SlideShare a Scribd company logo
1 of 13
Download to read offline
THE NEURAL MEMBRANE
       AT REST
ELECTRICAL PROPERTIES
Simple reflex : information needs to be quickly transmitted to the CNS and back

Information is transmitted through action potentials (change in the electrical properties of the
membrane)

Cells able to generate an AP have excitable membrane

At rest, these cells have a inside negative electrical charge (resting membrane potential) that
become positive during the AP
CYTOSOLIC AND EXTRACELLULAR FLUID
Water is the key ingredient in intracellular and extracellular fluid
Key feature – uneven distribution of electrical charge (O has a net negative
charge)




Ions are atoms or molecules with a net electrical charge dissolved in the water
Salz for example is a crystal of Sodium (Na+) and Chloride (Cl-)
Monovalent Ion: Difference between protons and electrons =1,
Divalent Ion: Difference between protons and electrons =2,
cation (+), anion (-)



When the crystal breaks down spheres of
hydration -layer of water are attracted to the ion
The orientation of the water molecules is
determined by the valence of the ion
IONS INVOLVED IN CELLULAR PHYSIOLOGY
 Sodium               Calcium




            +                      2+



Potassium             Chloride




                +
                                    -
THE PHOSPHOLIPID MEMBRANE
Hydrophilic: Dissolve in water due to uneven electrical charge (e.g., salt,
proteins, carbohydrates)
Hydrophobic: Does not dissolve in water due to even electrical charge (e.g., oil,
lipids in general)

                                The Phospholipid Bilayer


                                                           Hydrophilic




                                                           Hydrophobic




Resting and Action potentials depend on special proteins that are inserted in the
membrane
THE PROTEIN

Proteins are molecules assembled by combination of different amino acids (20 types)




                                                             Central alpha
                                                               carbon




                                                                R group

                                                  Amino group          Carboxyl group
THE PROTEIN STRUCTURE


              Peptide bond




Primary
                             Tertiary




             Secondary


                                        Quaternary
CHANNEL PROTEINS

Ion Channels
They form a pore through the membrane that   hydrophilic
is ion selective
They can be opened and closed (gated)
by changing in the local microenvironment
of the membrane



                     hydrophobic


Ion Pumps
Formed by membrane spanning proteins
Uses energy from ATP breakdown
Neuronal signaling
THE MOVEMENT OF IONS
Diffusion: movement of ion due to concentration levels
Dissolved ions tend to distribute evenly by following down concentration gradient
Concentration gradient = difference of concentration of an ion across the membrane




Electricity
Electrical current (I, measured in Amperes) represents ion movement.
It’s regulated by
1) electrical conductance (g, measured in Siemens) or electrical
     resistance (R, measured in Ω): ability (or inability) of an electrical
     charge to migrate from one point to another
2) electrical potential (V, measured in volts): difference in charge
between cathode and anode
THE MOVEMENT OF IONS
Electrical current flows across the membrane by
Ohm’s law relationship
I =gV or I =V/R




                                  Membrane potential: Voltage across the
                                  neuronal membrane.

                                  The resting potential is typically -65 mV



                                                  …let’ see why…
EQUILIBRIUM POTENTIAL
Example 1




                            Equilibrium is reached when
                            diffusional and electrical
Example 2                   forces are equal and opposite
                            (equilibrium potential, Eion)
MEMBRANE POTENTIAL
In the membrane ions have different concentration between inside and outside,
and this gradient is established by action of ionic pumps, that use energy in
order to move ions against concentration forces




     Membrane permeability determines membrane resting and action potentials
MEMBRANE POTENTIAL

  Membrane permeability determines membrane resting and action potentials

Membrane rest potential is determined by the higher number of K vs. Na channels
open (resting potential close to Ek potential)

More Related Content

What's hot

Recent developments in microbial fuel cell
Recent developments in microbial fuel cellRecent developments in microbial fuel cell
Recent developments in microbial fuel cellsreenath vn
 
Conducting Polymers
Conducting Polymers Conducting Polymers
Conducting Polymers AbhinavS14
 
Carbohydrates, Proteins, Lipids and Nucleic Acids
Carbohydrates, Proteins, Lipids and Nucleic AcidsCarbohydrates, Proteins, Lipids and Nucleic Acids
Carbohydrates, Proteins, Lipids and Nucleic AcidsCris Gamit
 
Maniga Sumida Stone Moore Moore Gust J Porphyr Phthalocyan 3 1999 32
Maniga Sumida Stone Moore Moore Gust J Porphyr Phthalocyan 3 1999 32Maniga Sumida Stone Moore Moore Gust J Porphyr Phthalocyan 3 1999 32
Maniga Sumida Stone Moore Moore Gust J Porphyr Phthalocyan 3 1999 32jpsumida
 
Membranes new
Membranes newMembranes new
Membranes newMUBOSScz
 
Conducting polymers
Conducting polymersConducting polymers
Conducting polymersSouma Ghosh
 
Carbenes - octet defying molecules
Carbenes - octet defying moleculesCarbenes - octet defying molecules
Carbenes - octet defying moleculesRoshen Reji Idiculla
 
Synthesis of low spin iron complex as potential redox mediator for DSCs
Synthesis of low spin iron complex as potential redox mediator for DSCsSynthesis of low spin iron complex as potential redox mediator for DSCs
Synthesis of low spin iron complex as potential redox mediator for DSCsdanielmorales91
 
fuel cells an all kind of fuel cells or working
fuel cells an all kind of fuel cells or workingfuel cells an all kind of fuel cells or working
fuel cells an all kind of fuel cells or workingHaleemullahMShafiq
 
jz300725d_Ramirez_Presentation
jz300725d_Ramirez_Presentationjz300725d_Ramirez_Presentation
jz300725d_Ramirez_Presentationjpcoffice
 
Microbial Fuel Cell
Microbial Fuel CellMicrobial Fuel Cell
Microbial Fuel Cellamrbfe
 
Unit 6 photosynthesis
Unit 6 photosynthesisUnit 6 photosynthesis
Unit 6 photosynthesistsebishi
 
SYNTHESIS AND CHARACTERIZATION OF CONDUCTING POLYMERS: A REVIEW PAPER
SYNTHESIS AND CHARACTERIZATION OF CONDUCTING POLYMERS: A REVIEW PAPERSYNTHESIS AND CHARACTERIZATION OF CONDUCTING POLYMERS: A REVIEW PAPER
SYNTHESIS AND CHARACTERIZATION OF CONDUCTING POLYMERS: A REVIEW PAPERpaperpublications3
 
Nano Watt fueling from Microbial fuel Cell using Black tea waste
Nano Watt fueling from Microbial fuel Cell using Black tea wasteNano Watt fueling from Microbial fuel Cell using Black tea waste
Nano Watt fueling from Microbial fuel Cell using Black tea wasteAman Anand
 
Nanostructured fe2 o3 platform for the electrochemical sensing of folic acid
Nanostructured fe2 o3 platform for the electrochemical sensing of folic acidNanostructured fe2 o3 platform for the electrochemical sensing of folic acid
Nanostructured fe2 o3 platform for the electrochemical sensing of folic acidScience Padayatchi
 

What's hot (20)

Recent developments in microbial fuel cell
Recent developments in microbial fuel cellRecent developments in microbial fuel cell
Recent developments in microbial fuel cell
 
nihms124175
nihms124175nihms124175
nihms124175
 
Conducting Polymers
Conducting Polymers Conducting Polymers
Conducting Polymers
 
Conducting polymers
Conducting polymersConducting polymers
Conducting polymers
 
Carbohydrates, Proteins, Lipids and Nucleic Acids
Carbohydrates, Proteins, Lipids and Nucleic AcidsCarbohydrates, Proteins, Lipids and Nucleic Acids
Carbohydrates, Proteins, Lipids and Nucleic Acids
 
Conducting polymers
Conducting polymersConducting polymers
Conducting polymers
 
Maniga Sumida Stone Moore Moore Gust J Porphyr Phthalocyan 3 1999 32
Maniga Sumida Stone Moore Moore Gust J Porphyr Phthalocyan 3 1999 32Maniga Sumida Stone Moore Moore Gust J Porphyr Phthalocyan 3 1999 32
Maniga Sumida Stone Moore Moore Gust J Porphyr Phthalocyan 3 1999 32
 
Membranes new
Membranes newMembranes new
Membranes new
 
Reaction Intermediate
Reaction IntermediateReaction Intermediate
Reaction Intermediate
 
Conducting polymers
Conducting polymersConducting polymers
Conducting polymers
 
Carbenes - octet defying molecules
Carbenes - octet defying moleculesCarbenes - octet defying molecules
Carbenes - octet defying molecules
 
Synthesis of low spin iron complex as potential redox mediator for DSCs
Synthesis of low spin iron complex as potential redox mediator for DSCsSynthesis of low spin iron complex as potential redox mediator for DSCs
Synthesis of low spin iron complex as potential redox mediator for DSCs
 
fuel cells an all kind of fuel cells or working
fuel cells an all kind of fuel cells or workingfuel cells an all kind of fuel cells or working
fuel cells an all kind of fuel cells or working
 
Research Poster
Research PosterResearch Poster
Research Poster
 
jz300725d_Ramirez_Presentation
jz300725d_Ramirez_Presentationjz300725d_Ramirez_Presentation
jz300725d_Ramirez_Presentation
 
Microbial Fuel Cell
Microbial Fuel CellMicrobial Fuel Cell
Microbial Fuel Cell
 
Unit 6 photosynthesis
Unit 6 photosynthesisUnit 6 photosynthesis
Unit 6 photosynthesis
 
SYNTHESIS AND CHARACTERIZATION OF CONDUCTING POLYMERS: A REVIEW PAPER
SYNTHESIS AND CHARACTERIZATION OF CONDUCTING POLYMERS: A REVIEW PAPERSYNTHESIS AND CHARACTERIZATION OF CONDUCTING POLYMERS: A REVIEW PAPER
SYNTHESIS AND CHARACTERIZATION OF CONDUCTING POLYMERS: A REVIEW PAPER
 
Nano Watt fueling from Microbial fuel Cell using Black tea waste
Nano Watt fueling from Microbial fuel Cell using Black tea wasteNano Watt fueling from Microbial fuel Cell using Black tea waste
Nano Watt fueling from Microbial fuel Cell using Black tea waste
 
Nanostructured fe2 o3 platform for the electrochemical sensing of folic acid
Nanostructured fe2 o3 platform for the electrochemical sensing of folic acidNanostructured fe2 o3 platform for the electrochemical sensing of folic acid
Nanostructured fe2 o3 platform for the electrochemical sensing of folic acid
 

Viewers also liked

Viewers also liked (7)

第五章第三节
第五章第三节第五章第三节
第五章第三节
 
Ch09
Ch09Ch09
Ch09
 
Facebook
FacebookFacebook
Facebook
 
Camilas animal puzzle
Camilas animal puzzleCamilas animal puzzle
Camilas animal puzzle
 
gita
gitagita
gita
 
Ch08
Ch08Ch08
Ch08
 
Ch02
Ch02Ch02
Ch02
 

Similar to Ch03

RESTING MEMBRANE POTENTIAL BY DR QAZI IMTIAZ RASOOL
RESTING MEMBRANE POTENTIAL BY DR QAZI IMTIAZ RASOOLRESTING MEMBRANE POTENTIAL BY DR QAZI IMTIAZ RASOOL
RESTING MEMBRANE POTENTIAL BY DR QAZI IMTIAZ RASOOLDr Qazi Imtiaz RASOOL
 
P.resting membrane potential by Artist Rimsha
P.resting membrane potential by Artist Rimsha P.resting membrane potential by Artist Rimsha
P.resting membrane potential by Artist Rimsha Artist Rimsha
 
Membrane potential + action potential
Membrane  potential + action potentialMembrane  potential + action potential
Membrane potential + action potentialMubashir Iqbal
 
Membrane potential + action potential
Membrane  potential + action potentialMembrane  potential + action potential
Membrane potential + action potentialMubashir Iqbal
 
Electrochemical-reactions
Electrochemical-reactionsElectrochemical-reactions
Electrochemical-reactionsSiyavula
 
Bioelectric potential
Bioelectric potentialBioelectric potential
Bioelectric potentialanju jha
 
2. BIOPHYSICS – Membrane Potentials and Action Potential.pptx
2. BIOPHYSICS – Membrane Potentials and Action Potential.pptx2. BIOPHYSICS – Membrane Potentials and Action Potential.pptx
2. BIOPHYSICS – Membrane Potentials and Action Potential.pptxDr Gaurav Saxena
 
Ns5 Synaptic Transmission
Ns5 Synaptic TransmissionNs5 Synaptic Transmission
Ns5 Synaptic Transmissionmedical
 
Electrochemistry and the processes of energy conversion in
Electrochemistry and the processes of energy conversion inElectrochemistry and the processes of energy conversion in
Electrochemistry and the processes of energy conversion inEndang Nurtriningsih
 
Ramakrishna notes.pdf
Ramakrishna notes.pdfRamakrishna notes.pdf
Ramakrishna notes.pdfJayakumar T
 
Excitable Cells: Revision Notes
Excitable Cells: Revision NotesExcitable Cells: Revision Notes
Excitable Cells: Revision Notesmeducationdotnet
 
Cellular electrophysiology
Cellular electrophysiologyCellular electrophysiology
Cellular electrophysiologyManju Chhetri
 
Membrane potential and its ionic basis.
Membrane potential and its ionic basis.Membrane potential and its ionic basis.
Membrane potential and its ionic basis.Christiane Riedinger
 
Electrophorosis.pptx
Electrophorosis.pptxElectrophorosis.pptx
Electrophorosis.pptxPawanDhamala1
 
Bio Potential and Bio Electrodes
Bio Potential and Bio ElectrodesBio Potential and Bio Electrodes
Bio Potential and Bio ElectrodesBurdwan University
 

Similar to Ch03 (20)

RESTING MEMBRANE POTENTIAL BY DR QAZI IMTIAZ RASOOL
RESTING MEMBRANE POTENTIAL BY DR QAZI IMTIAZ RASOOLRESTING MEMBRANE POTENTIAL BY DR QAZI IMTIAZ RASOOL
RESTING MEMBRANE POTENTIAL BY DR QAZI IMTIAZ RASOOL
 
P.resting membrane potential by Artist Rimsha
P.resting membrane potential by Artist Rimsha P.resting membrane potential by Artist Rimsha
P.resting membrane potential by Artist Rimsha
 
Nernst Equation
Nernst EquationNernst Equation
Nernst Equation
 
Membrane potential + action potential
Membrane  potential + action potentialMembrane  potential + action potential
Membrane potential + action potential
 
Membrane potential + action potential
Membrane  potential + action potentialMembrane  potential + action potential
Membrane potential + action potential
 
Polyparaphenelene vinylene by pushkar badgujar
Polyparaphenelene vinylene by pushkar badgujarPolyparaphenelene vinylene by pushkar badgujar
Polyparaphenelene vinylene by pushkar badgujar
 
Electrochemical-reactions
Electrochemical-reactionsElectrochemical-reactions
Electrochemical-reactions
 
Membrane potentials
Membrane potentialsMembrane potentials
Membrane potentials
 
Bioelectric potential
Bioelectric potentialBioelectric potential
Bioelectric potential
 
2. BIOPHYSICS – Membrane Potentials and Action Potential.pptx
2. BIOPHYSICS – Membrane Potentials and Action Potential.pptx2. BIOPHYSICS – Membrane Potentials and Action Potential.pptx
2. BIOPHYSICS – Membrane Potentials and Action Potential.pptx
 
Electrochemistry
ElectrochemistryElectrochemistry
Electrochemistry
 
Ion channels
Ion channelsIon channels
Ion channels
 
Ns5 Synaptic Transmission
Ns5 Synaptic TransmissionNs5 Synaptic Transmission
Ns5 Synaptic Transmission
 
Electrochemistry and the processes of energy conversion in
Electrochemistry and the processes of energy conversion inElectrochemistry and the processes of energy conversion in
Electrochemistry and the processes of energy conversion in
 
Ramakrishna notes.pdf
Ramakrishna notes.pdfRamakrishna notes.pdf
Ramakrishna notes.pdf
 
Excitable Cells: Revision Notes
Excitable Cells: Revision NotesExcitable Cells: Revision Notes
Excitable Cells: Revision Notes
 
Cellular electrophysiology
Cellular electrophysiologyCellular electrophysiology
Cellular electrophysiology
 
Membrane potential and its ionic basis.
Membrane potential and its ionic basis.Membrane potential and its ionic basis.
Membrane potential and its ionic basis.
 
Electrophorosis.pptx
Electrophorosis.pptxElectrophorosis.pptx
Electrophorosis.pptx
 
Bio Potential and Bio Electrodes
Bio Potential and Bio ElectrodesBio Potential and Bio Electrodes
Bio Potential and Bio Electrodes
 

More from Jan Stern

More from Jan Stern (20)

Kapitel 13
Kapitel 13Kapitel 13
Kapitel 13
 
Kapitel 11
Kapitel 11Kapitel 11
Kapitel 11
 
Kapitel 10
Kapitel 10Kapitel 10
Kapitel 10
 
Kapitel 9
Kapitel 9Kapitel 9
Kapitel 9
 
Kapitel 8
Kapitel 8Kapitel 8
Kapitel 8
 
Kapitel 7
Kapitel 7Kapitel 7
Kapitel 7
 
Kapitel 6
Kapitel 6Kapitel 6
Kapitel 6
 
Kapitel 5
Kapitel 5Kapitel 5
Kapitel 5
 
Kapitel 4
Kapitel 4Kapitel 4
Kapitel 4
 
Kapitel 3
Kapitel 3Kapitel 3
Kapitel 3
 
Kapitel 2
Kapitel 2Kapitel 2
Kapitel 2
 
Kapitel 1
Kapitel 1Kapitel 1
Kapitel 1
 
Kapitel 14
Kapitel 14Kapitel 14
Kapitel 14
 
Kapitel 12
Kapitel 12Kapitel 12
Kapitel 12
 
Statistik
StatistikStatistik
Statistik
 
Vo8 2010-short
Vo8 2010-shortVo8 2010-short
Vo8 2010-short
 
Vo7 2010
Vo7 2010Vo7 2010
Vo7 2010
 
Vo6 2010neu
Vo6 2010neuVo6 2010neu
Vo6 2010neu
 
Vo5 2010-short
Vo5 2010-shortVo5 2010-short
Vo5 2010-short
 
Vo4 2010 neu
Vo4 2010 neuVo4 2010 neu
Vo4 2010 neu
 

Recently uploaded

Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostLeverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostZilliz
 
"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr Bagan"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr BaganFwdays
 
Transcript: New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
Transcript: New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024Transcript: New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
Transcript: New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024BookNet Canada
 
Unraveling Multimodality with Large Language Models.pdf
Unraveling Multimodality with Large Language Models.pdfUnraveling Multimodality with Large Language Models.pdf
Unraveling Multimodality with Large Language Models.pdfAlex Barbosa Coqueiro
 
Training state-of-the-art general text embedding
Training state-of-the-art general text embeddingTraining state-of-the-art general text embedding
Training state-of-the-art general text embeddingZilliz
 
Human Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsHuman Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsMark Billinghurst
 
Developer Data Modeling Mistakes: From Postgres to NoSQL
Developer Data Modeling Mistakes: From Postgres to NoSQLDeveloper Data Modeling Mistakes: From Postgres to NoSQL
Developer Data Modeling Mistakes: From Postgres to NoSQLScyllaDB
 
Commit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyCommit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyAlfredo García Lavilla
 
Search Engine Optimization SEO PDF for 2024.pdf
Search Engine Optimization SEO PDF for 2024.pdfSearch Engine Optimization SEO PDF for 2024.pdf
Search Engine Optimization SEO PDF for 2024.pdfRankYa
 
Vector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesVector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesZilliz
 
Story boards and shot lists for my a level piece
Story boards and shot lists for my a level pieceStory boards and shot lists for my a level piece
Story boards and shot lists for my a level piececharlottematthew16
 
WordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your BrandWordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your Brandgvaughan
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupFlorian Wilhelm
 
The Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdfThe Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdfSeasiaInfotech2
 
"Debugging python applications inside k8s environment", Andrii Soldatenko
"Debugging python applications inside k8s environment", Andrii Soldatenko"Debugging python applications inside k8s environment", Andrii Soldatenko
"Debugging python applications inside k8s environment", Andrii SoldatenkoFwdays
 
"LLMs for Python Engineers: Advanced Data Analysis and Semantic Kernel",Oleks...
"LLMs for Python Engineers: Advanced Data Analysis and Semantic Kernel",Oleks..."LLMs for Python Engineers: Advanced Data Analysis and Semantic Kernel",Oleks...
"LLMs for Python Engineers: Advanced Data Analysis and Semantic Kernel",Oleks...Fwdays
 
Connect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck PresentationConnect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck PresentationSlibray Presentation
 
Powerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time ClashPowerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time Clashcharlottematthew16
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticscarlostorres15106
 

Recently uploaded (20)

Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostLeverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
 
"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr Bagan"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr Bagan
 
Transcript: New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
Transcript: New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024Transcript: New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
Transcript: New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
 
Unraveling Multimodality with Large Language Models.pdf
Unraveling Multimodality with Large Language Models.pdfUnraveling Multimodality with Large Language Models.pdf
Unraveling Multimodality with Large Language Models.pdf
 
Training state-of-the-art general text embedding
Training state-of-the-art general text embeddingTraining state-of-the-art general text embedding
Training state-of-the-art general text embedding
 
Human Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsHuman Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR Systems
 
Developer Data Modeling Mistakes: From Postgres to NoSQL
Developer Data Modeling Mistakes: From Postgres to NoSQLDeveloper Data Modeling Mistakes: From Postgres to NoSQL
Developer Data Modeling Mistakes: From Postgres to NoSQL
 
Commit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyCommit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easy
 
Search Engine Optimization SEO PDF for 2024.pdf
Search Engine Optimization SEO PDF for 2024.pdfSearch Engine Optimization SEO PDF for 2024.pdf
Search Engine Optimization SEO PDF for 2024.pdf
 
Vector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesVector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector Databases
 
Story boards and shot lists for my a level piece
Story boards and shot lists for my a level pieceStory boards and shot lists for my a level piece
Story boards and shot lists for my a level piece
 
WordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your BrandWordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your Brand
 
Streamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project SetupStreamlining Python Development: A Guide to a Modern Project Setup
Streamlining Python Development: A Guide to a Modern Project Setup
 
The Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdfThe Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdf
 
"Debugging python applications inside k8s environment", Andrii Soldatenko
"Debugging python applications inside k8s environment", Andrii Soldatenko"Debugging python applications inside k8s environment", Andrii Soldatenko
"Debugging python applications inside k8s environment", Andrii Soldatenko
 
"LLMs for Python Engineers: Advanced Data Analysis and Semantic Kernel",Oleks...
"LLMs for Python Engineers: Advanced Data Analysis and Semantic Kernel",Oleks..."LLMs for Python Engineers: Advanced Data Analysis and Semantic Kernel",Oleks...
"LLMs for Python Engineers: Advanced Data Analysis and Semantic Kernel",Oleks...
 
Connect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck PresentationConnect Wave/ connectwave Pitch Deck Presentation
Connect Wave/ connectwave Pitch Deck Presentation
 
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptxE-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
E-Vehicle_Hacking_by_Parul Sharma_null_owasp.pptx
 
Powerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time ClashPowerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time Clash
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
 

Ch03

  • 2. ELECTRICAL PROPERTIES Simple reflex : information needs to be quickly transmitted to the CNS and back Information is transmitted through action potentials (change in the electrical properties of the membrane) Cells able to generate an AP have excitable membrane At rest, these cells have a inside negative electrical charge (resting membrane potential) that become positive during the AP
  • 3. CYTOSOLIC AND EXTRACELLULAR FLUID Water is the key ingredient in intracellular and extracellular fluid Key feature – uneven distribution of electrical charge (O has a net negative charge) Ions are atoms or molecules with a net electrical charge dissolved in the water Salz for example is a crystal of Sodium (Na+) and Chloride (Cl-) Monovalent Ion: Difference between protons and electrons =1, Divalent Ion: Difference between protons and electrons =2, cation (+), anion (-) When the crystal breaks down spheres of hydration -layer of water are attracted to the ion The orientation of the water molecules is determined by the valence of the ion
  • 4. IONS INVOLVED IN CELLULAR PHYSIOLOGY Sodium Calcium + 2+ Potassium Chloride + -
  • 5. THE PHOSPHOLIPID MEMBRANE Hydrophilic: Dissolve in water due to uneven electrical charge (e.g., salt, proteins, carbohydrates) Hydrophobic: Does not dissolve in water due to even electrical charge (e.g., oil, lipids in general) The Phospholipid Bilayer Hydrophilic Hydrophobic Resting and Action potentials depend on special proteins that are inserted in the membrane
  • 6. THE PROTEIN Proteins are molecules assembled by combination of different amino acids (20 types) Central alpha carbon R group Amino group Carboxyl group
  • 7. THE PROTEIN STRUCTURE Peptide bond Primary Tertiary Secondary Quaternary
  • 8. CHANNEL PROTEINS Ion Channels They form a pore through the membrane that hydrophilic is ion selective They can be opened and closed (gated) by changing in the local microenvironment of the membrane hydrophobic Ion Pumps Formed by membrane spanning proteins Uses energy from ATP breakdown Neuronal signaling
  • 9. THE MOVEMENT OF IONS Diffusion: movement of ion due to concentration levels Dissolved ions tend to distribute evenly by following down concentration gradient Concentration gradient = difference of concentration of an ion across the membrane Electricity Electrical current (I, measured in Amperes) represents ion movement. It’s regulated by 1) electrical conductance (g, measured in Siemens) or electrical resistance (R, measured in Ω): ability (or inability) of an electrical charge to migrate from one point to another 2) electrical potential (V, measured in volts): difference in charge between cathode and anode
  • 10. THE MOVEMENT OF IONS Electrical current flows across the membrane by Ohm’s law relationship I =gV or I =V/R Membrane potential: Voltage across the neuronal membrane. The resting potential is typically -65 mV …let’ see why…
  • 11. EQUILIBRIUM POTENTIAL Example 1 Equilibrium is reached when diffusional and electrical Example 2 forces are equal and opposite (equilibrium potential, Eion)
  • 12. MEMBRANE POTENTIAL In the membrane ions have different concentration between inside and outside, and this gradient is established by action of ionic pumps, that use energy in order to move ions against concentration forces Membrane permeability determines membrane resting and action potentials
  • 13. MEMBRANE POTENTIAL Membrane permeability determines membrane resting and action potentials Membrane rest potential is determined by the higher number of K vs. Na channels open (resting potential close to Ek potential)