Predictive Bioharmonics: Predicting Embryo Stability Before Fertilization (A Pre-Pilot Study on Real-World Data)

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Autore principale: Fries, Tess
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Fries, Tess
author_facet Fries, Tess
contents <p dir="ltr">In this pre-pilot study, I use real-world data to show that embryo stability is mathematically predictable before fertilization. Early embryo morphokinetics, specifically the cleavage intervals cc2 and s2, carry a direct dynamical signature of how well the oocyte and sperm matched. Using a PB-derived mismatch metric, I demonstrate that these timings reveal the underlying interaction between the gametes and that embryo stability can be inferred before an embryo exists. The analysis further shows that the embryo expresses the dynamical difference—not the sum—of the oocyte and spermatozoon. </p> <p dir="ltr">These findings open the possibility of pre-conception prediction of embryo stability, with implications for gamete selection, IVF efficiency, reduced patient burden, and early identification of instability prior to embryo formation. </p> <p dir="ltr">By using PB as a mathematical dynamic analysis, the individual dynamics of both egg and sperm can be evaluated to predict embryo stability. Furthermore, any mismatch in stability can be directly corrected in the IVF clinic—on the egg, the sperm, or the embryo—based on their dynamical signatures. </p> <p dir="ltr">The implications call for an immediate pilot study.</p>
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id zenodo_https___doi_org_10_5281_zenodo_17871283
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Predictive Bioharmonics: Predicting Embryo Stability Before Fertilization (A Pre-Pilot Study on Real-World Data)
Fries, Tess
Predictive Bioharmonics
embryo stability
fertility
infertility
gamete interaction
dynamics
morphokinetics
IVF
<p dir="ltr">In this pre-pilot study, I use real-world data to show that embryo stability is mathematically predictable before fertilization. Early embryo morphokinetics, specifically the cleavage intervals cc2 and s2, carry a direct dynamical signature of how well the oocyte and sperm matched. Using a PB-derived mismatch metric, I demonstrate that these timings reveal the underlying interaction between the gametes and that embryo stability can be inferred before an embryo exists. The analysis further shows that the embryo expresses the dynamical difference—not the sum—of the oocyte and spermatozoon. </p> <p dir="ltr">These findings open the possibility of pre-conception prediction of embryo stability, with implications for gamete selection, IVF efficiency, reduced patient burden, and early identification of instability prior to embryo formation. </p> <p dir="ltr">By using PB as a mathematical dynamic analysis, the individual dynamics of both egg and sperm can be evaluated to predict embryo stability. Furthermore, any mismatch in stability can be directly corrected in the IVF clinic—on the egg, the sperm, or the embryo—based on their dynamical signatures. </p> <p dir="ltr">The implications call for an immediate pilot study.</p>
title Predictive Bioharmonics: Predicting Embryo Stability Before Fertilization (A Pre-Pilot Study on Real-World Data)
topic Predictive Bioharmonics
embryo stability
fertility
infertility
gamete interaction
dynamics
morphokinetics
IVF
url https://doi.org/10.5281/zenodo.17871283