Technical
Notes
B1
Measurement
of Ca 2+
in a Cultured Monolayer of Heart Cells
B2
Practical
Aspects of using BCECF to Measure Cellular pH.
B3
Measurement
of Ca 2+
in single Cultured Heart Cells.
B4
Dual-Wavelength
Fluorescence Spectroscopy Yields New Data About Vasoconstriction.
B6
Measurement
of [Mg2+] in Single Heart Cells.
F1
Measurement
of Sub-Picomolar Fluorescein
F2
Maintaining
High Sensitivity when Working with Small-Volume Samples
F3
Front-Face
Detection for Highly-Concentrated, opaque or Solid Samples
F4
Photon
Counting Means Sensitivity
F5
Immunoassay
of Theophylline by Fluorescence Polarisation.
F6
Cyclodextrin-Enhanced
Room-Temperature Phosphorescence
F7
Kinetic
Determination of Vitamin B1.
F8
Screening
& Classifying Hazardous Waste Samples with Fluorescence Spectroscopy
F9
Characterising
Galvenising Bath with Fluorescence
F10
Fluorescence
Lifetimes: Modulation or Pulsed?
F11
Flat Panel
Displays and Fluorescence
F12
Assessing
UV Damage of Hair with Fluorescence
F13
Characterising
Tooth Decay with Fluorescence
F14
Cation
Measurements with a FluoroMax
F15
Food
Science increasing Crop Yields with Fluorescence
F16
Non
Invasive In Vivo Determination of Sunscreen UVA Protection Factors
F17
Fluorescent
Pigments in Living Coral
F18
Linearisation
of SPEX-3D Spectrofluorometer
F19
Measurement
of Endogenous Skin Fluorescence In Vivo on Human Skin
F20
How to
Select the Best Spectrofluorometer
F21
Wideband
Sensitivity of the FluoroLog 3
X4
Fluorescence
Appl. Brief #2 - Front Face Detection.
X5
Fluorescence
Appl. Brief #3 - Fluorescence Microscopy.
X18
In Vivo pH
Measurement of Tissues by Fluorescence Spectroscopy.
X20
Fluorometric
Calcium Measurements