Nerve Cells, Flux, Chemical and Electrical Potentials, Nerst Equation, Action Potential, RC Circuits, Time and Space Constants, Myelin Effect, Resting Potential, Synapses, Brain Imaging, Learning and Memory gibi konuları akıcı ve hızlı bir anlatımla öğrenip, özenle seçilmiş çıkmış sınav sorularını çözdüğümüz kursumuzla istediğin notlara ulaşabilirsin.
Püf noktaları veya tamamen konuları unutmuş olabilirsin ama dert etme. Kısa bir süre içerisinde midterm'e hazır olacaksın.
Week-1: Brain, Nerve Cells and Flux
Brain I: General Features and Functions
Brain II: Anatomic Parts
Neurons, Glial Cells and Synapses
Diffusion I: Introduction
Diffusion II
Passive and Active Transport
Flux I: Introduction
Flux II: The Formula
Flux III: Applying on Macro Sizes
Flux IV: Applying on Micro Sizes
Exam-like Questions: 1
Exam-like Questions: 2
Exam-like Questions: 3
Exam-like Questions: 4
Exam-like Questions: 5
Exam-like Questions: 6
Exam-like Questions: 7
Exam-like Questions: 8
Special Question: 1
Special Question: 2
Special Question: 3
Week-2: Chemical & Electrical Potentials and Nernst Equation
Ion Composition of Cells
How Are Ions Transported?
Chemical Potential Energy I
Chemical Potential Energy II
Chemical Potential Energy III
Electric Field
Electric Potential Energy I
Electric Potential Energy II
Electric Potential Energy III
Membrane Potential
Resting Membrane Potential
Nernst Equation I
Nernst Equation II
Eski ve Önemli Bir Hatırlatma
Exam-like Questions: 9
Exam-like Questions: 10
Exam-like Questions: 11
Exam-like Questions: 12
Exam-like Questions: 13
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Exam-like Questions: 15
Exam-like Questions: 16
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Exam-like Questions: 18
Exam-like Questions: 19
Exam-like Questions: 20
Exam-like Questions: 21
Exam-like Questions: 22
Exam-like Questions: 23
Week-3: Action Potential and RC Circuits
Introduction to Action Potential I
Introduction to Action Potential II
How Does Action Potential Start?
Steps of Action Potential I: Depolarization
Steps of Action Potential II: Repolarization and Hyperpolarization
Steps of Action Potential III: Recovery to Resting Membrane Potential
Unilateral Flow of Action Potential
RC Circuit: Components
Ohm's Law
Resistivity Law and Another Resistance Formula
What is Conductance?
Modeling the Membrane Potential I: Current
Modeling the Membrane Potential II: Voltage
Modeling the Membrane Potential III: Capacitor
Modeling the Membrane Potential IV: Resistance
Membrane Resistance
Exam-like Questions: 24
Exam-like Questions: 25
Exam-like Questions: 26
Exam-like Questions: 27
Exam-like Questions: 28
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Exam-like Questions: 30
Exam-like Questions: 31
Exam-like Questions: 32
Exam-like Questions: 33
Exam-like Questions: 34
Exam-like Questions: 35
Exam-like Questions: 36
Exam-like Questions: 37
Week-4: AP Formation and Propagation: Time & Space Constants and Cell Membrane Models
Modeling the AP: Introduction
Batteries and Capacitors
How to Charge a Capacitor?
Capacitance I: General Formula
Capacitance II: Geometric Formula
Capacitance III: Applying Geometric Formula to Axon Membrane
What is Time Constant?
Charging the Capacitor: Graph
Charging the Capacitor: Voltage and Charge Formulas
How to Discharge a Capacitor?
Discharcing the Capacitor: Formulas and The Graph
Charging and Discharging Models of Cell Membrane
Space(Length) Constant I: Introduction and The Formula
Space(Length) Constant II: The Graph
How to Terminate AP: Two Mechanisms
Spatial Model of AP
Speed Formula of AP
Exam-like Questions: 38
Exam-like Questions: 39
Exam-like Questions: 40
Exam-like Questions: 41
Exam-like Questions: 42
Exam-like Questions: 43
Exam-like Questions: 44
Exam-like Questions: 45
Exam-like Questions: 46
Exam-like Questions: 47
Week-5: Neuronal Communication, AP Unidirectionality, Myelinated Axons and Resting Potential
AP Unidirectionality: Time Graph
AP Unidirectionality: Distance Graph
Let's Remember The AP Speed
Myelin Sheath I: Introduction
Myelin Sheath II: Effect on Resistance
Myelin Sheath III: Effect on Capacitance
Myelin Sheath IV: Total Effect on Axon
Passive Spread of AP
Resting Membrane Potential I: Introduction
Resting Membrane Potential II: Function of the Na+/K+ Pump
Resting Membrane Potential III: Pump Work for Single Ion
Resting Membrane Potential IV: Total Pump Work for Multiple Ions
Exam-like Questions: 48
Exam-like Questions: 49
Exam-like Questions: 50
Exam-like Questions: 51
Exam-like Questions: 52
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Exam-like Questions: 58
Exam-like Questions: 59
Week-6: Brain Activity, Synaptic Transmission and Brain Imaging Methods
Synaptic Transmission
How Does Brain Function?
Brain Imaging Methods
Exam-like Questions: 60
Exam-like Questions: 61
Exam-like Questions: 62
Exam-like Questions: 63
Exam-like Questions: 64
Exam-like Questions: 65
Exam-like Questions: 66
Exam-like Questions: 67
Exam-like Questions: 68
Week-7: Mechanisms of Learning and Memory, Cognitive Processes
Neural Function
Memory: Introduction
Explicit Memory
Implicit Memory I: Priming
Implicit Memory II: Classical Conditioning
Implicit Memory III: Operant Conditioning
Non-Associative Learning
Hippocampus
Mechanisms of Memory
Exam-like Questions: 69
Exam-like Questions: 70
Exam-like Questions: 71
Exam-like Questions: 72
Exam-like Questions: 73
Exam-like Questions: 74
Sample Final Solutions
Question-1
Question-2
Question-3
Question-4
Question-5 part a
Question-5 part b
question 5 part c
Question 6
Question 7
Question 8
Question 9
Question-10
Question-11
Question-12
Question-13
Question-14
Lise yıllarımdan beri üniversite düzeyinde dersler anlatıyorum. O yıllarda Biyoloji Olimpiyatları'na hazırlandım ve Türkiye genelinde 3.'lük ve 1.'lik kazandım. 4 yıldır çeşitli e-eğitim platformlarında içerik oluşturmaktayım. Üniversite dersleri için online kurs fikri uzun süredir aklımdaydı ve Unicourse ekibi ile bunu gerçekleştiriyoruz. Aynı zamanda okulumda retina epitelinin kök hücre temelli tedavisi alanında akademik çalışmalarıma devam etmekteyim. Koç Üniversitesi'nde Tıp fakültesi 4.sınıf öğrencisiyim.
1499 TL