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Bee Product Dose-Response Lab (2D)

2D dose-response lab: pick a bee product, dial the dose and personal sensitivity, and watch live benefit and risk curves show exactly where the safe window ends.

Biology2DModerate60 FPS📱 Mobile-adapted⇄ 3D version
2d-natural-remedies-from-bee-products-lab ↗ Open standalone

This 2D companion runs the same dose-response model as the 3D lab on a plain canvas: a floating graph plots benefit (teal) and risk (red) curves against dose, shaded into safe/caution/danger zones that shift left as you raise personal sensitivity, while a small particle stream between a honeycomb and a body figure shows the same dose visually, its colour drifting from the product's own hue toward red as risk climbs.

⚙ Under the hood

2D dose-response lab for five bee products (honey, propolis, royal jelly, pollen, venom), each with its own safe-dose ceiling and risk slope; sensitivity and a heated/processed toggle adjust the curves live.

beeshoneypropolisroyal jellybee venomdose response

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

Why does the safe dose ceiling shrink as I raise sensitivity?

Higher personal sensitivity models allergy-prone physiology: the model multiplies each product's base safe-dose ceiling by a shrinking factor, so the green zone narrows and the amber/red zones start sooner.

Why does bee venom have such a narrow safe window?

Venom's risk curve rises far more steeply than the others (a steeper "risk slope" in the model) because the same peptides responsible for its studied effects are also the ones that trigger anaphylaxis in venom-allergic people.

What does the heated/processed toggle change?

It reduces benefit potency according to each product's heat-sensitivity — honey's natural enzymes lose the most, bee venom's peptides the least.

What did you find?

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