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1. Oocyte diameter predicts the maturation rate of human immature oocytes collected ex vivo.

2. Hormonal response in patients transplanted with cryopreserved ovarian tissue is independent of whether freezing was performed in childhood or adulthood.

3. Survey of Fertility Preservation Options Available to Patients With Cancer Around the Globe.

4. FERTILITY PRESERVATION: Freezing of ovarian tissue and clinical opportunities.

5. Initial steps in reconstruction of the human ovary: survival of pre-antral stage follicles in a decellularized human ovarian scaffold.

6. Time from referral to ovarian tissue cryopreservation in a cohort of Danish women.

7. A simple method to quantify follicle survival in cryopreserved human ovarian tissue.

8. Transplantation of frozen-thawed ovarian tissue: an update on worldwide activity published in peer-reviewed papers and on the Danish cohort.

9. Cryopreservation of ovarian tissue for fertility preservation in a large cohort of young girls: focus on pubertal development.

10. Outcomes of transplantations of cryopreserved ovarian tissue to 41 women in Denmark.

11. Developmental competence of oocytes isolated from surplus medulla tissue in connection with cryopreservation of ovarian tissue for fertility preservation.

12. Ovarian tissue cryopreserved for fertility preservation from patients with Ewing or other sarcomas appear to have no tumour cell contamination.

13. Fertility in cancer patients after cryopreservation of one ovary.

14. Recommendations for fertility preservation in patients with lymphoma, leukemia, and breast cancer.

15. Freezing of ovarian tissue and clinical opportunities.

16. Survival and growth of isolated pre-antral follicles from human ovarian medulla tissue during long-term 3D culture.

17. High progesterone levels during the luteal phase related to the use of an aromatase inhibitor in breast cancer patients.

18. High progesterone levels during the luteal phase related to the use of an aromatase inhibitor in breast cancer patients

19. The polymorphic insertion of the luteinizing hormone receptor “insLQ” show a negative association to LHR gene expression and to the follicular fluid hormonal profile in human small antral follicles.

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