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HEART AND VASCULAR SYSTEM

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Page 1: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

HEART AND VASCULAR SYSTEM

Page 2: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

CAPILLARIES

Function = exchange of gas, nutrients, metabolites, water

Structure = Endothelium +pericyte + basement

membrane

Pericyte =undifferentiated cells that becomes smooth

muscle or fibroblast

Page 3: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

CAPILLARY SYSTEMS

Vary regarding:Diameter

3-4 μm to 30-40 μmAbundance

Heart, liver > TendonArterio-venous shunts

Direct connections between arterial + venous system

Page 4: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

Types of endothelium

1. Continuous: 1. Most common 2. Basement membrane is present3. Uninterrupted lining with tight junctions

2. Fenestrated: 1. Found in gut, kidney, endocrine glands2. Basement membrane is present

3. Large pores

Page 5: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane
Page 6: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

From: Wheater’s Functional Histology, B Young and JW Heath

Page 7: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane
Page 8: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane
Page 9: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

3. Discontinuous: No basement membrane Large diameter Continuous interface between lumen and

surrounding tissue Sinusiods of liver, spleen and bone marrow

Page 10: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane
Page 11: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

ARTERIES AND VEINS

Inner

Tunica intima: endotheliumTunica media: elastic and/or smooth muscleTunica adventitia: collagen, elastic fibres

Outer

Page 12: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

ARTERIESARTERIOLI

Control blood flow by dilation or constriction

Tunica intima Endothelium

Lamina elastica interna (2 or more layers of a fenestrated elastic membrane)

Tunica media Few layers smooth muscle cells

Tunica adventitiaLoose connective tissue

Page 13: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

MUSCLE/MEDIUM SIZED ARTERIES

Blood flow to organs

Tunica intima:1. Endothelium2. Either Lamina elastica interna

or Subendothelial layer of thin loose connective tissue

Page 14: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

MUSCLE/MEDIUM SIZED ARTERIES

Tunica media: 1. Most prominent2. Spirally arranged smooth muscle3. Little connective tissue4. Lamina elastic externa

Page 15: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

MUSCLE/MEDIUM SIZED ARTERIES

Tunica adventitia: Usually thinner, loose connective tissue

Page 16: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

lamina elastica interna

smooth muscle of tunica medialamina elastica externa

Page 17: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

ELASTIC ARTERIES

Pulmonary trunk/aorta + major branches

Stretch/systole/heart contracts/blood ejected

from ventricles – diastole/recoil

Tunica intima:1. Endothelium 2. Subendothelium layer

3. Lamina elastica interna

Page 18: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

ELASTIC ARTERIES

Tunica media:1. 40-70 fenestrated concentric layers of

elastic fibre2. Amorphic ground substance with collagen

& smooth muscle cells

Tunica adventitia: 1. Irregular connective tissue, few elastic fibers

Page 19: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

endotheliumsubendothelium layerlamina elastica interna

tunica media

tunica adventitia

tunica intima

Page 20: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

THE VENOUS SYSTEM

Thinner walls than arteries, larger lumen

VENULESTunica intima:

Endothelial layer

Tunica media: Pericytes ____ smooth muscle

fibres Tunica adventitia:

Longitudinal collagen fibres

Page 21: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

SMALL /MEDIUM VEINS

Small= 0.2-1 mm + Medium =1-10 mm

Tunica intima:1. Endothelium 2. Subendothelial layer 3. Lamina elastica interna (poorly developed)

Tunica media: 1. Layers of circular smooth muscle fibres

2. Loose connective tissue

Page 22: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

SMALL /MEDIUM VEINS

Tunica adventitia: 1. Thick, longitudinal collagen fibres

2. Loose connective tissue3. Elastic fibres4. Fibroblasts and macrophages

Page 23: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

Valves Folds intima strengthened with connective tissue & elastic fibres

NB! Note difference to heart valve structure

Page 24: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

LARGE MUSCULAR VEINS

Tunica intima: Similar to medium veins

Tunica media: Similar to medium veins

Tunica adventitia: Thick, bundles longitudinal collagen Elastic fibresSmooth muscle Numerous vasa vasorum

Page 25: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

endothelium

subendothelial layer

lamina elastica interna

smooth muscle bundles

collagen fibers

tunica media tunica adventitia

tunica intima

Page 26: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

From Basic Histology, 4th Ed, LC Junquera, J Carneiro

Page 27: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

LYMPHATIC SYSTEM

Begin blind in connective tissue as lymph capillariesLarge pores- cells, bacteria and macromolecules

Page 28: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

LYMPH CAPILLARIES

Similar structure to blood capillaries

Large lumen

No pericytes

Basal membrane is often absent

Page 29: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

SMALL/LARGER LYMPH VESSELS

Layers difficult to distinguish

Tunica intima: Similar to large veins

Tunica media: Concentric/diagonal muscle bundles

Tunica adventitia: 1. Longitudinal/diagonal bundles of smooth muscle 2. Bundles of collagen fibres3. Outer layer of collagen fibres

Page 30: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

From Basic Histology, 4th Ed, LC Junquera, J Carneiro

Page 31: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

NERVE SUPPLY

Most blood vessels have a well developed nerve supply

Efferent, Afferent, Motor, Baro and chemoreceptors

Page 32: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

HEART

Tunica intima= Endocardium (inner)

Tunica media = Myocardium (middle)

Tunica adventitia= Epicardium (outer)

Page 33: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

pericardium

Epicardium (t.a.)

Myocardium (t. m.)

Subendocardium (s.e.)

Endocardium (t.i.)

Page 34: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

A: ENDOCARDIUM(inner/contact with blood)

1. Endothelium 2. Delicate layer of collagenous tissue 3. Robust fibro-elastic layer -contains

smooth muscle cells

Page 35: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

B: SUBENDOCARDIUM1. Loose connective tissue

2. Fat cells 3. Purkinje fibers4. Small blood vessels+ nerves +

branches of conducting system

C: MYOCARDIUMBundles of cardiac muscle (thickest)

Page 36: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

Pericardium

Epicardium (t.a)

Myocardium (t. m.)

Subendocardium (s.e.)

Endocardium (t.i.)

Page 37: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

D: EPICARDIUM (Outer)External 1. Mesothelium - flattened epithelial cells 2. Fibroelastic tissue (thin) 3. Broad layer adipose tissue4. Coronary vessels + autonomic nerves pass

through the epicardium to supply the myocardium

Page 38: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

pericardium

Epicardium (t.a.)

Myocardium (t. m.)

Subendocardium (s.e.)

Endocardium (t.i.)

Page 39: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

SKELETON OF THE HEART

Thick fibrous rings at the origin of aorta + pulmonary arteries Connected by trigonum fibrosum with rings at arterio-ventricle openings

Page 40: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

VALVES

Plate/flap of fibroelastic connective tissue Extending from the fibrous skeleton Covered by endocardium

Page 41: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

CONDUCTING SYSTEM

The coordinated contraction of the myocardium

is mediated by a specialized conducting

system of modified cardiac muscle fibers

Page 42: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

1. SINOARTRIAL (SA) NODE - PACEMAKER REGION (Right atrium (top))

2. ATRIOVENTRICULAR (AV) NODE (Right atrium (bottom))

3. ATRIOVENTRICULAR BUNDLE (BUNDLE OF HISS) (interventricular septum)

Page 43: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

SA Node

AV Node

Page 44: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

HOW DOES IT WORK?

Impulse starts at SA node Spreads throughout atrium Causes contraction Blood into ventricles

Page 45: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

Then! Impulse spreads to AV node

Passed via bundle of Hiss Divides into smaller branches bundles

of Purkinje fibers

Page 46: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

Then!Passes to subendocardial connective tissue Penetrates the ventricular myocardiumDepolarization and contraction

Page 47: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

LA

RA

LVRV

SA Node

AV Node

Bundle of Hiss

Right branch

Left branch

Page 48: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

A: SINOARTRIAL (SA) NODE

Group of collagen & elastic fibresWell developed capillary system In middle:

Nodal myocyotes or P cells Borders on narrow transitional cells Border of the Purkinje Cardiac muscle cells

Region contains many axons of sympathetic and parasympathetic nervous system

Page 49: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

Impulse moves from the → P-cells (Pale cells/pacemakers)

→ Transitional cells:fewer myofibrils→ Purkinje cells: large, abundant glycogen,

few myofilaments, extensive gap junctions

→ Cardiac muscle cells

Page 50: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

B: ATRIOVENTRICULAR(AV) NODE

Right atrium, microscopically similar to the SA node

Page 51: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

C: ATRIOVENTRICULAR BUNDLE (BUNDLE OF HISS)

Longitudinal transitional cells of AV node Down the interventricular septum Divide into left and right bundle Moves through subendocardium

Page 52: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

C: ATRIOVENTRICULAR BUNDLE (BUNDLE OF HISS)

Half way down septum, transitional cells are replaced with Purkinje cells Two branches divide further, form the Purkinje cell network

Contact between Purkinje cells and cardiac muscles cells of myocardium

Page 53: HEART AND VASCULAR SYSTEM. CAPILLARIES Function = exchange of gas, nutrients, metabolites, water Structure = Endothelium +pericyte + basement membrane

Practical

Consider your practical as a self study period You will not be allowed into a practical without your textbooks (checks at door)RegisterMust be present for the first 30 minutes