Nourish Goals - About
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Nourish Goals


Similar to Isaac Asimov's Laws of Robotics we have our own guidelines ingrained in our process of making an excellent interactive system:

1. Ease of use is our first priority

We strive to make Nourish Goals simple and clear.

2. Flexibility is key - so long as there's no or minimal compromising of #1
3. Maintain visual clarity

We always appreciate feedback. Please let us know your ideas to help us improve! We promise to always listen. Contact Us

Nourish Goals and its parent company Innovha, founded by Lior Haramaty, leverages his vast experience over a multitude of industries. Born and raised in Israel, until immigrating to the United States as an adult, Lior developed a skill for building electronic and mechanical projects as a child, and by the late 1970's at age 13, began his programming career, selling his own software at age 15.

During his five year service at the IDF, he co-founded his first company, VocalTec. The company started with one of the first computer sound cards, continued with many first-off hardware and software products, and in 1995 introduced Internet Phone (or iPhone for short) the first ever Voice Over the Internet (VOIP) product, followed a year later with a NASDAQ IPO. Lior continued innovating in multiple businesses, and in 2015 co-founded ZING Fitness Studios, high-end fitness boutique studios featuring group classes, personal training and other fitness services, including nutrition and meal plan programs.

Nourish Goals packs behind it a sophisticated engine, algorithms and data created and compiled especially for it. The data is processed on our company's servers and presented to you in a simple, easy to use front-end.

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We invested an enormous amount of research to make Nourish Goals clear and effective. Listed here are many of the articles, researches and published papers we digested to make this happen.

Bibliography


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Bo, S., Fadda, M., Fedele, D., Pellegrini, M., Ghigo, E., & Pellegrini, N. (2020, April). A critical review on the role of food and nutrition in the energy balance. A critical review on the role of food and nutrition in the energy balance, 12(4). MDPI AG. doi:10.3390/nu12041161

Bornhorst, G. M., Kostlan, K., & Singh, R. P. (2013, September). Particle size distribution of brown and white rice during gastric digestion measured by image analysis. Journal of Food Science, 78(9). doi:10.1111/1750-3841.12228

Calcagno, M., Kahleova, H., Alwarith, J., Burgess, N. N., Flores, R. A., Busta, M. L., & Barnard, N. D. (2019, August). The Thermic Effect of Food: A Review. The Thermic Effect of Food: A Review, 38(6), 547-551. Routledge. doi:10.1080/07315724.2018.1552544

Capelli, C., Rittveger, J., Bruseghini, P., Calabria, E., & Tam, E. (2016, July). Maximal aerobic power and anaerobic capacity in cycling across the age spectrum in male master athletes. European Journal of Applied Physiology, 116(7), 1395-1410. doi:10.1007/s00421-016-3396-9

Clyburn, C., Carson, K. E., Smith, C. R., Travagli, R. A., & Browning, K. N. (2023). The Journal of Physiology Brainstem astrocytes control homeostatic regulation of caloric intake. J Physiol, 601, 801-829. doi:10.1113/JP283566#support-information-section

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Gastin, P. B. (2001). Energy System Interaction and Relative Contribution During Maximal Exercise. Sports Med 2001, 31(10), 725-741.

Gebauer, S. K., Novotny, J. A., Bornhorst, G. M., & Baer, D. J. (2016, October). Food processing and structure impact the metabolizable energy of almonds. Food and Function, 7(10), 4231-4238. doi:10.1039/c6fo01076h

Grosso, G., Yang, J., Marventano, S., Micek, A., Galvano, F., & Kales, S. N. (2015, April). Nut consumption on all-cause, cardiovascular, and cancer mortality risk: A systematic review and meta-analysis of epidemiologic studies. American Journal of Clinical Nutrition, 101(4), 783-793. doi:10.3945/ajcn.114.099515

Grundy, M. M., Grassby, T., Mandalari, G., Waldron, K. W., Butterworth, P. J., Berry, S. E., & Ellis, P. R. (2015, January). Effect of mastication on lipid bioaccessibility of almonds in a randomized human study and its implications for digestion kinetics, metabolizable energy, and postprandial lipemia. American Journal of Clinical Nutrition, 101(1), 25-33. doi:10.3945/ajcn.114.088328

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Reed, G. W. (1996). Measuring the thermic effect of foodd 3. Measuring the thermic effect of foodd 3, 63, 64-73. Retrieved from https://academic.oup.com/ajcn/article/63/2/164/4650492

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