We expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.
We expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.
We expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.
We expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.
We expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.
And we found that lambs were paired with these clinical grade subfrontal stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.
Journal of Pediatric Surgery Article Highlights: April 2022
▶Ep 21 · 2:54
quoteThis study, a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myeloma meningocele repair.↗
▶Ep 21 · 2:54
quoteThis study, a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myeloma meningocele repair.↗
▶Ep 21 · 2:54
clinicalDr. Christina Theodoro states this study is a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myelomeningocele repair.↗
▶Ep 21 · 2:54
clinicalDr. Christina Theodoro states this study is a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myelomeningocele repair.↗
▶Ep 21 · 3:27
clinicalThe technique involves exposing the fetal back, re-exposing the spinal cord, identifying the myelomeningocele defect, placing an extracellular matrix patch with placental stem cells facing the spinal cord in direct contact, closing the skin, and returning the baby to the uterus to continue gestation until term.↗
▶Ep 21 · 3:27
quoteWe expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.↗
▶Ep 21 · 3:27
quoteWe expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.↗
▶Ep 21 · 3:27
clinicalThe technique involves exposing the fetal back, re-exposing the spinal cord, identifying the myelomeningocele defect, placing an extracellular matrix patch with placental stem cells facing the spinal cord in direct contact, closing the skin, and returning the baby to the uterus to continue gestation until term.↗
▶Ep 21 · 3:54
clinicalLambs repaired with clinical grade placental stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗
▶Ep 21 · 3:54
quoteAnd we found that lambs were paired with these clinical grade subfrontal stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗
▶Ep 21 · 3:54
clinicalLambs repaired with clinical grade placental stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗
▶Ep 21 · 3:54
quoteAnd we found that lambs were paired with these clinical grade subfrontal stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗
Journal of Pediatric Surgery Article Highlights: April 2022
▶Ep 5 · 2:54
clinicalDr. Christina Theodoro states this study is a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myelomeningocele repair.↗
▶Ep 5 · 2:54
quoteThis study, a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myeloma meningocele repair.↗
▶Ep 5 · 3:27
quoteWe expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.↗
▶Ep 5 · 3:27
clinicalThe technique involves exposing the fetal back, re-exposing the spinal cord, identifying the myelomeningocele defect, placing an extracellular matrix patch with placental stem cells facing the spinal cord in direct contact, closing the skin, and returning the baby to the uterus to continue gestation until term.↗
▶Ep 5 · 3:54
quoteAnd we found that lambs were paired with these clinical grade subfrontal stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗
▶Ep 5 · 3:54
clinicalLambs repaired with clinical grade placental stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗
Journal of Pediatric Surgery Article Highlights: April 2022
▶Ep 12 · 2:54
clinicalDr. Christina Theodoro states this study is a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myelomeningocele repair.↗
▶Ep 12 · 2:54
quoteThis study, a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myeloma meningocele repair.↗
▶Ep 12 · 2:54
quoteThis study, a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myeloma meningocele repair.↗
▶Ep 12 · 2:54
clinicalDr. Christina Theodoro states this study is a pivotal study in obtaining approval from the FDA for use of clinical grade stem cells in fetal myelomeningocele repair.↗
▶Ep 12 · 3:27
quoteWe expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.↗
▶Ep 12 · 3:27
clinicalThe technique involves exposing the fetal back, re-exposing the spinal cord, identifying the myelomeningocele defect, placing an extracellular matrix patch with placental stem cells facing the spinal cord in direct contact, closing the skin, and returning the baby to the uterus to continue gestation until term.↗
▶Ep 12 · 3:27
quoteWe expose the fetal back, we re-expose the spinal cord, we identify the MMC defect, and then we take our extracellular matrix patch that has the placental. Stem cells on it, it is, uh, placed with the cells facing the spinal cord in direct contact, and then the skin is closed and the baby is returned to the uterus to continue gestation until term.↗
▶Ep 12 · 3:27
clinicalThe technique involves exposing the fetal back, re-exposing the spinal cord, identifying the myelomeningocele defect, placing an extracellular matrix patch with placental stem cells facing the spinal cord in direct contact, closing the skin, and returning the baby to the uterus to continue gestation until term.↗
▶Ep 12 · 3:54
quoteAnd we found that lambs were paired with these clinical grade subfrontal stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗
▶Ep 12 · 3:54
clinicalLambs repaired with clinical grade placental stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗
▶Ep 12 · 3:54
clinicalLambs repaired with clinical grade placental stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗
▶Ep 12 · 3:54
quoteAnd we found that lambs were paired with these clinical grade subfrontal stem cells have significantly improved motor function compared to lambs that did not receive the stem cells.↗