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For Drosophila we now have 78 responding units (“information channels”) and 693 odorants with the number of odorants responses per responding unit ranging from 11 to 497.

With this update of the Do package we introduce three classes of new data: (1) Better precision raw data from datasets that were already included.

The Do OR project has a web interface for quick queries ( OR), and a downloadable, open source toolbox written in R, including all processed and original datasets.

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When we published the first version of Do OR, not all raw data from the considered publications was available.

In many cases we had to estimate quantitative responses from graphical plots.

The coding capacity of even small olfactory sensory systems is enormous because of the multidimensional nature of the olfactory code (often referred to as combinatorial).

The vast majority of odorants elicit specific response patterns across olfactory sensory neurons (OSN), consisting of strongly activated, weakly activated, inhibited and non activated OSNs odors.

We deorphanize Or69a, showing a broad response spectrum with the best ligands including 3-hydroxyhexanoate, alpha-terpineol, 3-octanol and linalool.

We include all of these datasets into Do OR, provide a comprehensive update of both code and data, and new tools for data analyses and visualizations.

(3) Data recorded by us that is first published along with this paper.

Here we present the response profiles of five OSN classes, measured via calcium imaging.

Odors elicit complex patterns of activated olfactory sensory neurons. the responses in all sensory neurons for all relevant odorants, is desirable to understand olfactory coding.

The Do OR project combines all available Drosophila odorant response data into a single consensus response matrix.

With the Do OR project we have created a way to combine all the existing, heterogeneous odorant response data into a single consensus response matrix.

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