# Literature review of the use of Qualitative Behaviour Assessment with a fixed list of terms

**Authors:** Irena Czycholl, Cecilie Ravn Skovlund, Björn Forkman

PMC · DOI: 10.3389/fvets.2025.1588346 · Frontiers in Veterinary Science · 2026-01-09

## TL;DR

This review summarizes how a fixed-term method for assessing animal behavior is used across different species and settings.

## Contribution

The paper provides the first comprehensive overview of FL QBA applications, methods, and species.

## Key findings

- FL QBA is most commonly used for on-farm welfare assessment and behavioral profiling.
- The method has been applied to farmed, working, companion, and exotic animals but not laboratory animals.
- Methodological approaches and reporting quality vary significantly across studies.

## Abstract

Qualitative Behaviour Assessment (QBA) is a method that is used to assess emotional states in animals, either based on a list of pre-established terms (fixed list; FL) or developed through Free-Choice-Profiling. Although FL QBA was originally developed for welfare assessment of farm animals, it is nowadays also used for various species and other sectors. This is, amongst others, because QBA contributes a unique ‘whole-animal’ insight into animal experience that complements other measures and its high feasibility along with a general lack of available indicators of positive emotional state. This has led to a number of different usages and applications of FL QBA of which an overview (e.g., exact methodology used, statistical analysis, purpose and aim) so far does not exist. The aim of this review is to provide an overview of the studies that have applied FL QBA, the species it has been used for and the corresponding lists, what the QBA was used for (purpose), as well as about the various methodological approaches. Web of Science was searched between October 2023 and February 2024 for all peer-reviewed publications on FL QBA. 193 publications met inclusion criteria and were included for final review. The most common aim of use of QBA was on-farm welfare assessment, followed by measuring behavioural/emotional responses to specific events and temperament assessment/behavioural profiling. FL QBA was mainly identified for farmed animals (cattle, pigs, hens, sheep, goats, buffaloes and salmon) but also for working and companion animals (horses and donkeys, dogs and cats) as well as various exotic species in other contexts such as zoological institutions (brown bears, polar bears, elephants, dolphins, gorillas, peccaries and pampas deer). No FL QBA use was identified for laboratory animals. Methodological approaches varied greatly, including differences in term generation, observation methods (e.g., individual-vs. group observation and time spent observing), level of training and inter-observer reliability, and statistical analysis. Moreover, the level of reporting also varied greatly. In sum, this review provides a full overview of the current state of FL QBA including a list of all FL used which is important for the future development, refinement and standardisation of the method.

## Full-text entities

- **Chemicals:** FL (MESH:D005459)
- **Species:** Capra hircus (domestic goat, species) [taxon 9925], Ursus arctos (brown bear, species) [taxon 9644], Gallus gallus (bantam, species) [taxon 9031], Felis catus (cat, species) [taxon 9685], Elephantidae (elephants, family) [taxon 9780], Canis lupus familiaris (dog, subspecies) [taxon 9615], Rubroshorea almon (species) [taxon 292004], Delphinidae (marine dolphins, family) [taxon 9726], Ozotoceros bezoarticus (pampas deer, species) [taxon 63824], Equus asinus (African ass, species) [taxon 9793], Tayassuidae (peccaries, family) [taxon 9827], Ursus maritimus (polar bear, species) [taxon 29073], Ovis aries (domestic sheep, species) [taxon 9940], Bos taurus (bovine, species) [taxon 9913], Equus caballus (domestic horse, species) [taxon 9796], Metazoa (animals, kingdom) [taxon 33208], Sus scrofa (pig, species) [taxon 9823]

## Full text

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## References

240 references — full list in the complete paper: https://tomesphere.com/paper/PMC12827162/full.md

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Source: https://tomesphere.com/paper/PMC12827162