top of page
All Posts


MAMAY Featured in C&EN: Digital Sensory Science in Action | Sep. 2, 2026
Credit: Shutterstock | C&EN -Chemical & Engineering News | https://cen.acs.org/ We’re excited to share that MAMAY Technologies was featured in Chemical & Engineering News (C&EN) - one of the world’s leading magazines in chemistry and applied science, published by the American Chemical Society. https://cen.acs.org/food/food-ingredients/flavorists-recreating-smoke-save-europes/104/web/2026/09 The article explores the challenge of rebuilding smoke flavors under new EU regulation

Yuval Klein
4 days ago1 min read


Organoleptic Characterization and Concentration Profiles of Odorous Compounds in Raw Influent versus Secondary-Treated Municipal Wastewater | Aug-2026
Municipal wastewater contains a complex mixture of volatile and semi-volatile odorous compounds spanning reduced sulfur species, nitrogen-containing heterocycles and amines, halogenated solvents, monoaromatic hydrocarbons, and volatile fatty acids. This paper synthesizes quantitative concentration data for 19 key odorants in raw influent and secondary-treated effluent of municipal wastewater treatment plants (WWTPs) with organoleptic impact profiles generated by the MAMAY Org

Yuval Klein
Aug 291 min read


A Comparative Organoleptic Study of Lavandula Angustifolia And Lavandula × intermedia Chemical Composition and Aromatic Profile Analysis Based on the Organoleptic Digitizer | Aug-2026
This paper presents a comparative organoleptic and chemical characterization of two of the most commercially significant lavender species: Lavandula angustifolia Mill. (True/Fine Lavender) and Lavandula × intermedia Emeric ex Loisel. (Lavandin). Using gas chromatographic (GC) data processed through the MAMAY Organoleptic Digitizer 1.0 system, we analyze the principal volatile compounds of each species and their cumulative contributions to overall olfactory impact, measured in

Yuval Klein
Aug 161 min read


A Comparative Organoleptic Study of Jasminum grandiflorum and Jasminum sambac Chemical Composition and Aromatic Profile Analysis Based on the Organoleptic Digitizer | Jul-2026
CONTINENTAL | VOL 17 | ISSUE 007 | JULY 2026 A Comparative Organoleptic Study of Jasminum grandiflorum and Jasminum sambac Chemical Composition and Aromatic Profile Analysis Based on the Organoleptic Digitizer | Page 16-23. Dr. Michael Zviely | MAMAY Abstract A comparative organoleptic and chemical characterization was conducted on two jasmine species: Jasminum grandiflorum (Royal/Spanish Jasmine) and Jasminum sambac (Arabian/Night‑blooming Jasmine). Gas chromatographic (GC

Yuval Klein
Jul 111 min read


Sweetness Synergy in Binary and Ternary Sweetener Combinations | Jul-2026
We are pleased to share MAMAY's latest peer-reviewed study, “Sweetness Synergy in Binary and Ternary Sweetener Combinations: A Systematic Literature-Derived Database and Mechanistic Interpretation. This research establishes a quantitative framework for understanding how sweeteners interact at the receptor level to produce supra-additive sweetness effects. The findings highlight the mechanistic role of compounds such as NHDC, Aspartame, and Stevia Rebaudioside A in cooperative

Yuval Klein
Jul 51 min read


The Sensory CORDS Framework for Adaptive Neurointegration
The Sensory CORDS Framework for Adaptive Neurointegration Although sensory integration has long been discussed in clinical and educational contexts, one concept remains under‑recognized within neuroscience: Sensory CORDS. All sensory experience begins with core sensation - the nervous system’s initial, measurable registration of physical stimuli. Traditionally, core sensation has been difficult to quantify objectively. However, emerging technologies such as the MAMAY Digitize

Yuval Klein
Jun 242 min read


Sweetness Prediction Based on Chemo-Physical Parameters | Apr-2026
Powered by AI (Copilot) Abstract Predicting the relative sweetness of compounds remains challenging due to the subjectivity and variability inherent in human sensory panels. This study presents a machine-learning-based algorithm that forecasts relative sweetness values (RSV, sucrose = 1.00) using only readily calculable two-dimensional physicochemical descriptors, including molecular size and geometry, hydration-related indices, and related parameters. The model employs an en

Yuval Klein
Apr 161 min read


Sunlit Rind - A Citrus odyssey Unveiled by Digitizing Odor | Dec-2025
Sunlit Rind - A Citrus odyssey Unveiled by Digitizing Odor | Dec-2025 | Thank you Continental Cosmetic and Herbal for highlighting MAMAY's work (pages 4-16). Thank you Dr. Michael Zvieli for the research. The full MAGAZINE: Here #Science #Articale #PR #Magazine #OdorImpact

Yuval Klein
Dec 11, 20251 min read


The Odor Impact of Aroma Ingredients in Fragrances and Flavors. 6-Nov-2025
Continental Cosmetics and Herbals | Vol 16 | ISSUE 11 | November 2025 The Odor Impact of Aroma Ingredients in Fragrances and Flavors A Novel Organoleptic Digitizer. Attached is an article examines the odor impact of aroma ingredients in fragrances and flavors, focusing on the intrinsic physico-chemical properties that govern their sensory contributions. Human olfaction, mediated by appr oximately 50 million odor receptors of 320 types, relies on volatile, non-polar molecules

Yuval Klein
Nov 7, 20251 min read


Digitizer is Live! | 15-Sep-2025
Digitizer is Live! September 15th, 2025 has arrived, and we're thrilled to share that we launched right on time. Feel free to explore—this is our first release, officially marked as Digitizer Version Beta-1.001 . The val® algorithm debuts as val® Beta-3.001 . Please note: future updates may influence the existence and impact of Digital Organoleptic sensations . The first release includes: Fetch – Seamlessly retrieve your data Report on Screen – View insights instantly Simu

Yuval Klein
Sep 15, 20251 min read


MAMAY Organoleptic Digitizer 1.0 (beta) 🚧
Digitizer Under Constructions Jul 29th, 2025 We have completed the development and programming of the minimum required for the system’s...

Yuval Klein
Jun 29, 20251 min read
bottom of page