Small Intestine

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Study Tools For Small Intestine

Small intestine (Image)
GI Tract (Image)
Digestion (Image)
Chemical & mechanical digestion (Image)
Small Intestine Digestion (Picmonic)
Small Intestine Absorption (Picmonic)
Digestion Process (Cheatsheet)
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Outline

Overview

  1. Structure
    1. Characteristics
      1. 1” diameter
      2. 6’ long in life
    2. Location – abdominal cavity
    3. Divisions
      1. Duodenum
        1. First 10 inches
        2. “C”-shaped (the C is the location of pancreas)
      2. Jejunum –  ~2 feet
      3. Ileum – Final 3 feet
        1. Peyer’s patches (lymphoid tissues)
        2. Ends at cecum of large intestine
          1. Ileocecal valve – Prevents contents of large intestine from regurgitating into small intestine
  2. Functions
    1. Completion of physical digestion and mixing of digested materials
    2. Completion of chemical digestion
    3. Site of major absorption
      1. Nutrients
      2. Salts
      3. Water
      4. Vitamins

Nursing Points

General

  1. Cell types in small intestine
    1. Simple columnar epithelium
      1. Secretes most digestive enzymes
    2. Goblet cells – secrete mucus
    3. Paneth cells – in glands
      1. Secrete peptidases & lysozymes
  2. Tissue layers of small intestine
    1. Tunica serosa (visceral peritoneum)
      1. Serous membrane
      2. Double layer on posterior side – mesentery
        1. Keeps small intestine suspended in normal anatomical position
    2. Tunica muscularis – smooth muscle
      1. Outer longitudinal (runs pylorus → cecum)
      2. Inner circular
    3. Tunica submucosa
      1. Areolar CT
      2. Connects tunica muscularis to inner lining
    4. Tunica mucosa
      1. Cells
        1. Simple columnar epithelium
        2. Goblet cells
      2. Plicae circularis – circular folds around inner border to increase surface area of small intestine
      3. Villi – fingerlike projections extending off plicae circularis – also to increase surface area
        1. Mucosal lining – 1-cell layer thick
        2. Tissues inside villi
          1. Tunica submucosa – areolar tissue
          2. Lacteal – lymphatic capillary
            1. Site of lipid absorption
          3. Blood capillary networks around lacteal
        3. Crypt of lieberkuhn (gland)
          1. Depression at base of villi
          2. Secretes watery fluid which contains peptidases and lysozymes (Paneth cells)

References

Betts, J.G., et al. (2017). Anatomy and physiology. Houston, TX: OpenStax, Rice University. Retrieved from https://openstax.org/details/books/anatomy-and-physiology?Book%20details

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Transcript

In this lesson we are going to talk about the small intestine
The small intestine is about 6 feet long and has a 1-inch diameter and is located in the abdominal cavity. The small intestine is broken up into three sections, duodenum, jejunum, and ileum. The duodenum is the first 10 feet, the jejunum is approximately the next two feet, and then the ileum makes up the final three feet. The ileum ends at the cecum which is in the large intestine. Encourage you to check out the large intestine lesson to get a feel for what’s going on there. But another important part of the ileum is that it contains specific cells called peyer’s patches which are really important lymphoid tissue.

The main purpose of the small intestine is that is a major location for absorption. It’s responsible for nutrient, salt, water, and vitamin absorption. It’s also the process where physical and chemical digestion are completed, and absorption takes over.

Now the small intestine is made up of a bunch of different cell types. At the top we’ve got simple columnar epithelium and that’s going to secrete most of the digestive enzymes that are responsible for that process in the small intestine. There are also goblet cells which produce mucus, and then there are these things called paneth cells and plant cells are found in glands and they are responsible for releasing peptidases and lysozymes which help to digest food.

And just like all of the other lessons, we focus on the layers of the GI tract. There are four, the serosa, muscularis, submucosa, and mucosa. Starting on the outermost edge you have this thing called the Tunica serosa and is a serous membrane. There’s something called a double layer and it happens on the posterior side. As you can see in this picture, There’s this connective tissue called a mesentery, and it wraps around the layers of the small intestine and that helps to keep the small intestine in the correct anatomical position. It acts essentially like a sling and keeps it where it’s supposed to be.

With the Tunica muscularis, there are two layers to this particular layer. The outermost layer of this is made of smooth muscle and it runs longitudinally, and then there is an inner circular smooth muscle layer. This layer of the small intestine helps to propel food via peristalsis.

On the innermost layer is the Tunica mucosa, and it’s made of simple columnar epithelium and goblet cells. What’s interesting about the layer in the small intestine are these things called up like a circulares or circular folds. They’re essentially these hills and valleys that occur inside the small intestine and they helped to increase the surface area. Now let’s get down to more detail about this layer since this is the main area of absorption in the small intestine

With the plicae circulares or those circular folds, they create these Hills and Valleys and they increase its surface area. Along each circular fold are these ridges called Villi, and they are finger-like projections on those Plica circulares. They also help to increase the surface area. So imagine all of the tissue being flat there’s very minimal surface area, but if you create ridges and on each of those ridges you create more ridges you’re increasing the surface area. This allows for better absorption. On each one of these Villi are microvilli, and those also help an absorption.

When we look inside the Villi, underneath is the Tunica submucosa, and there’s also this thing called the lacteal. A lacteal is a lymphatic capillary and it’s responsibility is to absorb lipids. What happens is that bile is released by the gallbladder, and helps to increase the absorption through these lacteals. There’s also something called the Crypt of lieberkuhn and it is where watery fluid is produced. Inside this watery fluid are peptidases and lysozyme and those are part of digestion.

Okay so let’s recap.

The small intestine is made up of those three sections, the duodenum, the jejunum, and the ileum.

In the small intestine that is where at the majority of absorption happens.

There are four layers to the small intestine, just like the rest of the GI tract. You’ve got the Tunica serosa, Tunica muscularis, Tunica mucosa, and Tunica mucosa.

The folds and Villi, and even the microvilli help to increase the surface area inside the small intestine for absorption.

The lacteals play an important role in lipid absorption as they are right underneath all of those villi and help to get all of the fats absorbed in the digestive tract.
That’s it for a lesson on the small intestine. Make sure you check out all the resources attached to this lesson. Now, go out and be your best self today, and as always, happy nursing!

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A & P

Concepts Covered:

  • Cardiovascular
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  • Skeletal System
  • Emergency Care of the Cardiac Patient
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  • Medication Administration
  • Hematologic System
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  • Preoperative Nursing
  • Integumentary Disorders
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  • Muscular System
  • Noninfectious Respiratory Disorder
  • Sensory System
  • Basics of Human Biology

Study Plan Lessons

02.03 Swan-Ganz Catheters for CCRN Review
02.04 Pulmonary Artery Wedge Pressure (PAWP) for CCRN Review
02.05 Calculating PAWP on PEEP for CCRN Review
02.07 Reading “A, C, V Waves” & PAWP Waveforms for CCRN Review
02.09 12 Lead EKG- Leads 1, 2, 3, aVL, and aVF for CCRN Review
02.10 12 Lead EKG- Lead V1-V6 for CCRN Review
02.11 12 Lead EKG- Injuries for CCRN Review
07.02 Neuro Anatomy for CCRN Review
10.01 Arterial Blood Gas (ABG) Interpretation for CCRN Review
10.02 Breath Sounds for CCRN Review
ABG Course (Arterial Blood Gas) Introduction
Adrenal Gland
Alkalosis and Acidosis Nursing Mnemonic (Kick Up, Drop Down)
Anatomy & Physiology Course Introduction
Anticholinergics – Side Effects Nursing Mnemonic (4 Can’ts)
Arterial Blood Gases Nursing Mnemonic (ROME)
Arterial Pressure Monitoring
Atropine (Atropen) Nursing Considerations
Autonomic Nervous System (ANS)
Autonomic Nervous System (ANS)
Beta 1 and Beta 2 Nursing Mnemonic (1 Heart, 2 Lungs)
Blood Grouping
Blood Plasma
Blood Pressure (BP) Control
Blood Vessels
Bone Structure
Bowel Elimination
Breathing Control
Breathing Movements
Calcium and Magnesium Imbalance for Certified Emergency Nursing (CEN)
Calculating Heart Rate
Cardiac (Heart) Physiology
Cardiac A&P Module Intro
Cardiac Cycle
Causes of Poor Gas Exchange Nursing Mnemonic (All People Can Value Lungs)
Cholinergic Crisis – Signs and Symptoms Nursing Mnemonic (SLUDGE)
Connective Tissues
Cranial Nerves
Development of Bones
Digestion & Absorption
Digestive System Anatomy
Drawing Blood
Drawing Blood from the IV
EKG (ECG) Course Introduction
EKG (ECG) Waveforms
EKG Basics – Live Tutoring Archive
Electrical A&P of the Heart
Electrical Activity in the Heart
Electroencephalography (EEG)
Electrolyte Imbalances for Progressive Care Certified Nurse (PCCN)
Electrolytes – Location in Body Nursing Mnemonic (PISO)
Electrolytes Involved in Cardiac (Heart) Conduction
Electromyography (EMG)
Epithelial (Skin) Tissues
Esophagus
Female Reproductive Anatomy (Anatomy and Physiology)
Fluid & Electrolytes Course Introduction
Fluid Volume Deficit
Formation & Excretion of Urine
Gastrointestinal (GI) Course Introduction
Glands
Health Assessment Course Introduction
Hygiene
Hyperkalemia – Causes Nursing Mnemonic (MACHINE)
Hyperkalemia – Management Nursing Mnemonic (AIRED)
Hyperkalemia – Signs and Symptoms Nursing Mnemonic (Murder)
Hypernatremia – Causes Nursing Mnemonic (MODEL)
Increase MAP Nursing Mnemonic (VAK)
Inserting a Foley (Urinary Catheter) – Male
Intro to Circulatory System
Intro to Health Assessment
Introduction to Health Assessment
Joints
Large Intestine
Liver & Gallbladder
Male Reproductive Anatomy (Anatomy and Physiology)
Membrane Potentials
Membranes
Mouth & Oropharynx
Muscle Anatomy (anatomy and physiology)
Muscle Contraction
Muscle Cytology
Muscle Physiology
Nerve Transmission
Nervous System Anatomy
Neuro Assessment Module Intro
Normal Sinus Rhythm
Nursing Care Plan (NCP) for Bronchoscopy (Procedure)
Nursing Care Plan (NCP) for Fluid Volume Deficit
Order of Lab Draws
Oxygen Delivery Module Intro
Pancreas
Parasympathomimetics (Cholinergics) Nursing Considerations
Pituitary Gland
Renal (Kidney) Acid-Base Balance
Renal (Kidney) Fluid & Electrolyte Balance
Renal (Kidney) Structure & Function
Renin Angiotensin Aldosterone System
Renin Angiotensin Aldosterone System (RAAS)
Respiratory A&P Module Intro
Respiratory Functions of Blood
Respiratory Structure & Function
Selecting THE vein
Sensory Basics
Skeletal Anatomy
Skeletal Muscle
Skin Structure & Function
Small Intestine
Sodium and Potassium Imbalance for Certified Emergency Nursing (CEN)
Spinal Cord
Stomach Video
Tattoos IV Insertion
The EKG (ECG) Graph
The Heart
Thyroid Gland
Tonicity of Solutions – Live Tutoring Archive
Trach Care
Trach Suctioning
Two pathways of the peripheral nervous system Nursing Mnemonic (SAME)
Types of Epithelial (Skin) Tissue
Urinary Elimination
Urinary System Anatomy (Anatomy and Physiology)