This chapter has attempted to streamline the concept of comprehensive, personalized dietetics treatment strategy for PCOS into one single-case example. A lot of emphasis has been put on the role of micronutrients in metabolic processing, hormone control, and reproductive functioning. The chapter stresses to fallacy the conventional dietetics approach that results in nonunique, uniform dietary therapeutic plans. By exploring the body’s most critical vitamins and minerals that are the direct causes of PCOS and are known for differential sparseness in the human body, the chapter demonstrated the potential to advance the next level of human nutrition. Namely, this point is also supported by the fact that artificial intelligence acts as a groundbreaking solution from another side, as it can work with complex health data and develop a schedule of customized microelement dosages for every human physiological profile that may cure such deficiency. Microelement optimization fused with AI-managed research then becomes a new frontier of personal nutrition, because it transfers a new, highly accurate, flexible, data-based tool from the hands of practicians to patients. This way, this study becomes a starting point that will guide a better future treatment for PCOS and analysis of personal dietetics concept.

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Micronutrient Optimization: An In-Depth Look at Vitamins and Minerals Critical for PCOS Management and AI’s Role in Ensuring Adequate Intake

  • Shaik Khaja Mohiddin,
  • Shaik Sharmila,
  • Anand Nayyar

摘要

This chapter has attempted to streamline the concept of comprehensive, personalized dietetics treatment strategy for PCOS into one single-case example. A lot of emphasis has been put on the role of micronutrients in metabolic processing, hormone control, and reproductive functioning. The chapter stresses to fallacy the conventional dietetics approach that results in nonunique, uniform dietary therapeutic plans. By exploring the body’s most critical vitamins and minerals that are the direct causes of PCOS and are known for differential sparseness in the human body, the chapter demonstrated the potential to advance the next level of human nutrition. Namely, this point is also supported by the fact that artificial intelligence acts as a groundbreaking solution from another side, as it can work with complex health data and develop a schedule of customized microelement dosages for every human physiological profile that may cure such deficiency. Microelement optimization fused with AI-managed research then becomes a new frontier of personal nutrition, because it transfers a new, highly accurate, flexible, data-based tool from the hands of practicians to patients. This way, this study becomes a starting point that will guide a better future treatment for PCOS and analysis of personal dietetics concept.