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

Articles citing this paper

cfArticle2ecfc1291681887$funcTITLE@71b331f8

Jose Fernando De La Torre-Sanchez A C , Kimberly Preis A B and George E. Seidel Jr A D
+ Author Affiliations
- Author Affiliations

A Animal Reproduction and Biotechnology Laboratory, Colorado State University, Fort Collins, CO 80523-1683, USA.

B Colorado Center for Reproductive Medicine, 799 E. Hampden Av., Englewood, CO 80113, USA.

C Present address: Centro de Investigación Regional ‘Pacifico Centro’, INIFAP, Interior Parque Los Colomos S/N Col. Providencia, GuadalaJara, Jalisco, Mexico, CP 44660.

D Corresponding author. Email: gseidel@colostate.edu

Reproduction, Fertility and Development 18(5) 585-596 https://doi.org/10.1071/RD05063
Submitted: 8 June 2005  Accepted: 7 March 2006   Published: 24 May 2006



42 articles found in Crossref database.

Production of embryos and a live offspring using post mortem reproductive material from bison (Bison bison bison) originating in Yellowstone National Park, USA
Benham Hayley M., McCollum Matthew P., Nol Pauline, Frey Rebecca K., Clarke P. Ryan, Rhyan Jack C., Barfield Jennifer P.
Theriogenology. 2021 160 p.33
Monitoring oocyte/embryo respiration using electrochemical-based oxygen sensors
Obeidat Yusra M., Evans Amanda J., Tedjo William, Chicco Adam J., Carnevale Elaine, Chen Thomas W.
Sensors and Actuators B: Chemical. 2018 276 p.72
Docosahexaenoic acid and phenazine ethosulfate are not efficient lipid modulators for porcine in vitro maturation systems
Braga José Victor Cardoso, Bohn Andrez Pastorello, Soares Luana Pescke, Komninou Eliza Rossi, Lucia Júnior Thomaz, Vieira Arnaldo Diniz, Mondadori Rafael Gianella
Veterinary Research Communications. 2022 46(3). p.731
Real-Time Analysis of Oxygen Gradient in Oocyte Respiration Using a High-Density Microelectrode Array
Tedjo William, Obeidat Yusra, Catandi Giovana, Carnevale Elaine, Chen Thomas
Biosensors. 2021 11(8). p.256
Effects of fetal calf serum, phenazine ethosulfate and either glucose or fructose during in vitro culture of bovine embryos on embryonic development after cryopreservation
Barceló‐Fimbres M., Seidel G.E.
Molecular Reproduction and Development. 2007 74(11). p.1395
Impact of l-carnitine on lipid content and post thaw survivability of buffalo embryos produced in vitro
Verma Megha, Pandey Sriti, Bhat Irfan A., Mukesh B., Anand J., Chandra Vikash, Sharma G. Taru
Cryobiology. 2018 82 p.99
Crucial surviving aspects for vitrified in vitro-produced bovine embryos
Sudano Mateus José, Paschoal Daniela Martins, da Silva Rascado Tatiana, Crocomo Letícia Ferrari, Magalhães Luis Carlos Oña, Junior Alício Martins, Machado Rui, da Cruz Landim-Alvarenga Fernanda
Zygote. 2014 22(2). p.124
Vitrification of early-stage bovine and equine embryos
Campos-Chillòn L.F., Suh T.K., Barcelo-Fimbres M., Seidel G.E., Carnevale E.M.
Theriogenology. 2009 71(2). p.349
Granulosa cell-derived extracellular vesicles mitigate the detrimental impact of thermal stress on bovine oocytes and embryos
Menjivar Nico G., Gad Ahmed, Gebremedhn Samuel, Ghosh Soham, Tesfaye Dawit
Frontiers in Cell and Developmental Biology. 2023 11
Lipid content and apoptosis of in vitro-produced bovine embryos as determinants of susceptibility to vitrification
Sudano Mateus José, Paschoal Daniela Martins, da Silva Rascado Tatiana, Magalhães Luis Carlos Oña, Crocomo Letícia Ferrari, de Lima-Neto João Ferreira, da Cruz Landim-Alvarenga Fernanda
Theriogenology. 2011 75(7). p.1211
Comparative Embryo Culture (2019)
Barfield Jennifer P.
Factors affecting in vitro maturation of alpaca (Lama paco) oocytes
Leisinger CA, Coffman EA, Coutinho da Silva MA, Forshey BS, Pinto CRF
Animal Reproduction Science. 2014 150(1-2). p.70
The effects of 2,4‐dinitrophenol and d‐glucose concentration on the development, sex ratio, and interferon‐tau (IFNT) production of bovine blastocysts
Green Mark P., Harvey Alexandra J., Spate Lee D., Kimura Koji, Thompson Jeremy G., Roberts R. Michael
Molecular Reproduction and Development. 2016 83(1). p.50
Localisation of phospholipase Cζ1 (PLCZ1) and postacrosomal WW-binding protein (WBP2 N-terminal like) on equine spermatozoa and flow cytometry quantification of PLCZ1 and association with cleavage in vitro
Gonzalez-Castro Raul A., Amoroso-Sanches Fabio, Stokes JoAnne E., Graham James K., Carnevale Elaine M.
Reproduction, Fertility and Development. 2019 31(12). p.1778
Cross-validation of techniques for measuring lipid content of bovine oocytes and blastocysts
Barceló-Fimbres M., Seidel G.E.
Theriogenology. 2011 75(3). p.434
Inhibiting diacylglycerol acyltransferase-1 reduces lipid biosynthesis in bovine blastocysts produced in vitro
Cañón-Beltrán K., Giraldo-Giraldo J., Cajas Y.N., Beltrán-Breña P., Hidalgo C.O., Vásquez N., Leal C.L.V., Gutiérrez-Adán A., González E.M., Rizos D.
Theriogenology. 2020 158 p.267
Comparative Reproductive Biology (2007)
Hasler John F.
Forskolin effect on the cryosurvival ofin vitro-produced bovine embryos in the presence or absence of fetal calf serum
Paschoal Daniela Martins, Sudano Mateus José, Guastali Midyan Daroz, Dias Maziero Rosiára Rosária, Crocomo Letícia Ferrari, Oña Magalhães Luis Carlos, da Silva Rascado Tatiana, Martins Alicio, da Cruz Landim-Alvarenga Fernanda
Zygote. 2014 22(2). p.146
Differential expression of selected candidate genes in bovine embryos produced in vitro and cultured with chemicals modulating lipid metabolism
Ghanem Nasser, Ha A-Na, Fakruzzaman Md., Bang Jae-Il, Lee Sang-Chan, Kong Il-Keun
Theriogenology. 2014 82(2). p.238
Effect of macromolecules in solutions for vitrification of mature bovine oocytes
Checura C.M., Seidel G.E.
Theriogenology. 2007 67(5). p.919
Use of bovine oocytes to evaluate in vitro fertilizing capacity of equine sperm
Campos-Chillòn L.F., Barcelo-Fimbres M., Carnevale E.M., Seidel G.E.
Theriogenology. 2007 68(3). p.515
Effects of phenazine ethosulfate during culture of bovine embryos on pregnancy rate, prenatal and postnatal development
Barceló-Fimbres M., Brink Z., Seidel G.E.
Theriogenology. 2009 71(2). p.355
Validation of a heterologous fertilization assay and comparison of fertilization rates of equine oocytes using in vitro fertilization, perivitelline, and intracytoplasmic sperm injections
Sessions-Bresnahan D.R., Graham J.K., Carnevale E.M.
Theriogenology. 2014 82(2). p.274
Cryopreservation of bison epididymal sperm: A strategy for improving post-thaw quality when collecting sperm in field conditions
Vilela Christiane Garcia, Marquez Juliana Messias, Graham James K., Barfield Jennifer P.
Theriogenology. 2017 89 p.155
Effect of dehydration prior to cryopreservation of large equine embryos
Barfield J.P., McCue P.M., Squires E.L., Seidel G.E.
Cryobiology. 2009 59(1). p.36
Tasa de fertilización, desarrollo y calidad de embriones bovinos Holstein producidos in vitro con semen sexado y adición de IGF-I
Martínez Guerrero Octavio, Antillón Ruíz Javier, Rodríguez Almeida Felipe Alonso
TECNOCIENCIA Chihuahua. 2016 9(3). p.140
IMSIS: An instrumented microphysiological system with integrated sensors for monitoring cellular metabolic activities
Cheng Ming-Hao, Way Ryan, Fresa Kyle, Catandi Giovana D., Carnevale Elaine, Chicco Adam J., Chen Thomas W.
Biosensors and Bioelectronics. 2024 263 p.116595
In Vitro Fertilization using Non‐sexed and Sexed Bovine Sperm: Sperm Concentration, Sorter Pressure, and Bull Effects
Barceló‐Fimbres M, Campos‐Chillón LF, Seidel Jr GE
Reproduction in Domestic Animals. 2011 46(3). p.495
Bovine Reproduction (2021)
Hasler John F., Barfield Jennifer P.
Use of Fetuin Before and During Vitrification of Bovine Oocytes
Horvath G, Seidel GE
Reproduction in Domestic Animals. 2008 43(3). p.333
Bovine Reproduction (2014)
Hasler John F., Barfield Jennifer P.
L-carnitine enhances developmental potential of bovine oocytes matured under high lipid concentrations in vitro
Catandi Giovana D., Cheng Ming-Hao, Chicco Adam J., Chen Tom, Carnevale Elaine M.
Animal Reproduction Science. 2023 252 p.107249
Effect of pterostilbene on development, equatorial lipid accumulation and reactive oxygen species production of in vitro‐produced bovine embryos
Sosa Froylan, Romo Salvador, Kjelland Michael E., Álvarez‐Gallardo Horacio, Pérez‐Reynozo Sandra, Urbán‐Duarte David, De La Torre‐Sánchez Jose Fernando
Reproduction in Domestic Animals. 2020 55(11). p.1490
Development of ovine chorionic somatomammotropin hormone-deficient pregnancies
Baker Callie M., Goetzmann Lindsey N., Cantlon Jeremy D., Jeckel Kimberly M., Winger Quinton A., Anthony Russell V.
American Journal of Physiology-Regulatory, Integrative and Comparative Physiology. 2016 310(9). p.R837
Metabolic regulation of in vitro-produced bovine embryos. II. Effects of phenazine ethosulfate, sodium azide and 2,4-dinitrophenol during post-compaction development on glucose metabolism and lipid accumulation
De La Torre-Sanchez Jose Fernando, Gardner David K., Preis Kimberly, Gibbons John, Seidel George E.
Reproduction, Fertility and Development. 2006 18(5). p.597
Improved developmental competence in embryos treated with lycopene during in vitro culture system
Chowdhury M.M.R., Mesalam Ayman, Khan Imran, Joo Myeong‐Don, Lee Kyeong‐Lim, Xu Lianguang, Afrin Fahmida, Kong Il‐Keun
Molecular Reproduction and Development. 2018 85(1). p.46
Impact of Equine and Bovine Oocyte Maturation in Follicular Fluid From Young and Old Mares on Embryo Production in Vitro
Spacek Sheila G., Carnevale Elaine M.
Journal of Equine Veterinary Science. 2018 68 p.94
Pregnancy rates of lactating cows after transfer of in vitro produced embryos using X-sorted sperm
Rasmussen S., Block J., Seidel G.E., Brink Z., McSweeney K., Farin P.W., Bonilla L., Hansen P.J.
Theriogenology. 2013 79(3). p.453
Effects of either glucose or fructose and metabolic regulators on bovine embryo development and lipid accumulation in vitro
Barceló‐Fimbres M., Seidel G.E.
Molecular Reproduction and Development. 2007 74(11). p.1406
Evaluation of boar and bull sperm capacitation and the acrosome reaction using flow cytometry
Purdy Phillip H., Graham James K., Azevedo Hymerson C.
Animal Reproduction Science. 2022 246 p.106846
The Involvement of Proline-Rich 15 in Early Conceptus Development in Sheep1
Purcell Scott H., Cantlon Jeremy D., Wright Casey D., Henkes Luiz E., Seidel George E., Anthony Russell V.
Biology of Reproduction. 2009 81(6). p.1112
A multi-sensor system for measuring bovine embryo metabolism
Obeidat Yusra, Catandi Giovana, Carnevale Elaine, Chicco Adam J., DeMann August, Field Stuart, Chen Tom
Biosensors and Bioelectronics. 2019 126 p.615

Committee on Publication Ethics


Abstract Export Citation Get Permission