FT-ITC Analysis

Across experiments

Move beyond individual fits. See the bigger thermodynamic picture.

FT-ITC Analysis brings related experiments together for global fitting, temperature evaluation and advanced thermodynamic interpretation.

The analysis result

One place to review the result across your experiments.

Move from individual fits to a result that makes the relationship between experiments legible. Review shared and experiment-specific parameters, fit quality and residuals without losing the underlying datasets.

01

Average parameters

Summarise fitted values across replicates and selected experiments.

02

Temperature evaluation

Examine temperature-dependent behaviour and derived relationships such as ΔCp.

03

Traceable context

Keep the experiments, assumptions and model choices linked to the final result so you can see how each conclusion was reached.

04

Advanced interpretation

Uncover hidden patterns and relationships in your data through sophisticated analysis techniques.

Global analysis

Fit related experiments as one connected model.

Optimise multiple isotherms simultaneously, decide which parameters are shared, and keep other parameters experiment-specific where that is scientifically appropriate.

01

Combine datasets

Analyse experiments collected across temperatures, buffers, salt conditions or replicates as one connected result.

02

Set meaningful constraints

Share selected parameters or connect them through physical relationships while retaining experiment-level values where needed.

03

Review the evidence

Read global parameters together with individual isotherms, residuals and the experiments contributing to the fit.

Advanced analyses

Ask more of your data.

Beyond affinity and enthalpy, carefully chosen series can unravel the underlying thermodynamics.

02

Salt dependence

Compare a series across ionic strengths to evaluate salt effects on binding and estimate the selected model's extrapolated dissociation constant at zero ionic strength.

03

Proton linkage

Compare titrations performed in buffers with different protonation enthalpies to investigate proton-linked effects on binding.

Further reading

Advanced interpretation starts with the literature.

Read the underlying methods and review the assumptions before drawing specialised conclusions.