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"Amedi, Tomer"
صنف حسب:
The Palomar cookbook : modern Israeli cuisine
The Palomar has won fans the world over for its elevated Middle Eastern cooking inspired by the colorful, flavorful cuisines of the region. From Beet Carpaccio with Burnt Goat Cheese and Date Syrup to Pork Belly Tajine with Ras el Hanout and Israeli couscous, these innovative dishes explore delicious ingredients like za'atar, labneh, pomegranate syrup, and tahini in everything from sharable mezze to dessert. Includes a cocktail section with a selection of stand-out concoctions such as Lion's Milk and the Drunken Botanist. Brimming over with photographs, a new way to explore this acclaimed restaurant and its unique take on the vibrant foods of the Middle East.
Backward spatial perception can be augmented through a novel visual-to-auditory sensory substitution algorithm
بواسطة
Heimler, Benedetta
,
Netzer, Ophir
,
Behor, Tomer
في
Algorithms
,
Perceptions
,
Rehabilitation
2021
Abstract Can humans extend and augment their natural perceptions during adulthood? Here, we address this fascinating question by investigating the extent to which it is possible to successfully augment visual spatial perception to include the backward spatial field (a region where humans are naturally blind) via other sensory modalities (i.e., audition). We thus developed a sensory-substitution algorithm, the “Topo-Speech” which conveys identity of objects through language, and their exact locations via vocal-sound manipulations, namely two key features of visual spatial perception. Using two different groups of blindfolded sighted participants, we tested the efficacy of this algorithm to successfully convey location of objects in the forward or backward spatial fields following ~ 10 min of training. Results showed that blindfolded sighted adults successfully used the Topo-Speech to locate objects on a 3 × 3 grid either positioned in front of them (forward condition), or behind their back (backward condition). Crucially, performances in the two conditions were entirely comparable. This suggests that novel spatial sensory information conveyed via our existing sensory systems can be successfully encoded to extend/augment human perceptions. The implications of these results are discussed in relation to spatial perception, sensory augmentation and sensory rehabilitation.
Journal Article