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Soichi Kageyama

Explore the profile of Soichi Kageyama including associated specialties, affiliations and a list of published articles. Areas
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Articles 31
Citations 199
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Recent Articles
1.
Fujii T, Naito A, Moriyasu S, Kageyama S
J Reprod Dev . 2021 Mar; 67(2):155-159. PMID: 33642516
Preimplantation genomic selection combined with an in vitro embryo production system is expected as a means of accelerating genetic improvement in cattle. While micromanipulation-based biopsy approaches are often used to...
2.
Ubagai K, Fukuda S, Mori T, Takatsuki H, Taguchi Y, Kageyama S, et al.
Biochem Biophys Res Commun . 2020 Apr; 526(4):1049-1053. PMID: 32307081
Real-time quaking-induced conversion (RT-QUIC) assays using Escherichia coli-derived purified recombinant prion protein (rPrP) enable us to amplify a trace amount of the abnormal form of PrP (PrP) from specimens. This...
3.
Hirayama H, Sakumoto R, Koyama K, Yasuhara T, Hasegawa T, Inaba R, et al.
J Reprod Dev . 2019 Nov; 66(1):49-55. PMID: 31761882
In bovine placentomes, the inflammatory response is considered important for the detachment of the fetal membrane from the caruncle after parturition. Glucocorticoids, a trigger of the onset of parturition, facilitate...
4.
Yasuhara T, Koyama K, Sakumoto R, Fujii T, Naito A, Moriyasu S, et al.
Theriogenology . 2019 Jul; 139:1-7. PMID: 31352133
The mechanism by which the fetal membrane detaches after parturition in cattle is poorly understood, but the upregulation of placentomal prostaglandin and estrogen synthesis are considered to be important. This...
5.
Fujii T, Naito A, Hirayama H, Kashima M, Yoshino H, Hanamure T, et al.
J Reprod Dev . 2019 Mar; 65(3):251-258. PMID: 30905888
Preimplantation genomic selection using genomic estimated breeding values (GEBVs) based on single nucleotide polymorphism (SNP) genotypes is expected to accelerate genetic improvement in cattle. To develop a preimplantation genomic selection...
6.
Hirayama H, Naito A, Fujii T, Sugimoto M, Takedomi T, Moriyasu S, et al.
J Vet Med Sci . 2019 Jan; 81(3):373-378. PMID: 30643104
We investigated the effects of genetic background on the responses to superovulation in Japanese Black cattle. The genotype frequencies of GRIA1 and FSHR relating to ovulation and follicular development in...
7.
Fujii T, Hirayama H, Fukuda S, Kageyama S, Naito A, Yoshino H, et al.
J Reprod Dev . 2018 May; 64(4):327-335. PMID: 29798965
Artificial insemination with cryopreserved semen is a well-developed technique commonly used for controlled reproduction in cattle. However, despite current technical advances, cryopreservation continues to damage bull spermatozoa, resulting in a...
8.
Fujii T, Hirayama H, Naito A, Kashima M, Sakai H, Fukuda S, et al.
J Reprod Dev . 2017 Aug; 63(5):497-504. PMID: 28781338
Preimplantation genomic selection based on single nucleotide polymorphism (SNP) genotypes is expected to accelerate genetic improvement in cattle. However, genome-wide genotyping at the early embryonic stage has several limitations, such...
9.
Hirayama H, Naito A, Fukuda S, Fujii T, Asada M, Inaba Y, et al.
J Reprod Dev . 2016 Nov; 63(1):95-100. PMID: 27853050
The concentration of circulating anti-Müllerian hormone (AMH) in cattle is a useful endocrine marker for ovarian response to superovulation. Although the AMH concentration undergoes little variation throughout the estrous cycle,...
10.
Sakurai N, Takahashi K, Emura N, Fujii T, Hirayama H, Kageyama S, et al.
Cell Reprogram . 2016 Aug; 18(5):309-318. PMID: 27500421
The functions of POU class 5 transcription factor 1 (Oct-4) and caudal-type homeobox 2 (Cdx2) in the differentiation of the murine inner cell mass (ICM) and trophectoderm (TE) have been...