Register      Login
Reproduction, Fertility and Development Reproduction, Fertility and Development Society
Vertebrate reproductive science and technology

Articles citing this paper

Developments in in vitro technologies for swine embryo production

Matthew B. Wheeler A B D , Sherrie G. Clark A and David J. Beebe C
+ Author Affiliations
- Author Affiliations

A Department of Animal Sciences, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

B Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

C Department of Biomedical Engineering, University of Wisconsin-Madison, Madison, WI 53706, USA.

D To whom correspondence should be addressed. email: mbwheele@uiuc.edu

Reproduction, Fertility and Development 16(2) 15-25 https://doi.org/10.1071/RD03074
Submitted: 1 August 2003  Accepted: 1 October 2003   Published: 2 January 2004



31 articles found in Crossref database.

Hand-made cloning approach: potentials and limitations
Vajta G., Kragh P. M., Mtango N. R., Callesen H.
Reproduction, Fertility and Development. 2005 17(2). p.97
Culture without the petri-dish
Thompson Jeremy G.
Theriogenology. 2007 67(1). p.16
Reduction of the incidence of polyspermic penetration into porcine oocytes by pretreatment of fresh spermatozoa with adenosine and a transient co-incubation of the gametes with caffeine
Funahashi Hiroaki, Romar Raquel
Reproduction. 2004 128(6). p.789
Culture systems for bovine embryos
Feugang Jean M., Camargo-Rodríguez Omar, Memili Erdogan
Livestock Science. 2009 121(2-3). p.141
A microfluidic in vitro cultivation system for mechanical stimulation of bovine embryos
Kim Minseok S., Bae Chae Yun, Wee Gabbine, Han Yong‐Mahn, Park Je‐Kyun
ELECTROPHORESIS. 2009 30(18). p.3276
Culture Media, Solutions, and Systems in Human ART (2014)
Applications of emerging technologies to the study and conservation of threatened and endangered species
Pukazhenthi Budhan, Comizzoli Pierre, Travis Alexander J., Wildt David E.
Reproduction, Fertility and Development. 2006 18(2). p.77
Poly(ADP‐ribosyl)ation is involved in pro‐survival autophagy in porcine blastocysts
Lee Hye Ran, Gupta Mukesh Kumar, Kim Duk Hyeon, Hwang Jeong Ho, Kwon Bumsup, Lee Hoon Taek
Molecular Reproduction and Development. 2016 83(1). p.37
Selenium improves the developmental ability and reduces the apoptosis in porcine parthenotes
Uhm Sang Jun, Gupta Mukesh Kumar, Yang Ji Hoon, Lee Sung‐Ho, Lee Hoon Taek
Molecular Reproduction and Development. 2007 74(11). p.1386
Optimal Conditions for Successful In Vitro Fertilization and Subsequent Embryonic Development in Sprague-Dawley Rats1
Jiang Jin-Yi, Tsang Benjamin K.
Biology of Reproduction. 2004 71(6). p.1974
Attempts towards derivation and establishment of bovine embryonic stem cell-like cultures
Maddox-Hyttel Poul, Gjørret Jakob O.
Reproduction, Fertility and Development. 2005 17(2). p.113
The effect of copper supplementation on in vitro maturation of porcine cumulus-oocyte complexes and subsequent developmental competence after parthenogenetic activation
Choi Hyerin, Lee Joohyeong, Yoon Junchul David, Hwang Seon-Ung, Cai Lian, Kim Mirae, Kim Gahye, Oh Dongjin, Kim Eunhye, Hyun Sang-Hwan
Theriogenology. 2021 164 p.84
Acid peptidase activity released from in vitro produced porcine embryos: A candidate marker to predict developmental competence
Telugu Bhanu Prakash V.L., Spate Lee, Prather Randall S., Green Jonathan A.
Molecular Reproduction and Development. 2009 76(4). p.417
Toward culture of single gametes: The development of microfluidic platforms for assisted reproduction
Wheeler M.B., Walters E.M., Beebe D.J.
Theriogenology. 2007 68 p.S178
Gamete and embryo isolation and culture with microfluidics
Smith G.D., Takayama S.
Theriogenology. 2007 68 p.S190
Vitamin C Enhances the In vitro Development of Porcine Pre‐implantation Embryos by Reducing Oxidative Stress
Hu J, Cheng D, Gao X, Bao J, Ma X, Wang H
Reproduction in Domestic Animals. 2012 47(6). p.873
Embryo Culture (2012)
da Rocha André Monteiro, Smith Gary D.
Oviduct epithelial cell‑derived extracellular vesicles promote the developmental competence of IVF porcine embryos
Fang Xun, Bang Seonggyu, Tanga Bereket, Seo Chaerim, Zhou Dongjie, Seong Gyeonghwan, Saadeldin Islam, Lee Sanghoon, Cui Xiang-Shun, Cho Jongki
Molecular Medicine Reports. 2023 27(6).
The effect of osmotic stress on the cell volume, metaphase II spindle and developmental potential of in vitro matured porcine oocytes
Mullen S.F., Rosenbaum M., Critser J.K.
Cryobiology. 2007 54(3). p.281
In vitro fertilization in pigs: New molecules and protocols to consider in the forthcoming years
Romar Raquel, Funahashi Hiroaki, Coy Pilar
Theriogenology. 2016 85(1). p.125
Scriptaid Upregulates Expression of Development-Related Genes, Inhibits Apoptosis, and Improves the Development of Somatic Cell Nuclear Transfer Mini-Pig Embryos
Zhang Li, Huang Yuemeng, Wu Yanjun, Si Jinglei, Huang Yanna, Jiang Qinyang, Lan Ganqiu, Guo Yafen, Jiang Hesheng
Cellular Reprogramming. 2017 19(1). p.19
In Vitro Culture Conditions Using Chemically Defined Media for In Vitro Matured and Intracytoplasmically Inseminated Porcine Oocytes
KAMIYA Chisato, KOBAYASHI Mariko, FUKUI Yutaka
Journal of Reproduction and Development. 2006 52(5). p.625
Post-hatching development of the porcine and bovine embryo—defining criteria for expected development in vivo and in vitro
Vejlsted Morten, Du Yutao, Vajta Gábor, Maddox-Hyttel Poul
Theriogenology. 2006 65(1). p.153
Transcriptional Profiling of Pig Embryogenesis by Using a 15-K Member Unigene Set Specific for Pig Reproductive Tissues and Embryos1
Whitworth K.M., Agca C., Kim J.-G., Patel R.V., Springer G.K., Bivens N.J., Forrester L.J., Mathialagan N., Green J.A., Prather R.S.
Biology of Reproduction. 2005 72(6). p.1437
Automated MEMS-based Drosophila embryo injection system for high-throughput RNAi screens
Zappe Stefan, Fish Matthew, Scott Matthew P., Solgaard Olav
Lab on a Chip. 2006 6(8). p.1012
Somatic cell nuclear transfer in pigs: recent achievements and future possibilities
Vajta Gábor, Zhang Yunhai, Macháty Zoltán
Reproduction, Fertility and Development. 2007 19(2). p.403
From Zygote to Implantation: Morphological and Molecular Dynamics during Embryo Development in the Pig
Oestrup O, Hall V, Petkov SG, Wolf XA, Hyldig S, Hyttel P
Reproduction in Domestic Animals. 2009 44(s3). p.39
Advances in Swine In Vitro Embryo Production Technologies
Gil MA, Cuello C, Parrilla I, Vazquez JM, Roca J, Martinez EA
Reproduction in Domestic Animals. 2010 45(s2). p.40
In Vitro Fertilization on a Single-Oocyte Positioning System Integrated with Motile Sperm Selection and Early Embryo Development
Ma Rui, Xie Lan, Han Chao, Su Kai, Qiu Tian, Wang Lei, Huang Guoliang, Xing Wanli, Qiao Jie, Wang Jundong, Cheng Jing
Analytical Chemistry. 2011 83(8). p.2964
Evaluation of Zona Pellucida Function for Sperm Penetration During In Vitro Fertilization in Pigs
TANIHARA Fuminori, NAKAI Michiko, KANEKO Hiroyuki, NOGUCHI Junko, OTOI Takeshige, KIKUCHI Kazuhiro
Journal of Reproduction and Development. 2013 59(4). p.385
In Vitro Fertilization (2019)
Yuan Peng, Yan Liying, Smith Gary D.

Committee on Publication Ethics


Abstract Export Citation Get Permission