Chapter 5 Tissues Tissues TISSUES Organization or communities

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Chapter 5 Tissues

Chapter 5 Tissues

Tissues • TISSUES: Organization or communities of similar cells often embedded in nonliving intracellular

Tissues • TISSUES: Organization or communities of similar cells often embedded in nonliving intracellular material called matrix. • Histology - The study of tissues

Types of Tissue • • Epithelial Connective Muscle Nervous Appear within 2 months of

Types of Tissue • • Epithelial Connective Muscle Nervous Appear within 2 months of fetal development.

Epithelial Tissue • • Epithelial - lack blood vessels (avascular), therefore they receive oxygen

Epithelial Tissue • • Epithelial - lack blood vessels (avascular), therefore they receive oxygen through diffusion. Function: – – – Protection - skin, mouth, stomach, etc. Sensory - skin, nose, ears Secretion - hormones, mucus, digestive juices Absorption - respiration, gut Excretion - urine from kidneys

Structure of Epithelial Tissue • • • Cells are tightly packed, little intracellular material.

Structure of Epithelial Tissue • • • Cells are tightly packed, little intracellular material. Always contains one free surface and one surface attached to a basement membrane = connective tissue. Membranous - thin tissue layer – – – Squamous - flat, platelike: blood vessels, alveoli Columnar - narrow, cylindrical: uterine lining Cuboidal - cubed shaped: glands Simple - one layer of cells Stratified - multiple layers of cells Pseudostratified columnar - single layer of cylinders of different heights

Simple Squamous • Squamous – flat, platelike: blood vessels, alveoli

Simple Squamous • Squamous – flat, platelike: blood vessels, alveoli

Simple Columnar • Columnar – narrow, cylindrical: uterine lining

Simple Columnar • Columnar – narrow, cylindrical: uterine lining

Simple Cuboidal • Cuboidal – cubed shaped: glands

Simple Cuboidal • Cuboidal – cubed shaped: glands

Stratified Squamous • Stratified – multiple layers of cells

Stratified Squamous • Stratified – multiple layers of cells

Pseudostratified Columnar • Pseudostratified Columnar – single layer of cylinders at different heights

Pseudostratified Columnar • Pseudostratified Columnar – single layer of cylinders at different heights

Structure of Epithelial Tissue Continued • Glandular - specialized for secretion - function singularly

Structure of Epithelial Tissue Continued • Glandular - specialized for secretion - function singularly or in clusters - exocrine – discharges secretions into ducts that open onto surfaces like the skin and digestive tract (ex. tearducts) - endocrine – discharges secretions into blood or tissue fluid. ex. Thyroid, pituitary

Classified according to the way they secrete their products. Types of exocrine glands: a.

Classified according to the way they secrete their products. Types of exocrine glands: a. Merocrine – releases fluid by exocytosis i. Serous cells in the linings of the body cavity ii. Mucus cells in the linings of the digestive and respiratory systems. Ex. Salivary glands, sweat glands, Pancreatic glands.

b. Apocrine – Lose small portions of their glandular cell bodies. Ex. Mammary glands.

b. Apocrine – Lose small portions of their glandular cell bodies. Ex. Mammary glands.

c. Holocrine – entire cell released with fluid Ex. Sebaceous glands in skin

c. Holocrine – entire cell released with fluid Ex. Sebaceous glands in skin

Transitional Epithelium: Note scalloped edges of cells on free surface! Specialized to change in

Transitional Epithelium: Note scalloped edges of cells on free surface! Specialized to change in response to increased tension. (Expandable) • Found in inner lining of urinary bladder and lines the ureters and part of the urethra.

Transitional epithelium changes its appearance with stretching. The epithelium on the left is relaxed

Transitional epithelium changes its appearance with stretching. The epithelium on the left is relaxed and the cells appear stacked. On the right, the epithelium is stretched, the epithelial cells flatten and the overall epithelium becomes thinner. http: //www. nku. edu/~dempseyd/URINARY_1. htm

A. Simple 1. Simple squamous

A. Simple 1. Simple squamous

2. Simple cuboidal Basement membrane

2. Simple cuboidal Basement membrane

3. a. Simple columnar b. Microvilli c. Cilia - Ciliated columnar

3. a. Simple columnar b. Microvilli c. Cilia - Ciliated columnar

4 a. Glandular

4 a. Glandular

4 b, c, Pseudostratified

4 b, c, Pseudostratified

B. Stratified 5 a. Stratified squamous

B. Stratified 5 a. Stratified squamous

6. Stratified cubodial

6. Stratified cubodial

7 a and b: Transitional

7 a and b: Transitional

Connective Tissue • Function • Attachment – – • Support - organs and body

Connective Tissue • Function • Attachment – – • Support - organs and body as a whole. – – – • muscle to bone produce blood cells store fat serve as framework Defense mechanism - fight against infection and repair tissue damage.

Connective Tissue • Structure – – • Cells far apart Have matrix (intercellular material-fluids,

Connective Tissue • Structure – – • Cells far apart Have matrix (intercellular material-fluids, fibers, etc…) between cells. Types – – Adipose Cartilage Bone Blood

Types of Connective Tissue • Adipose – fat cells – – Protective covering around

Types of Connective Tissue • Adipose – fat cells – – Protective covering around organs Insulation Distribution is different in males and females Stores energy

Types of Connective Tissue Continued • Cartilage – dense fibrous – – – shock

Types of Connective Tissue Continued • Cartilage – dense fibrous – – – shock absorbers heals very slowly (no direct blood supply) Types a. Hyaline – most common, found on the ends of bone. b. Elastic – more elastic, found on ears c. Fibrocartilage – tough tissue, pads between disks in vertebrae.

Types of Connective Tissue Continued Elastic Hyaline Fibrocartilage

Types of Connective Tissue Continued Elastic Hyaline Fibrocartilage

Types of Connective Tissue Continued • Bone – Specialized to form blood – Allows

Types of Connective Tissue Continued • Bone – Specialized to form blood – Allows attachment for muscle

Types of Connective Tissue Continued • Blood – liquid state – Oxygen movement –

Types of Connective Tissue Continued • Blood – liquid state – Oxygen movement – Red (transports gases), white (fight infection), and platelet cells (blood clotting) – Plasma = fluid portion – Defense against bacteria – Ischemia = decrease oxygen supply to organs

Muscle Tissue • Function – Movement through contraction • Types – Skeletal – Smooth

Muscle Tissue • Function – Movement through contraction • Types – Skeletal – Smooth – Cardiac

Muscle Tissue Continued • Skeletal – Striated and voluntary – Muscles attached to bone

Muscle Tissue Continued • Skeletal – Striated and voluntary – Muscles attached to bone – Controllable

Muscle Tissue Continued • Smooth – Involuntary – Found in the walls of hollow

Muscle Tissue Continued • Smooth – Involuntary – Found in the walls of hollow internal organs

Muscle Tissue Continued • Cardiac – Striated and involuntary – Only found in the

Muscle Tissue Continued • Cardiac – Striated and involuntary – Only found in the heart

Nervous • Function – Regulate and integrate communication • Types – Neurons – Neuroglia

Nervous • Function – Regulate and integrate communication • Types – Neurons – Neuroglia

Nervous Continued • Neurons – send and receive messages • Neuroglia – connect and

Nervous Continued • Neurons – send and receive messages • Neuroglia – connect and support neurons

Nervous Continued • Structure – Soma – body of neuron – Axon – carries

Nervous Continued • Structure – Soma – body of neuron – Axon – carries impulses away from neuron – Dendrite – carries impulses to neuron