Anatomy & Physiology Larynx ‎ Lies in front of the laryngo- pharynx from the level of the third to the sixth cervical vertebrae. Consists of a framework.

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Presentation transcript:

Anatomy & Physiology

Larynx ‎ Lies in front of the laryngo- pharynx from the level of the third to the sixth cervical vertebrae. Consists of a framework of cartilages, connected by ligaments and membranes, lined by a mucous membrane and moved by muscles.

Infantile larynx  Absolutely and relatively smaller.  Funnel-shaped.  ‎Much softer therefore collapse more easily in forced inspiration.  Lies high up under the tongue.  The plane of its inlet is less oblique.

Laryngeal cartilages ‎ Unpaired crtilages ‎ Thyroid cartilage ‎The largest, each half consists of: ‎ 1. Ala (lamina) ‎The two alae meet in the midline, forming an angle of about 90 ْ in men, about 120 ْ in women. ‎ 2. Superior cornu. ‎ 3. Inferior cornu. ‎ Cricoid cartilage ‎Thicker and stronger, a signet ring, narrow in front, broad behind. ‎ Cartilage of epiglottis Rises up behind the tongue. It is a thin leaf-like sheet of elastic fibrocartilage. ‎

Paired cartilages ‎ 1. Arytenoid cartilages ‎Largest. pyramidal in shape. ‎Posterior surface is triangular and concave. It extends laterally into a ‎muscular process. ‎Anterolateral surface is convex. It extends forward into a vocal process. ‎Medial surface is narrow, smooth ‎Inferior surface or base, is concave. It articulates with the cricoid cartilage. ‎Apex curves backwards to articulate with the corniculate cartilage ‎ 2. Corniculate cartilages‎ 3. Cuneiform cartilages

‎ Laryngeal joints ‎The two important joints ‎ 1. Crico-thyroid joint 2. Crico-arytenoid joint ‎ synovial joints,with two movements: ‎Rotation &‎Gliding. ‎

Laryngeal ligaments and membranes ‎ ‎1. Intrinsic ‎ ‎2. Extrinsic‎ ‎ Thyrohyoid membrane. Cricotracheal membrane. Hyo-epiglottic ligament.

Laryngeal muscles ‎ ‎1. Intrinsic ‎ A. ‎Abductors of the vocal cords Posterior crico-arytenoid muscle. Opens the glottis. Origin - from the depression on the posterior surface of the cricoid lamina. Direction - upwards and outwards. Insertion - into the back of the muscular process of the arytenoid cartilage.

B.Adductors of the vocal ‎Lateral crico-arytenoid muscle: Origin - from the upper border of the arch of the cricoid cartilage. Direction - upwards and backwards. Insertion ­ into the front of the muscular process of the arytenoid cartilage. Transverse portion of interarytenoid muscle. ‎External portion of thyro-arytenoid muscle.

C.Tensors of the vocal cords There are two on each side: 1.Cricothyroid muscle. 2.Internal portion of thyro- arytenoid (vocalis) muscle.

D.Opener of the laryngeal inlet ‎Thyro-epiglottic muscle is a part of the thyro-arytenoid muscles

E.Closers of the laryngeal inlet ‎Oblique portion of interarytenoid muscle ‎Aryepiglottic muscle

2. Extrinsic ‎ ‎'Strap' muscles of the neck 1. Sternothyroid muscle 2. Thyrohyoid muscle

Cavity of the Larynx ‎ Extends from the inlet into the laryngopharynx, to the lower border of the cricoid cartilage.It is divided into three parts by two folds of mucous membrane: ‎1. False vocal cords ‎ ‎2. True vocal cords ‎ ‎The mucosal folds divide the cavity into the following parts: ‎a. Vestibule ‎Lies between the inlet and the edges of the false cords ‎b. Ventricle of larynx ‎A recess between the false and true vocal cords. c. Subglottic space ‎Lies between the true vocal cords and the lower border of the cricoid cartilage.

Mucous membrane of the larynx ‎ ‎ ‎ ‎All is Ciliated columnar epithelium except that covers vocal cords & upper part of vestibule of larynx is Stratified squamous epithelium Reinke's layer of connective tissue lies immediately under the epithelium of the larynx and superficial to the elastic layer. There are no glands beneath it and no lymph vessels in it.

Blood supply of the larynx ‎ The larynx is supplied by: ‎1. Laryngeal branches of superior thyroid artery. ‎2. Laryngeal branches of inferior thyroid artery. ‎3. Cricothyroid branches of superior thyroid artery. Anastomose freely with one another. Veins accompany the arteries.

Nerve supply of the larynx ‎The larynx is supplied by branches of the vagus nerve. ‎Superior laryngeal nerve has two,laryngeal branches: ‎1. Internal branch. Entirely sensory supplies the cavity of the larynx as far down as the level of the vocal cords. ‎2. External branch supplies the cricothyroid muscle ‎Recurrenr (inferior) laryngeal nerve divides into: ‎1. An anterolateral (motor) branch which supplies all the intrinsic muscles of the larynx except the cricothyroid muscle ‎2. Posteromedial (sensory) branch which supplies the cavity of the larynx ‎below the level of the vocal cords.

Lymphatic drainage of the larynx ‎The edges of the vocal cords divide the lymphatic system of the larynx into two parts: ‎1. Supraglottic above the vocal cords. The vessels drain into: ‎Pre-epiglottic nodes. ‎Upper deep cervical nodes ‎2. Subglottic below the vocal cords. The vessels drain to: ‎Prelaryngeal and pretracheal nodes. ‎Lower deep cervical nodes ‎The vocal cords themselves have practically no lymphatic vessels, hence malignant tumours limited to them do not spread readily.

Applied physiology of the larynx ‎ FUNCTIONS OF THE LARYNX

1.Protection of the lower air passages ‎‎1. Closure of the laryngeal inlet ‎ The aryepiglottic folds move towards one another and close the inlet ‎2. Closure of the glottis ‎ Accompanies closure of the inlet. This normal reflex is present from the time of birth. ‎3. Cessation of respiration ‎Automatic, IXth cranial nerve, is initiated by the contact of food with the posterior pharyngeal wall and base of tongue ‎4. Cough reflex ‎ Should any particles enter the trachea and bronchi the act of coughing will usually dislodge them …'watchdog of the lungs'

2.Phonation ‎ Voice is produced by vibration or the vocal cords ‎ 1. Pitch ‎The vibrations of the cords cut the air column into puffs and the frequency of the puffs determines the pitch produced. The-larynx is therefore a wind instrument. The average individual human voice can produce a frequency range of two octaves in singing. ‎2. 'Volume' ‎The intensity of sound produced by the larynx depends on the air pressure generated in the lungs by contraction of the abdominal and thoracic muscles.

3.Respiration ‎The larynx plays a part in the mechanism of respiration by reflex adjustments of the glottic aperture. ‎ 4.Fixation of the chest ‎When the larynx is closed the thoracic cage becomes fixed permitting climbing or digging. Since the ribs cannot rise freely, a fixed support is given to the pectoral muscles.