Homeostasis

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Outline

Overview

  1. Homeostasis- Life maintaining balance in both chemical and physical conditions
    1. Adaptive response- refers to changes in brain/cell activity to maintain homeostasis
      1. Positive feedback- stimulus enhances/increases the condition (less common)
        1. examples: Blood clotting, childbirth, breastfeeding
      2. Negative Feedback- stimulus reduces or shuts off the condition (more common type of feedback)
        1. examples osmoregulation, blood pH, thermoregulation, Blood sugar, Blodd calcium
    2. Like an adaptive response in cells = cellular dysfunction (aka disease)

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Transcript

Today is are all about maintaining a balance in life….aka homeostasis!

SO we will start by breaking down the word, homeo meaning same and stasis means keeping the same status. And whether we are thinking about it or not, or body, our cells are working very hard to keep things balanced.  And its not like it can find a balance and chill out. We are always changing…. As energy flows in and out of us matter is cycling and creating change and our cells must observe these changes and adjust when needed. That adjustment is referred to as a response and it had better happen! So change must occur (no energy entering our cells they die) and we must respond to those changes accordingly.

So changes in and around are cells are dealt with through feedback mechanisms. A stimulus makes a cell or an organ aware of a change and the control center then generates an appropriate response. There are 2 type of feedback mechanisms…. one in which the response to a stimulus increases the original state. Like in childbirth or blood clotting, the other called negative feedback receives a signal and actually decreases or shuts off the original stimulus. In this manner most things are regulated in out bodies… blood calcium, body temperature, blood sugar. 

So, for example, our cells control what can enter and leave a cell. So maintaining water balance is vital to life and requires our cells to be in the know and adjust accordingly. If solute concentrations are getting to high and water is low we just might need some ADH and trigger some thirst. The flip would require water loss aldosterone to the rescue and urination would occur. 

Blood pH is balanced thanks to these two buffers that can be made. Should cell fins the pH too low, bicarbonates are secreted in the blood, too high of a pH and release carbonic acid. Body temp too low? Let’s generate some goose bumps, shiver and constrict blood flow in skin. Feelin’ hot, hot, hot….. send that hot blood to the surface by dilating those capillaries in the skin and releasing that sweat. 

So you can imagine…. cells sending signals,  receiving and then responding is vital… any part of this not happening and you’ve got dysfunction… more affectionately called disease.  Here is a great example of a disease… diabetes. Blood sugar not regulated (due to lack of hormone insulin) or cell’s not responding to insulin (stubborn things!). 

So in summary…. homeostasis is all about that balance.

Feedback mechanisms are in place to alert a change and respond accordingly. Postive feedback is just gonna amplify the signal…this is rare. And negative feedback is gonna shut that signal down.

And when cells don’t respond for whatever reason…. we’ve got a disease folks.

Thank you so much for reviewing homeostasis with me today. No go out and be your best self and happy nursing!

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NCLEX

Concepts Covered:

  • Basics of Human Biology
  • Renal Disorders
  • Intraoperative Nursing
  • Preoperative Nursing
  • Perioperative Nursing Roles
  • Basics of NCLEX
  • Test Taking Strategies
  • Concepts of Population Health
  • Respiratory System
  • Endocrine System
  • Urinary System
  • Communication
  • Oncologic Disorders
  • Fundamentals of Emergency Nursing
  • Prioritization
  • Delegation
  • Emotions and Motivation
  • Documentation and Communication
  • Eating Disorders
  • Respiratory Disorders
  • Noninfectious Respiratory Disorder
  • Shock
  • Disorders of Pancreas
  • Neurological Emergencies
  • Central Nervous System Disorders – Brain
  • Emergency Care of the Neurological Patient
  • Circulatory System
  • Cardiac Disorders
  • Emergency Care of the Cardiac Patient
  • Hematologic Disorders
  • Hematologic Disorders
  • Medication Administration

Study Plan Lessons

Homeostasis
Nursing Care and Pathophysiology for Rhabdomyolysis
Malignant Hyperthermia
Intubation in the OR
Preoperative (Preop)Assessment
Perioperative Nursing Roles
Purpose of Nursing Care Plans
Continuity of Care
Disasters & Bioterrorism
Practice Settings
Breathing Movements
Breathing Control
Respiratory Functions of Blood
Thyroid Gland
Pituitary Gland
Pancreas
Adrenal Gland
Renal (Kidney) Acid-Base Balance
Formation & Excretion of Urine
Renal (Kidney) Structure & Function
Renal (Kidney) Fluid & Electrolyte Balance
Respiratory Structure & Function
Communicating with Other Departments
Confidence in Communication
Communicating with Patients
Communicating with Family Members
Communicating with UAPs
Communicating with Other Nurses
Communicating with Providers
Giving Handoff Report
Leukemia
Pediatric Oncology Basics
Anion Gap
Triage
Prioritization
Delegation
Maslow’s Hierarchy of Needs in Nursing
Handoff Report
SBAR Communication
Admissions, Discharges, and Transfers
Potassium-K (Hyperkalemia, Hypokalemia)
ABGs Nursing Normal Lab Values
ABG (Arterial Blood Gas) Interpretation-The Basics
ROME – ABG (Arterial Blood Gas) Interpretation
ABGs Tic-Tac-Toe interpretation Method
Respiratory Acidosis (interpretation and nursing interventions)
Respiratory Alkalosis
Metabolic Acidosis (interpretation and nursing diagnosis)
Metabolic Alkalosis
Lactic Acid
Base Excess & Deficit
Nursing Care and Pathophysiology of Diabetic Ketoacidosis (DKA)
Oxygen Delivery Module Intro
Hierarchy of O2 Delivery
Artificial Airways
Vent Alarms
Stroke Assessment (CVA)
Seizure Therapeutic Management
Nursing Care and Pathophysiology for Seizure
Nursing Care and Pathophysiology for Cardiogenic Shock
Normal Sinus Rhythm
Sinus Bradycardia
Sinus Tachycardia
Atrial Flutter
Atrial Fibrillation (A Fib)
Premature Atrial Contraction (PAC)
Supraventricular Tachycardia (SVT)
Premature Ventricular Contraction (PVC)
Ventricular Tachycardia (V-tach)
Ventricular Fibrillation (V Fib)
1st Degree AV Heart Block
2nd Degree AV Heart Block Type 1 (Mobitz I, Wenckebach)
2nd Degree AV Heart Block Type 2 (Mobitz II)
3rd Degree AV Heart Block (Complete Heart Block)
Sickle Cell Anemia
Hemophilia
Epoetin Alfa
6 Rights of Medication Administration