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Showing posts with label SURGERY. Show all posts
Showing posts with label SURGERY. Show all posts

Blood supply of stomach




The stomach is supplied by many arteries like :

1- short gastric arteries - branches of the splenic artery - supply the fundus of stomach

2-left gastro epiploic artery - branch of the splenic artery - supply the greater curvature of the stomach .

3- left gastric artery which is a direct branch of the coeliac trunk that arises from the aorta . supplies the lesser curvarture.

4- right gastric artery which is a branch of the common hepatic artery - supplies the lesser curvature.

5- right gastro epiploic artery which is a branch of the gastro duodenal artery which is again a branch of the common hepatic artery- supplies the greater curvature

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The branches of the COELIAC TRUNK are :

1-common hepatic artery

2-left gastric artery

3-splenic artery

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The branches of splenic artery are:

1-short gastric branches

2-left gastro epiploic artery
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The branches of the common hepatic artery are :

1-hepatic artery proper

2-right gastric artery

3-gastroduodenal artery

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The branches of the gastroduodenal artery are :

1-right gastro epiploic artery

2-superior pancreatico duodenal artery

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P.S: The INFERIOR PANCREATICO DUODENAL ARTERY is a branch OF THE SUPERIOR MESENTRIC ARTERY .

Breast - lymphatic drainage



The lymphatic and venous drainages of the breast are of great importance in the spread of carcinoma

About three quarters of the lymphatic drainage is to the axillary nodes: 
(1) Lymphatics pass around the edge of the pectoralis major and reach the pectoral group of axillary nodes; 
(2) routes through or between the pectoral muscles may lead directly to the apical nodes of the axilla; 
(3) lymphatics follow the blood vessels through the pectoralis major and enter the parasternal (internal thoracic) nodes; 
(4) connections may lead across the median plane and hence to the contralateral breast; 
(5) lymphatics may reach the sheath of the rectus abdominis and the subperitoneal and subhepatic plexuses.

It should be noted that free communication exists between nodes below and above the clavicle and between the axillary and cervical nodes.

Musculocutaneous nerve



PATH OF THE NERVE :

The musculocutaneous nerve arises from the lateral cord of the brachial plexus, opposite the lower border of the Pectoralis minor, its fibers being derived from C5, C6, C7.

It penetrates the Coracobrachialis muscle and passes obliquely between the Biceps brachii and the Brachialis, to the lateral side of the arm; a little above the elbow it pierces the deep fascia lateral to the tendon of the Biceps brachii and is continued into the forearm as the lateral antebrachial cutaneous nerve.

In its course through the arm it innervates the Coracobrachialis, Biceps brachii, and the greater part of the Brachialis.

* The branch to the Coracobrachialis is given off from the nerve close to its origin, and in some instances as a separate filament from the lateral cord of the plexus; it is derived from the seventh, cervical nerve.

* The branches to the Biceps brachii and Brachialis are given off after the musculocutaneous has pierced the Coracobrachialis; that supplying the Brachialis gives a filament to the elbow-joint.

* The nerve also sends a small branch to the bone, which enters the nutrient foramen with the accompanying artery.

IRREGULARITIES : 

The musculocutaneous nerve presents frequent irregularities.

It may adhere for some distance to the median and then pass outward, beneath the Biceps brachii, instead of through the Coracobrachialis.

Some of the fibers of the median may run for some distance in the musculocutaneous and then leave it to join their proper trunk; less frequently the reverse is the case, and the median sends a branch to join the musculocutaneous.

The nerve may pass under the Coracobrachialis or through the Biceps brachii.

Occasionally it gives a filament to the Pronator teres, and it supplies the dorsal surface of the thumb when the superficial branch of the radial nerve is absent.

DAMAGE : 

Although rare, the musculocutaneous n. can be affected through compression due to hypertrophy or entrapment between the biceps aponeurosis & brachialis fascia or it may be injured through stretch as occurs in dislocations & sometimes in surgery.

Isolated injury, causes weakness of elbow flexion & supination of the forearm.

A discrete sensory disturbance is present on the radial side of the forearm.

The nerve is usually involved in an upper brachial plexus palsy

Injury can occur before entering the coracobrachialis due to dislocation or apparently due to stretch due to throwing injury

Heavy backpacks can cause damage to the upper trunk of the brachial plexus – dysfunction can be severe & prolonged with similar injury as occurs with Erb's palsy from breech deliveries. Early detection is important – the combination of time, avoidance of wearing a backpack, and strengthening of the shoulder muscles will probably be effective.

Distal to the coracobrachialis, the MC cause appears to be weight lifting – either through compression due to hypertrophy or entrapment between the biceps & brachialis, the nerve may lead to a painless loss of muscle strength in flexion & supination of the forearm. Initial treatment should include avoidance of biceps curls or other biceps exercises.

Images courtesy : wikipedia .

Adductor canal (Subsartorial/Hunter's canal)


























*The adductor canal (Subsartorial/Hunter’s canal) is an aponeurotic tunnel in the middle third of the thigh, extending from the apex of the femoral triangle to the opening in the Adductor magnus, the Adductor hiatus.

*It courses between the anterior compartment of thigh and the medial compartment of thigh, and has the following boundaries:

1. anterolaterally - the Vastus medialis.
2. posterior - the Adductor longus. It is covered in by a strong aponeurosis which extends from the Vastus medialis, across the femoral vessels to the Adductor longus and magnus.

Lying on the aponeurosis is the Sartorius muscle.

*The canal contains the femoral artery, femoral vein, and branches of the femoral nerve (specifically, the saphenous nerve, and the nerve to the Vastus medialis).

*Named after JOHN HUNTER.

Lymph nodes of Neck































*The lymph nodes of the neck can be divided into six levels within the defined anatomic triangles. These groups and the areas that they drain are particularly important when locating and working up a "neck mass" or possible malignancy. The groups and drainage areas are as follows:

I--Submental and submandibular nodes
II--Upper jugulodigastric group
III--Middle jugular nodes (draining the nasopharynx and oropharynx, oral cavity, hypopharynx, larynx.
IV--Inferior jugular nodes draining the hypopharynx, subglottic larynx, thyroid, and esophagus.
V-- Posterior triangle group
VI--Anterior compartment group

FEMORAL TRIANGLE


BOUNDARIES OF FEMORAL CANAL : 
It is bounded by:
(superiorly) the inguinal ligament
(medially) the medial border of the adductor longus muscle
(laterally) medial border of the sartorius muscle 
Its floor is provided laterally by iliopsoas, medially by pectineus and adductor longus. Its roof is formed by the fascia lata.
The femoral triangle is shaped like the sail of a ship.
Its boundaries can be remembered using the mnemonic, "SAIL" for Sartorius, Adductor longus and Inguinal Ligament. 

CONTENTS :
It is important as a number of vital structures pass through it, right under the skin. The following structures are contained within the femoral triangle (from lateral to medial):
terminal part of the femoral nerve and its branches
femoral sheath
femoral artery and its branches
femoral veins and its tributaries
femoral canal, containing the deep inguinal lymph nodes (snell, 8th edition)
- FLOOR
iliopsoas
pectineus
adductor longus
Lacunar Ligament
- ROOF is formed by the skin and fascia lata.
CLINICAL SIGNIFICANCE: 
 Since the femoral triangle provides easy access to a major artery, coronary angioplasty and peripheral angioplasty is often performed by entering the femoral artery at the femoral triangle. Heavy bleeding in the leg can be stopped by applying pressure to points in the femoral triangle. Another clinical significance of the femoral triangle is that the femoral artery is positioned at the midinguinal point (midpoint between the pubic symphysis and the anterior superior iliac spine); medial to it lies the femoral vein. Thus the femoral vein, once located, allows for femoral venopuncture[citation needed]. Femoral venopuncture is useful when there are no superficial veins that can be aspirated in a patient, in the case of collapse. 
The positive pulsation of the femoral artery signifies that the heart is beating and also blood is flowing to the lower extremity[citation needed].It is also necessary to appreciate clinically that this is a case where the nerve is more lateral than the vein. In most other cases the a nerve (relative to its associated artery and vein)would be the deepest or more medial followed by the artery and then the vein. But in this case it is the opposite. This must be remembered when venous or arterial samples are required from the femoral vessels. The order of this neurovascular bundle can be remembered using the mnemonic, "NAVY" for Nerve, Artery, Vein, Y -fronts (the British term of a style of men's underwear with a "Y" shaped front that acts as a fly). The "Y" is midline (corresponding with the penis) and the mnemonic always reads from the outside - in, so that the Femoral Nerve is always lateral. An alternate to this mnemonic is "NAVaL" for Nerve, Artery, Vein, and Lymph, to include the deep inguinal lymph nodes located medial to the Femoral vein.
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