Fluid Shifts (Ascites) (Pleural Effusion)

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Nichole Weaver
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Included In This Lesson

Study Tools For Fluid Shifts (Ascites) (Pleural Effusion)

Fluid and Electrolytes (Cheatsheet)
Osmotic Pressure (Image)
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Outline

Overview

  1. General causes of fluid shifts
    1. Changes in osmolarity of blood
      1. More or less concentrated – causes osmotic pressure changes
    2. Capillary leak
      1. Definition – the escape of blood plasma through capillary walls to surrounding tissues, muscle compartments, organs or body cavities
  2. Third-Spacing
    1. Definition – abnormal accumulation of fluid into extracellular and extravascular spaces

Nursing Points

 

General

  1. Changes in osmolarity of the blood
    1. Increased osmolarity (more concentrated)
      1. Fluid shifts out of the cells and into the intravascular space to balance osmolarity
        1. Severe cellular dehydration
        2. May cause increased BP
      2. Examples:
        1. Hyperglycemia
        2. Hypernatremia
        3. Diabetes Insipidus
    2. Decreased osmolarity (more dilute)
      1. Fluid shifts out of the vessels and into the cells and tissues
        1. Cells swell – can’t function properly
        2. Severe edema in tissues
          1. Peripheral
          2. Cerebral
          3. Pulmonary
      2. Examples:
        1. Water intoxication
        2. Syndrome of Inappropriate Antidiuretic Hormone (SIADH)
        3. Over-Resuscitation
  2. Capillary leak
    1. Possible inflammatory process
    2. Changes the normal permeability
      1. Too much fluid allowed to escape vessels
    3. Examples
      1. Burns
      2. Sepsis
      3. Snake bites/snake venom
  3. Third Spacing
    1. Fluid escapes into a space that isn’t the vessels or cells
    2. May be “Volume Overloaded” but hypotensive
    3. Often caused by a decreased oncotic pressure (low protein) or a capillary leak
    4. Examples
      1. Ascites
        1. Liver Failure
        2. Pancreatitis
      2. Pleural Effusion
      3. Peripheral or Pulmonary Edema

Assessment

    1. Fluid shifts out of vessels
      1. Severe Hypotension
      2. Tachycardia
      3. Ischemia
    2. Fluid shifts out of cells
      1. Severe cellular dehydration
      2. Loss of appropriate cell function
    3. Fluid shifts into tissues
      1. Severe edema
      2. Compartment syndrome
    4. Fluid shifts into brain cells/tissue
      1. Cerebral edema
      2. Increased ICP
      3. Seizures

Therapeutic Management

  1. Correct underlying cause
  2. Fluid resuscitation to replace intravascular volume → improve perfusion
  3. Diuretics if appropriate
  4. Assess and monitor glucose and electrolyte levels
  5. Urinalysis – specific gravity
  6. Monitor circumference of abdomen or extremities for changes

Nursing Concepts

  1. Fluid & Electrolytes
  2. Perfusion

Patient Education

  1. Signs and symptoms to report to nurse or provider

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Transcript

In this lesson we’re going to talk about fluid shifts. What does it mean for fluid to shift and why do we care?

So, first, let’s understand what we’re talking about when we say fluid shifts. Remember we have multiple fluid compartments. There’s the space inside the cells – the intracellular space – the space in the blood vessels – the intravascular space – and the space in the tissues – the interstitial space. As we mentioned in the fluid compartments lesson, there’s a certain percentage of our body fluids contained in each space and our body prefers it to stay that way. Any time you have portions of our body fluids shifting from one space to another, it’s going to cause a lot of problems in our system. If the cells don’t have just the right amount of fluid, they’re not going to function correctly. If our blood vessels don’t have the right amount of volume, we’re going to struggle to get the blood out to our organs, right? So, let’s look at what causes these shifts.

So, there two main culprits for fluid shifts. These aren’t the ONLY reasons, but they’re the most common and the ones you really need to be aware of. One is changes in osmolarity. What happens is that the blood becomes more or less concentrated for some reason and it means the osmotic pressure changes. As you remember from the last lesson, if you have one solution that is more concentrated than another, meaning it has more solutes – or particles dissolved in it – then you will see water shifting towards it to try to balance out the concentrations. And vice versa if you have a solution that is more dilute – water is shifting away from it. The second general cause of fluid shifts is what is known as a capillary leak. Remember that the capillary walls are a semipermeable membrane – that means that they’re selective – only certain things and certain amounts of water can get through. In a capillary leak – something affects the permeability of the capillary, therefore allowing more water to escape. Think of it like a dam on a river – there might be one or two channels that allow water through to hold the river back. If we punch a bunch more holes in the dam, the water is going to rush through and it’s going to cause flooding on the other side of the dam, right? This is what can happen in a capillary leak. Water is allowed to escape the capillaries and floods into the tissues, organs, and body cavities. Let’s look at some examples of how each of these things happens.

So let’s talk about Osmolarity changes. If we see that the osmolarity of the blood is Increased – that means it’s more concentrated than normal… then fluid is going to want to shift towards the blood, right? It will shift into the intravascular space. So – what happens to the cells? The fluid comes out of them so they will shrink and become very dehydrated. Cells that are super dehydrated cannot work correctly! Some examples of this are hyperglycemia and hypernatremia – that’s excessive blood sugar or excessive sodium in the blood. That makes it more concentrated and causes severe cellular dehydration. The other thing could be Diabetes Insipidus. We talk about this in the Metabolic/Endocrine course – it causes massive water loss from the system. So rather than adding more solutes, we took away the solvent or the fluid – so that’s what makes it super concentrated. None of these conditions are good and we need to fix the problem asap.

Now, if we see that the osmolarity is decreased – that means the blood is less concentrated or more diluted than normal – then fluid is going to want to shift OUT of the intravascular space. So where would it go? It would go into the cells and into the tissues. What happens when we add more fluid somewhere? It swells, right? So we may see swollen cells – which also can’t work right – and edema. This could be peripheral edema, pulmonary edema, cerebral edema, or even something called “Third Spacing” which we’ll talk about in just a minute. Examples of this are SIADH, which we also talk about in the Metabolic/Endocrine course – it causes us to hold onto massive amounts of water. We could also see it with Water Intoxication, which is exactly what it sounds like – the patient consumes too much water. There’s even a really interesting condition called Neurogenic Polydipsia – it’s a neurological disorder that causes people to drink a TON of water – I had a patient once who literally went into the bathroom and put her mouth under the tub faucet because she was trying to drink as much water as she could. This excessive amount of water causes diluted blood, which leads to this fluid shifting out of the vessels and it is very dangerous. And then, of course, if we over-resuscitate someone, especially with hypotonic fluids, we can cause this same problem.

When we’re talking about a capillary leak, remember we’re talking about a physiologic change in the capillary permeability. It isn’t fully understood, but the thought is that some sort of inflammatory process and the chemicals released (called cytokines) are involved. Because of this change – the fluid can leak out of the capillaries into the tissues, organs, or body cavities. Common causes here are burns, sepsis, and snake bites because of the venom. Rarely we may also see this with autoimmune inflammatory conditions as well. The most common times you’ll see this are in burns and sepsis. The fluid is all shifting out of their vessels – usually third spacing, which we’ll look at in just a sec. So if the fluid isn’t in their vessels, they’re at risk for hypovolemic shock. If you want to learn more about that, check out the hypovolemic shock lesson in the Cardiac Course.

So let me clear up what Third Spacing is. I’ve mentioned it a couple times, and you may have heard it during school. Think about it this way – you have blood vessels and you have cells. In the cells is “space 1”, in the vessels is “space 2”. So when fluid shifts anywhere else – like in the tissues, for example – it’s called “third spacing”. It’s not the first or second space, it’s the third space. The two best examples of this are ascites like you see at the top here and peripheral edema at the bottom. Ascites is when the fluid ends up in the peritoneal cavity and happens a lot in liver failure and pancreatitis. Peripheral edema happens when the fluid collects in the tissues in the extremities, usually in the subcutaneous tissue. We could also see pulmonary edema, pleural effusions, or even weeping wounds – again any leakage of fluid into somewhere that isn’t the vessels or cells – a third space. This can happen for any number of reasons, including the two major things we already talked about. Another reason is a loss of oncotic pressure. Remember oncotic pressure is when the proteins pull fluid in and hold it there. If you have a loss of protein – like in liver failure – you could see the fluid leaking out into these spaces.

As I mentioned before – the fluid going anywhere it doesn’t belong is never a good thing. Let’s just quickly review some of the major complications of fluid shifts. Here are our main compartments – the vessels, the cells, and the tissues. Intravascular, Intracellular, and Interstitial. If the fluid all shifts out of the vessels – we lose blood flow and can have hypotension and even signs of shock. If the fluid all shifts out of cells, we see cellular dehydration – which means the cells will shrink up and can’t work properly. Symptoms of this, of course, depend on which cells are involved. If the fluid shifts into the tissues, we see significant edema, and we could possibly even see compartment syndrome if the pressure builds up enough to cut off circulation. And I want to specifically point out the complications if the fluid shifts around the brain cells and tissues. Remember the brain is super sensitive to these changes – we could see increased intracranial pressure and even seizures – so keeping an appropriate fluid balance is so important.

Priority nursing concepts are going to be fluid & electrolyte balance and perfusion. Remember that our #1 goal will always be to treat the cause – but we’ve got to make sure that the patient is adequately fluid resuscitated and has good perfusion. How’s their blood pressure? What about peripheral pulses? All important things to look at. We can even do circumference measurements on their extremities or abdomen to see if the fluid is still accumulating. So, look at the specific condition your patient is experiencing and prioritize your care based on that, but keep these two general priorities in mind.

So, let’s recap. We know that fluids in the body have a place where they are supposed to be and in certain proportions. If fluid shifts to a place where it doesn’t belong, it can cause quite a few issues in the body. Some common causes of fluid shifts are changes in osmolarity – because the fluid tries to shift towards the more concentrated area – and capillary leaks – because it allows more fluid to leak out of the vessels into the tissues. This can cause what’s known as third spacing, when fluid accumulates in spaces other than the cells or the vessels – spaces like tissues, organs, or body cavities. Our goal with these situations is going to be to treat the cause and try to prevent complications. Fluid shifting out of blood vessels can cause perfusion issues and fluid shifting into or out of cells will cause them to not work properly – especially in the brain.

So those are the basic important points for fluid shifts. Make sure you check out the three lessons on the types of IV fluid solutions we would use (hypotonic, isotonic, and hypertonic) and how they affect the fluid balance and the cells in the body. And don’t forget to check out all the resources attached to this lesson. Now, go out and be your best selves today. And, as always, happy nursing!!

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Study Plan Lessons

The 5-Minute Assessment (Physical assessment)
General Assessment (Physical assessment)
Integumentary (Skin) Assessment
Neuro Assessment
Head/Neck Assessment
EENT Assessment
Heart (Cardiac) and Great Vessels Assessment
Thorax and Lungs Assessment
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Lymphatic Assessment
Peripheral Vascular Assessment
Musculoskeletal Assessment
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What do you want me to know?
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Repeating Words
Denying Feelings
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Opposites
Same
Priority
Acute vs Chronic
Hierarchy of O2 Delivery
Nutrition Assessments
Abuse
Therapeutic Communication
Nurse-Patient Relationship
Thinking Like a Nurse
Critical Thinking
Prioritization
Triage
Maslow’s Hierarchy of Needs in Nursing
Overview of the Nursing Process
Skin Structure & Function
Skeletal Anatomy
Bone Structure
Development of Bones
Joints
Muscle Anatomy (anatomy and physiology)
Muscle Cytology
Skeletal Muscle
Muscle Contraction
Muscle Physiology
Nervous System Anatomy
Membrane Potentials
Nerve Transmission
Autonomic Nervous System (ANS)
Spinal Cord
Cranial Nerves
Sensory Basics
Intro to Circulatory System
The Heart
Cardiac Cycle
Electrical Activity in the Heart
Cardiac (Heart) Physiology
Blood Vessels
Blood Pressure (BP) Control
Blood Plasma
Blood Grouping
Vessels & Fluid
Respiratory Structure & Function
Breathing Movements
Breathing Control
Respiratory Functions of Blood
Digestive System Anatomy
Mouth & Oropharynx
Esophagus
Stomach Video
Small Intestine
Large Intestine
Liver & Gallbladder
Urinary System Anatomy (Anatomy and Physiology)
Renal (Kidney) Structure & Function
Renin Angiotensin Aldosterone System (RAAS)
Formation & Excretion of Urine
Renal (Kidney) Fluid & Electrolyte Balance
Renal (Kidney) Acid-Base Balance
Pituitary Gland
Thyroid Gland
Adrenal Gland
Pancreas
Male Reproductive Anatomy (Anatomy and Physiology)
Female Reproductive Anatomy (Anatomy and Physiology)
Epithelial (Skin) Tissues
Types of Epithelial (Skin) Tissue
Glands
Connective Tissues
Membranes
Fluid Compartments
Fluid Pressures
Fluid Shifts (Ascites) (Pleural Effusion)
Isotonic Solutions (IV solutions)
Hypotonic Solutions (IV solutions)
Hypertonic Solutions (IV solutions)
Potassium-K (Hyperkalemia, Hypokalemia)
Sodium-Na (Hypernatremia, Hyponatremia)
Calcium-Ca (Hypercalcemia, Hypocalcemia)
Chloride-Cl (Hyperchloremia, Hypochloremia)
Magnesium-Mg (Hypomagnesemia, Hypermagnesemia)
Phosphorus-Phos
Heart (Cardiac) Sound Locations and Auscultation
Nursing Care and Pathophysiology for Heart Failure (CHF)
Nursing Care and Pathophysiology of Myocardial Infarction (MI)
Nursing Care and Pathophysiology of Diabetes Mellitus (DM)
Nursing Care and Pathophysiology for Hemorrhagic Stroke (CVA)
Nursing Care and Pathophysiology of COPD (Chronic Obstructive Pulmonary Disease)
Nursing Care and Pathophysiology for Arterial Disorders
Nursing Care and Pathophysiology for Aortic Aneurysm
Venous Disorders (Chronic venous insufficiency, Deep venous thrombosis/DVT)
Nursing Care and Pathophysiology of Coronary Artery Disease (CAD)
GERD (Gastroesophageal Reflux Disease)
Nursing Care and Pathophysiology for Pancreatitis
Nursing Care and Pathophysiology for Diverticulosis – Diverticulitis
Nursing Care and Pathophysiology for Hemorrhoids
Nursing Care and Pathophysiology for Appendicitis
Nursing Care and Pathophysiology for Cholecystitis
Nursing Care and Pathophysiology for Hepatitis (Liver Disease)
Nursing Care and Pathophysiology for Cirrhosis (Liver Disease, Hepatic encephalopathy, Portal Hypertension, Esophageal Varices)
Nursing Care and Pathophysiology of Urinary Tract Infection (UTI)
Nursing Care and Pathophysiology of BPH (Benign Prostatic Hyperplasia)
Nursing Care and Pathophysiology for Syphilis (STI)
Nursing Care and Pathophysiology for Herpes Simplex (HSV, STI)
Nursing Care and Pathophysiology for Menopause
Nursing Care and Pathophysiology of Glomerulonephritis
Pressure Ulcers/Pressure injuries (Braden scale)
Nursing Care and Pathophysiology for Herpes Zoster – Shingles
Skin Cancer
Integumentary (Skin) Important Points
Nursing Care and Pathophysiology for Anaphylaxis
Nursing Care and Pathophysiology for Acquired Immune Deficiency Syndrome (AIDS)
Breast Cancer
Diabetes Management
Nursing Care and Pathophysiology for Sepsis
Fluid Volume Deficit
Fluid Volume Overload
Nursing Care and Pathophysiology for Rheumatoid Arthritis (RA)
Nursing Care and Pathophysiology of Osteoarthritis (OA)
Nursing Care and Pathophysiology of Osteoporosis
Nursing Care and Pathophysiology for Compartment Syndrome
Fractures
Casting & Splinting
Impulse Transmission
Cerebral Metabolism
Blood Brain Barrier (BBB)
Levels of Consciousness (LOC)
Routine Neuro Assessments
Adjunct Neuro Assessments
Brain Death v. Comatose
Intracranial Pressure ICP
Nursing Care and Pathophysiology for Multiple Sclerosis (MS)
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Nursing Care and Pathophysiology for Parkinsons
Miscellaneous Nerve Disorders
Tension and Cluster Headaches
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Nursing Care and Pathophysiology for Asthma
Nursing Care and Pathophysiology of Acute Respiratory Distress Syndrome (ARDS)
Nursing Care and Pathophysiology for Pulmonary Edema
Nursing Care and Pathophysiology for Influenza (Flu)
Nursing Care and Pathophysiology for Tuberculosis (TB)
Nursing Care and Pathophysiology of Pneumonia
Isolation Precautions (MRSA, C. Difficile, Meningitis, Pertussis, Tuberculosis, Neutropenia)
Coronavirus (COVID-19) Nursing Care and General Information
Artificial Airways
Airway Suctioning
Nursing Care and Pathophysiology for Pneumothorax & Hemothorax
Nursing Care and Pathophysiology for Pulmonary Embolism
Lung Sounds
Alveoli & Atelectasis
Gas Exchange
Wound Care – Assessment
Aortic Aneurysm – Management Nursing Mnemonic (CRAM)
Aortic Aneurysm – Thoracic signs Nursing Mnemonic (PEE BADS)
Bacterial Endocarditis – Symptoms Nursing Mnemonic (Be Joan Of Arc)
Cardiac Valves Blood Flow Nursing Mnemonic (Toilet Paper my Ass)
Circulatory Checks (5 P’s) Nursing Mnemonic (The 5 P’s)
Coronary Arteries – Location Nursing Mnemonic (I have a RIGHT to CAMP if you LEFT off the AC)
Cor Pulmonale – Signs & Symptoms Nursing Mnemonic (Please Read His Text)
CHF Treatment Nursing Mnemonic (UNLOAD FAST)
Cyanotic Defects Nursing Mnemonic (The 4 T’s)
Heart Failure-Left-Sided Nursing Mnemonic (CHOP)
Heart Failure-Origin Nursing Mnemonic (Left – Lung|Right – Rest)
Heart Failure – Right Sided Nursing Mnemonic (HEAD)
Heart Sounds Nursing Mnemonic (APE To Man – All People Enjoy Time Magazine)
Hypertension- Complications Nursing Mnemonic (The 4 C’s)
Hypertension – Nursing care Nursing Mnemonic (DIURETIC)
Increase MAP Nursing Mnemonic (VAK)
Murmur locations Nursing Mnemonic (hARD ASS MRS. MSD)
Shock – Signs and symptoms Nursing Mnemonic (TV SPARC CUBE)
Vascular Disease – Deep Vein Thrombosis Nursing Mnemonic (HIS Leg Might Fall off)
Vascular disease – Raynaud’s symptoms Nursing Mnemonic (COLD HAND)
Digestion & Absorption
Nutrition-related Diseases
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Prioritizing Assessments
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Critical Incident Management
Aggressive & Violent Patients
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Trauma Survey
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Aneurysm & Dissection
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Hypertensive Emergency
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Ventilator Settings
Acute Confusion
Intracranial Hemorrhage
Increased Intracranial Pressure
Stroke (CVA) Management in the ER
Seizure Management in the ER
Sodium and Potassium Imbalance for Certified Emergency Nursing (CEN)