Notes
Slide Show
Outline
1
Principals of Fluorescence Techniques
2
“Lifetime” of a Fluorophore
3
Radiative/Intrinsic Lifetime
4
Intensity-Decay Curve
5
Strickler-Berg Equation
6
Environment and Lifetime
7
Time Domain/Frequency Domain Methods
8
Fluorescence Lifetime
9
Deconvolution Method
10
Multiexponential Decay
11
TCSPC Method
12
Decay Data
13
Harmonic Method
14
Harmonic Method II
15
Modulations
16
Phase and Modulation
17
Fractional Contribution & Total Intensity
18
Plot
19
Multi-exponential Decay
20
Distribution and Decay Models
21
Quenching I
22
Quenching II
23
Static Quenching I
24
Static Quenching II
25
Static Quenching III
26
Static Quenching IV
27
Static Quenching V
28
Static Quenching VI
29
Fluorescence Resonance Energy Transfer
30
FRET
31
Energy Diagram
32
Energy Diagram II
33
Rate of Transfer
34
Overlap Integral
35
Orientation Factor
36
Orientation Factor II
37
Orientation Factor III
38
Orientation Factor IV
39
Energy Transfer Efficiency
40
Distance Dependence
41
FRET Experiments in vitro I
42
FRET Experiments in vitro II
43
FRET Experiments in vivo
44
Homo-transfer of Electronic Excitation Energy
45
Excitation Transfer
46
Weber’s Red-Edge Effect
47
Plot
48
Temperature Dependence
49
Effeciency of Transfer
50
Dimer/Monomer Equilibrium
51
Homotransfer
52
Homotransfer II
53
Sources