia. We analyzed 263 swallows from 72 adult patients (22-91 years) with diverse medical conditions. Metrics of contractility, upper esophageal sphincter (UES) opening and relaxation, flow timing, intrabolus distension pressure, and a global Swallow Risk Index (SRI) were derived from pressure-impedance recordings using pressure-flow analysis. VFS data were independently scored for airway invasion and pharyngea...
Background: Pharyngeal automated impedance manometry (AIM) analysis is a novel non-radiological meth...
Objectives: Pharyngeal high-resolution impedance manometry (HRIM) studies can be analysed by automat...
BACKGROUND: Oro-pharyngeal swallowing involves complex neuromodulation to accommodate changing bolus...
Background & Aims: Automated impedance manometry analysis (AIM) measures swallow function variables ...
Background & aimsPharyngeal manometry and impedance provide information on swallow function. We deve...
Objectives. Preswallow pharyngeal bolus presence is evident in patients with oropharyngeal dysphagia...
Objectives. Preswallow pharyngeal bolus presence is evident in patients with oropharyngeal dysphagia...
Automated impedance manometry (AIM) analysis measures swallow variables defining bolus timing, press...
AIM: To apply a new method, pharyngeal automated impedance manometry (AIM), as an objective assessme...
Impedance analysis using high-resolution impedance manometry (HRIM) enables the recognition of phary...
OBJECTIVES: This validation study evaluates a new manometry impedance-based approach for the objecti...
OBJECTIVES: The purpose of the present study was to apply a new method, pharyngeal automated impedan...
The pharyngeal phase of swallowing is a complex event consisted with subsequent muscular contraction...
© 2018, Springer International Publishing AG. This chapter describes the use of high-resolution mano...
Objectives: Preswallow pharyngeal bolus presence is evident in patients with oropharyngeal dysphagia...
Background: Pharyngeal automated impedance manometry (AIM) analysis is a novel non-radiological meth...
Objectives: Pharyngeal high-resolution impedance manometry (HRIM) studies can be analysed by automat...
BACKGROUND: Oro-pharyngeal swallowing involves complex neuromodulation to accommodate changing bolus...
Background & Aims: Automated impedance manometry analysis (AIM) measures swallow function variables ...
Background & aimsPharyngeal manometry and impedance provide information on swallow function. We deve...
Objectives. Preswallow pharyngeal bolus presence is evident in patients with oropharyngeal dysphagia...
Objectives. Preswallow pharyngeal bolus presence is evident in patients with oropharyngeal dysphagia...
Automated impedance manometry (AIM) analysis measures swallow variables defining bolus timing, press...
AIM: To apply a new method, pharyngeal automated impedance manometry (AIM), as an objective assessme...
Impedance analysis using high-resolution impedance manometry (HRIM) enables the recognition of phary...
OBJECTIVES: This validation study evaluates a new manometry impedance-based approach for the objecti...
OBJECTIVES: The purpose of the present study was to apply a new method, pharyngeal automated impedan...
The pharyngeal phase of swallowing is a complex event consisted with subsequent muscular contraction...
© 2018, Springer International Publishing AG. This chapter describes the use of high-resolution mano...
Objectives: Preswallow pharyngeal bolus presence is evident in patients with oropharyngeal dysphagia...
Background: Pharyngeal automated impedance manometry (AIM) analysis is a novel non-radiological meth...
Objectives: Pharyngeal high-resolution impedance manometry (HRIM) studies can be analysed by automat...
BACKGROUND: Oro-pharyngeal swallowing involves complex neuromodulation to accommodate changing bolus...