Mike L. Looper
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Also affiliated: New Mexico State University (2003–2004); Oklahoma State University (2002–2003); Agricultural Research Service (2002–2012); United States Department of Agriculture (2004–2011); Dale Bumpers Small Farms Research Center (2002–2012); Southern Plains Agricultural Research Center (2004)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
M. L. Looper's research has focused on the study of plant physiology, specifically investigating the physiological responses of plants to environmental stressors. This work has included examining how various factors impact plant growth and development, contributing to the understanding of plant adaptation and resilience in different conditions. Recent publications indicate activity in this area, with a focus on specific research questions within plant science.
Metrics
- h-index: 21
- Publications: 77
- Citations: 1,518
Selected Publications
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Animal science program accreditation? This is the future (2020)
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Arkansas beef cattle industry: 2017 self-assessment (2019)
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090 Associations Among Bovine Melatonin Receptor 1A and Dopamine D2 Receptor Gene Mutations, Hair Coat Scores, and Calving Rates in Beef Cattle (2016)
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002 Prolactin, a Candidate Gene for Productivity Traits in Angus-Based Cattle (2016)
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017 Comparing post test scores for an animal handling and control workshop conducted two consecutive years (2016)
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Removal of ruminal contents followed by restricted feeding does not affect the frequency of luteinizing-hormone pulses in steers (2015)
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98 COMMERCIAL APPLICATION OF A NEW COW-SIDE LH ASSAY FOR DETERMINING OPTIMUM AI INTERVALS IN SUPEROVULATED BEEF DONORS IN THE USA: A PRELIMINARY STUDY (2013)
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Performance by spring and fall-calving cows grazing with full, limited, or no access to toxic Neotyphodium coenophialum-infected tall fescue1 (2012)
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Effects of dry cow treatment of beef cows on pathogenic organisms, milk somatic cell counts, and calf growth during the subsequent lactation1 (2007)
Collaboration Network
Top Collaborators
- Body condition at parturition and postpartum weight changes do not influence the incidence of short-lived corpora lutea in postpartum beef cows1
- Influence of estradiol, progesterone, and nutrition on concentrations of gonadotropins and GnRH receptors, and abundance of mRNA for GnRH receptors and gonadotropin subunits in pituitary glands of beef cows1,2
- Efficacy of intramuscular treatment of beef cows with oxytetracycline to reduce mastitis and to increase calf growth2
- Effects of dry cow treatment of beef cows on pathogenic organisms, milk somatic cell counts, and calf growth during the subsequent lactation1
- Removal of ruminal contents followed by restricted feeding does not affect the frequency of luteinizing-hormone pulses in steers
Showing 5 of 6 shared publications
- Body condition at parturition and postpartum weight changes do not influence the incidence of short-lived corpora lutea in postpartum beef cows1
- Efficacy of intramuscular treatment of beef cows with oxytetracycline to reduce mastitis and to increase calf growth2
- Effects of dry cow treatment of beef cows on pathogenic organisms, milk somatic cell counts, and calf growth during the subsequent lactation1
- Removal of ruminal contents followed by restricted feeding does not affect the frequency of luteinizing-hormone pulses in steers
- Influence of estradiol, progesterone, and nutrition on concentrations of gonadotropins and GnRH receptors, and abundance of mRNA for GnRH receptors and gonadotropin subunits in pituitary glands of beef cows1,2
- Efficacy of intramuscular treatment of beef cows with oxytetracycline to reduce mastitis and to increase calf growth2
- Removal of ruminal contents followed by restricted feeding does not affect the frequency of luteinizing-hormone pulses in steers
- Estrous and Luteal Activity of Postpartum Beef Cows After Treatment with Gonadotropin-Releasing Hormone and Prostaglandin F2α
- Performance by spring and fall-calving cows grazing with full, limited, or no access to toxic Neotyphodium coenophialum-infected tall fescue1
- 002 Prolactin, a Candidate Gene for Productivity Traits in Angus-Based Cattle
- 090 Associations Among Bovine Melatonin Receptor 1A and Dopamine D2 Receptor Gene Mutations, Hair Coat Scores, and Calving Rates in Beef Cattle
- 002 Prolactin, a Candidate Gene for Productivity Traits in Angus-Based Cattle
- 017 Comparing post test scores for an animal handling and control workshop conducted two consecutive years
- 090 Associations Among Bovine Melatonin Receptor 1A and Dopamine D2 Receptor Gene Mutations, Hair Coat Scores, and Calving Rates in Beef Cattle
- Efficacy of intramuscular treatment of beef cows with oxytetracycline to reduce mastitis and to increase calf growth2
- Effects of dry cow treatment of beef cows on pathogenic organisms, milk somatic cell counts, and calf growth during the subsequent lactation1
- Efficacy of intramuscular treatment of beef cows with oxytetracycline to reduce mastitis and to increase calf growth2
- Effects of dry cow treatment of beef cows on pathogenic organisms, milk somatic cell counts, and calf growth during the subsequent lactation1
- Performance by spring and fall-calving cows grazing with full, limited, or no access to toxic Neotyphodium coenophialum-infected tall fescue1
- Arkansas beef cattle industry: 2017 self-assessment
- 002 Prolactin, a Candidate Gene for Productivity Traits in Angus-Based Cattle
- 090 Associations Among Bovine Melatonin Receptor 1A and Dopamine D2 Receptor Gene Mutations, Hair Coat Scores, and Calving Rates in Beef Cattle
- 002 Prolactin, a Candidate Gene for Productivity Traits in Angus-Based Cattle
- 090 Associations Among Bovine Melatonin Receptor 1A and Dopamine D2 Receptor Gene Mutations, Hair Coat Scores, and Calving Rates in Beef Cattle
- Efficacy of intramuscular treatment of beef cows with oxytetracycline to reduce mastitis and to increase calf growth2
- Influence of estradiol, progesterone, and nutrition on concentrations of gonadotropins and GnRH receptors, and abundance of mRNA for GnRH receptors and gonadotropin subunits in pituitary glands of beef cows1,2
- Influence of estradiol, progesterone, and nutrition on concentrations of gonadotropins and GnRH receptors, and abundance of mRNA for GnRH receptors and gonadotropin subunits in pituitary glands of beef cows1,2
- Influence of estradiol, progesterone, and nutrition on concentrations of gonadotropins and GnRH receptors, and abundance of mRNA for GnRH receptors and gonadotropin subunits in pituitary glands of beef cows1,2
- Influence of estradiol, progesterone, and nutrition on concentrations of gonadotropins and GnRH receptors, and abundance of mRNA for GnRH receptors and gonadotropin subunits in pituitary glands of beef cows1,2
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