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Related Concept Videos

Assessment of the Cardiovascular System IV: Auscultation01:25

Assessment of the Cardiovascular System IV: Auscultation

Cardiac auscultation is a clinical skill used to assess heart function and detect abnormalities. It involves listening to heart sounds at specific anatomical locations through a stethoscope.
Normal Heart Sounds
S1 (First Heart Sound)-
S1 is made by the closure of the mitral and tricuspid valves (atrioventricular valves), marking the beginning of systole.
S2 (Second Heart Sound)-
S2 is made by the closure of the aortic and pulmonic valves (semilunar valves), marking the end of the systole.
Assessment of the Mouth01:26

Assessment of the Mouth

A thorough mouth assessment, including inspection and palpation of the lips, gums, tongue, tonsils, uvula, and pharynx, is crucial in detecting potential health issues. Diseases ranging from oral cancer to systemic conditions like diabetes could be identified early through careful oral examination. This article provides a detailed guide on conducting a comprehensive mouth assessment.
Mouth Inspection
The inspection begins with visually examining the mouth for symmetry, color, and size.
Physical Assessment of the Respiratory Tract IV: Auscultation01:28

Physical Assessment of the Respiratory Tract IV: Auscultation

Auscultation is a crucial component of the physical assessment of the respiratory tract. It offers valuable insights into airflow through the bronchial tree and potential lung obstructions. This process involves careful listening to breath, voice, and adventitious sounds, which can reveal a wealth of information about a patient's respiratory health.
Breath Sounds
Breath sounds are categorized into vesicular, bronchovesicular, and bronchial.
Sputum Studies II: Culture and Sensitivity01:20

Sputum Studies II: Culture and Sensitivity

Description
Sputum culture and sensitivity is a medical procedure used to diagnose bacterial infections in the respiratory tract and select the most appropriate antibiotics for treatment. This process involves analyzing sputum samples of thick and opaque secretions produced in the lungs and airways. These samples are collected from patients and then sent to the laboratory for analysis.
The test can identify various pathogens responsible for respiratory infections, including Streptococcus,...
Assessment of Ventilation II: Respiratory Depth and Rhythm01:29

Assessment of Ventilation II: Respiratory Depth and Rhythm

Respiratory Depth
Respiratory depth measures the volume of air inhaled or exhaled during a breath. It can vary from shallow to deep and typically remains consistent when a person is at rest or asleep. Occasionally, individuals will automatically inhale deeply, known as sighing, which inflates the lungs with more air than normal breathing.
To assess respiratory depth, observe the degree of chest excursion or movement:

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Related Experiment Video

Updated: Jun 1, 2026

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[The objective evaluation of sibilants].

S Meyer1, M Ptok

  • 1Medizinische Hochschule Hannover, Klinik für Phoniatrie und Pädaudiologie, Hannover.

Laryngo- Rhino- Otologie
|June 11, 2011
PubMed
Summary

Spectral analysis of sibilants, the most common speech disorder, is crucial. Varying analysis windows significantly impact results, highlighting the need for consistent parameters in clinical practice.

Area of Science:

  • Speech-language pathology
  • Acoustic phonetics
  • Signal processing

Context:

  • Sibilant sound errors are the most frequent speech disorder.
  • Objective analysis of speech sound production is essential for diagnosis and treatment.
  • Spectral analysis offers a valuable, accessible tool for evaluating speech sounds.

Purpose:

  • To investigate the influence of different spectral analysis protocols on the evaluation of sibilant sound production.
  • To assess the impact of varying time and frequency window selections on spectral moment calculations.
  • To provide recommendations for standardized spectral analysis of sibilants in clinical settings.

Summary:

  • Sibilants exhibit band-pass noise characteristics, analyzed using power spectral density functions and spectral moments.

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  • The study found that different time and frequency analysis windows yield varying results in spectral analysis of sibilants.
  • No universal gold standard exists for sibilant spectral analysis, but consistent parameters are vital.
  • Impact:

    • Highlights the critical need for standardized protocols in spectral analysis of speech sounds.
    • Recommends specific parameters (e.g., 40ms time window) for clinical application to ensure reliable pre- and post-therapy comparisons.
    • Aids clinicians in achieving objective and reproducible assessments of sibilant disorders.