Anatomy & Physiology – ACCESORY ORGANS OF DIGESTIVE SYSTEM
Read the complete lesson in an organized slide-by-slide format. This topic contains 31 learning sections from the source presentation.
LESSON CONTENTS — 31 SECTIONS
ACCESSORY ORGANS OF DIGESTIVE SYSTEM
Objectives
- Describe structure and functions of the liver
- Describe structure of the biliary system
- Describe structure and functions of the pancreas
Intro…
Accessory organs of gastrointestinal tract: The organs which are not directly part of gastrointestinal tract but their products are essential for the digestive system to accomplish its primary function
These organs include
The liver
Gallbladder and bile duct
Pancreas
These are essential for the digestive system as they either produce or store secretions essential the digestion to take place
STRUCTURE AND FUNCTIONS OF THE LIVER
Intro…
Is the largest gland in the body, weighing between 1 and 2.3Kg
In adults the liver weighs 2% of body mass
It is situated in the upper part of the abdominal cavity occupying the greater part of the right hypochondriac region, part of the epigastric region and extending into the left hypochondriac region.
Is divided, based on hepatic drainage and blood supply, into the right and left lobes by the fossae for the gallbladder and the IVC.
SURFACES OF THE LIVER
Diaphragmatic surface, the convex upper surface of the liver which is molded to the undersurface of the domes of the diaphragm.
Visceral surface or posteroinferior surface, is uneven and concave. It is covered in peritoneum apart from where it attaches the gallbladder and the porta hepatis
Slide 7
ANATOMICAL LOBES OF THE LIVER
Two main lobes
right lobe(larger)
left lobe(smaller)
They are separated by the falciform ligament.
The right lobe is further divided lobe by the presence of the GB, the fissure for the ligamentum teres, IVC, and the fissure for the ligamentum venosum into:
quadrate lobe (anteriorly and inferiorly)
caudate lobe (posteriorly and superiorly).
Caudate and quadrate lobes are functional part of the left lobe.
STRUCTURAL ORGANIZATION OF THE LIVER
Glisson’s capsule: The capsule of the liver. A layer of connective tissue surrounding the liver and ensheathing the hepatic artery, portal vein, and bile ducts within the liver.
The liver is made up of liver lobules. These are the structural functional units of the liver.
Each lobule is drained by a central vein which is a tributary of the hepatic vein.
In the spaces between the lobules are the portal canals. These contain branches of the hepatic artery, portal vein and a tributary of a bile duct (the three together known as the portal triad).
The arterial and venous blood passes btn the liver cells by means of sinusoids.
FISSURES AND LIGAMENTS OF THE LIVER
Fissure for the round ligament (ligamentum teres hepatis), located between the lateral portion of the left lobe and the quadrate lobe.
Fissure for the ligamentum venosum, located between the caudate lobe and the lateral portion of the left lobe.
Fossa for the gallbladder, located between the quadrate lobe and the major part of the right lobe.
Fissure for the IVC, located between the caudate lobe and the major part of the right lobe.
Porta hepatis. This transverse fissure on the visceral surface of the liver between the quadrate and caudate lobes lodges the hepatic ducts, hepatic arteries, branches of the portal vein, hepatic nerves, and lymphatic vessels
BARE AREA OF THE LIVER
The bare area of the liver (nonperitoneal area) is a large triangular surface of the liver devoid of peritoneal covering.
The coronary ligaments represent reflections of the visceral peritoneum covering the liver onto the diaphragm.
Boundaries of bare area of liver
Superior coronary ligament
Inferior coronary ligament
Left triangular ligament
Right triangular ligament
Bare area of the liver
BLOOD SUPPLY OF THE LIVER
Dual Blood Supply
Artery: The hepatic artery (30%), a branch of the celiac artery, divides into Rt and Lt terminal branches that enter the porta hepatis.
Vein: The portal vein (70%) divides into Rt and Lt terminal branches that enter the porta hepatis behind the arteries.
Venous Drainage
The hepatic veins (3 or more) emerge from the posterior surface of the liver and drain into the IVC.
LYMPH DRAINAGE
The liver produces a large amount of lymph (~ 1/3 – 1/2) of all body lymph.
The lymph vessels leave the liver and enter a number of lymph nodes in the porta hepatis.
The efferent vessels pass to the celiac nodes.
A small number of vessels pass from the bare area of the liver thru the diaphragm to the posterior mediastinal lymph nodes.
Functions of liver
Nutrient and vitamin metabolism and storage
Glucose and other sugars
Amino acids (Deamination of amino acids),the end product is urea which is then excreted in the urine)
Lipids o Fatty acids
Cholesterol
Lipoproteins
Fat-soluble vitamins
Water-soluble vitamins
Breakdown of erythrocytes and defense against microbes
Detoxification of drugs and noxious substances
Cont…
Inactivation of hormones such as Steroids
Production of heat
Formation and Secretion of bile
Synthesis of plasma proteins
Acute-phase proteins
Albumin
Clotting factors
Steroid-binding and other hormone-binding proteins
Immunity; by Kupffer cells
STRUCTURE OF THE BILIARY SYSTEM
Biliary system
The system of organs and ducts that create and store bile and release it into the duodenum.
It is also known as the biliary, or bile, tract.
Bile is secreted(produced) by the liver cells. It is stored, and concentrated in the Gall Bladder; later it is delivered to the duodenum.
The bile ducts of the biliary system consist of
Rt and Lt hepatic ducts
Common hepatic duct
GB and Cystic duct
Common Bile duct
Slide 19
BILE DUCTS
The right and left hepatic ducts join to form the common hepatic duct just outside the portal fissure.
The hepatic duct passes downwards for about 3 cm where it is joined at an acute angle by the cystic duct from the gall bladder.
The cystic and hepatic ducts together form the common bile duct which passes downwards behind the head of the pancreas to be joined by the main pancreatic duct at the hepatopancreatic ampulla.
The opening of the combined ducts into the duodenum is controlled by the sphincter of Oddi.
The common bile duct is about 7.5 cm long and has a diameter of about 6 mm.
Slide 21
GALL BLADDER
The gallbladder is a pear-shaped sac lying on the visceral surface of the right lobe of the liver in a fossa between the right and quadrate lobes attached the liver by connective tissue.
The gallbladder has the following structures
Fundus of gallbladder: A rounded end, which may project from the inferior border of the liver
Body of gallbladder: A major part in the fossa, which may be against the transverse colon and the superior part of the duodenum
Neck of gallbladder: A narrow part, with mucosal folds forming the spiral fold
Slide 23
Cont…
The walls of the gallbladder is formed by three tunics which are
Inner mucous layer which folded into reggae and this allows it to expand
The muscular layer which contains smooth muscles that allows the gallbladder to contract
The outer covering layer of the serosa
FUNCTION OF THE GALLBLADDER
It stores and concentrates the bile which is secreted by the liver
Concentration of the bile by up to 10 or 15 fold by absorption of water through the walls of the gall bladder
Release of stored bile
STRUCTURE AND FUNCTIONS OF THE PANCREAS
Pancreas
The pancreas is a pale grey gland situated in the epigastric and left hypochondriac regions of the abdominal cavity weighing about 60 grams and it is about 12 to 15 cm long.
The pancreas consists of
Head
Neck
Uncinate process
Body
Tail
Slide 28
Cont…
The pancreas is both an exocrine and endocrine gland.
Exocrine portion
Makes up majority of pancreas
Has a compound acinar arrangement and tiny ducts which unite to form the main pancreatic duct, which empties into the duodenum
It secretes pancreatic juice which consists of pancreatic enzymes
Endocrine portion
embedded between exocrine units; called pancreatic islets; constitute only 2% of the total mass of the pancreas; made up of alpha cells and beta cells which produce glucagon and insulin respectively and pass its secretions into capillaries
BLOOD SUPPLY
The arterial supply is through pancreatic arteries the branches of splenic artery, gastro-duodenal and superior mesenteric arteries
VENOUS DRAINAGE
Follows arterial supply
Function of pancreas
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