Hungry to prepare molecular cuisine, but don't have the specialist knowledge to successfully pair beluga caviar with white chocolate souffle?
For you dabblers in the molecular science of taste, FoodPairings.be has done the chemistry for you. Launched today, visual displays of neuron-inspired food trees instantly reveal that pairing roast beef with grapefruit and licorice is an ideal flavor combination, and banana with mussels - a gastronomical treat.
The chemical engineering team's results are broken down into the categories of chemically resonant food 'pairings' and molecularly 'interchangable' foods.
"A food product has a specific flavour because of a combination of different flavours. Like basil tastes like basil because of the combination of linalool, estragol, …. So if I want to reconstruct the basil flavour without using any basil, you have to search for a combination of other food products where one contains linalool (like coriander), one contains estragol (like tarragon),... So I can reconstruct basil by combining coriander, tarragon, cloves, laurel."
Try out the following online tests & experiments for synesthesia:
David Eagleman's'Synesthesia Battery'is the most comprehensive synesthesia test I've found so far & excellent for synesthetes who want explore a possibly extended range of their gifts, especially as research is showing that 40% of synesthetes have more than one form of synesthesia. The site lists a wide range of possible synesthetic combinations for testing, including musical-instruments>color, sound>smell, Chinese grapheme>color and orgasm>color. Disappointingly, when I checked the box that applied to me, sound>taste, I was immediately directed to a Results page which thanked me for my participation. For me, took about 1 minute to complete.
The BBC's charmingly named Do you see what I see?, from which I appropriated the title of this post, hosts a single test for grapheme-color synesthesia and spatial-sequence (number form) synesthesia. About 10 minutes.
BU's Synesthesia Project has a great test for non-graphemic shapes>color synesthesia. The Project's research on grapheme-color synesthesia found that many synesthetes report having colored basic shapes, including triangles and squares, in addition to their colored letters and/or numbers. Are you one of them? Take the 'Non-Graphemic Shape Battery' here. About 20 minutes.
'Strandbeest', astonishingly beautiful kinetic sculptures which from a distance resemble giant insects or prehistoric skeletons come alive, are the progeny of artist, engineer and sculptor Theo Jansen.
For 16 years Jansen has been designing and refining consecutive generations of Strandbeest ("beach beasts") to survive autonomously in roaming flocks on local Dutch beaches. His creatures 'digest' fuel, walk by flapping their wings in response to the wind, perceive obstacles in their path through simple binary sensors and to protect themselves from harm in oncoming storms, hammer themselves into the sand.
"The beauty in these machines is their mechanical and conceptual simplicity. By copying the evolutionary process, the inventor has managed to create startlingly organic-looking machines, with a depth of creativity and beauty many of today’s electronics lack... He uses genetic algorithms to create artificial life, including a measure of “fitness” for his creations. The creations which are most successful at walking along the beach are bred together and regraded for future designs."
Constructed from the simplest of materials -- plastic tubing, adhesive tape and lemonade bottles -- the animaris' startlingly elegant walking motions evolved from trial and error. The key to their fluid movement lies in the proportions of the tubes - Jansen's 11-number 'holy code' - and on their axis of motion, which replicates the wheel.
"This may be where the future of design ought to be found. By looking more to nature around us, we can evolve creations of much greater complexity and more akin to naturally produced objects. This may be the direction we must head in to create cradle-to-cradlesustainability: rather than the clean-cut, single-function, straightforward inventions of the past, we may need to embrace the complexity inherent in nature."
In the meantime, it's not difficult to imagine these poetic beasts, many larger than elephants, as future artifacts in a post-human world, silent but for gusts of lonely winds on the shore and the hypnotic swarm-of-insects/wind-rustling-branches murmur of Strandbeests' whirring parts.
At October's Simplicity Event, Philips demonstrated its concept Active Glass Dynamic Daylight Window, in the context of a simulated hotel room. This energy-efficient digital lifestyle product allows for guests to use sweeping intuitive gestures to create a personalized sensory environment.
"I like to think of Philips' Dynamic Daylight Window as a practical representation of a much different future then we might be expecting. Where we live in increasingly beautiful and interesting environments that keep us fully distracted from reality. Much more practical then virtual reality. The over whelming of the senses to create fully synthetic realities is totally impractical for the near future, but customizing reality to overwhelm the senses, perfect."
While I’m not a synesthete myself, 'fusiform gyrus' has got to be one of the yummiest phrases around. It takes the mouth so many places, & sounds like an onomatopoeic compression of Goldfrapp’s Strict Machine.
To neuroscientist Vilayanur Ramachandran, the fusiform gyrus section of the brain may be the key to the ‘linked senses’ phenomenon of synesthesia. The fusiform gyrus is part of the temporal lobe and houses the areas responsible for color and number perception, which happen to be next to one another. Noting the hereditary nature of the condition, Ramachandran posits that in synesthetes there is cross-wiring between these two areas resulting in simultaneous perception of sensory input and very often, enhanced creativity.
Ramachandran is a dynamic and entertaining speaker. In the TED Talk below he expands on this theory. The section on synesthesia starts at 17:53.
Neuromaggio is driven by curiosity & the desire to explore beautiful intersections between art, science, music, sound, culture, technology and design. Areas of interest include - Art, aesthetics and neuroaesthetics. Sound, music, neuromusicology. Synesthesia, creativity, ritual and the unconscious mind. Design & technology. Sensation & perception. Techno fashion & molecular cuisine. Projects & experiments hopefully presented to charm, intrigue, capture and nourish the soul and imagination.