World's Best Scientists 2026 revealed!
Christopher K. Reynolds

Christopher K. Reynolds

D-Index & Metrics

Animal Science and Veterinary

D-Index
63
Citations
12786
World Ranking
274
National Ranking
29

Christopher K. Reynolds publication distribution in Animal Science and Veterinary in 2026

The chart shows the distribution of publications by all Research.com ranked scientists in the field of Animal Science and Veterinary in 2026. The highlighted bar marks where Christopher K. Reynolds sits on this spectrum.

29–33 publications: 1 scientists 34–38 publications: 6 scientists 39–43 publications: 17 scientists 44–48 publications: 23 scientists 49–53 publications: 28 scientists 54–58 publications: 44 scientists 59–63 publications: 66 scientists 64–68 publications: 75 scientists 69–73 publications: 71 scientists 74–78 publications: 85 scientists 79–83 publications: 108 scientists 84–88 publications: 105 scientists 89–93 publications: 84 scientists 94–98 publications: 103 scientists 99–103 publications: 97 scientists 104–108 publications: 95 scientists 109–113 publications: 89 scientists 114–118 publications: 88 scientists 119–123 publications: 109 scientists 124–128 publications: 93 scientists 129–133 publications: 89 scientists 134–138 publications: 95 scientists 139–143 publications: 92 scientists 144–148 publications: 80 scientists 149–153 publications: 75 scientists 154–158 publications: 74 scientists 159–163 publications: 67 scientists 164–168 publications: 53 scientists 169–173 publications: 62 scientists 174–178 publications: 63 scientists 179–183 publications: 50 scientists 184–188 publications: 55 scientists 189–193 publications: 50 scientists 194–198 publications: 27 scientists 199–203 publications: 44 scientists 204–208 publications: 31 scientists 209–213 publications: 28 scientists 214–218 publications: 38 scientists 219–223 publications: 33 scientists 224–228 publications: 36 scientists 229–233 publications: 29 scientists 234–238 publications: 35 scientists 239–243 publications: 23 scientists 244–248 publications: 24 scientists 249–253 publications: 29 scientists 254–258 publications: 28 scientists 259–263 publications: 21 scientists 264–268 publications: 25 scientists 269–273 publications: 11 scientists 274–278 publications: 18 scientists 279–283 publications: 13 scientists 284–288 publications: 18 scientists 289–293 publications: 10 scientists 294–298 publications: 12 scientists 299–303 publications: 11 scientists 304–308 publications: 15 scientists 309–313 publications: 14 scientists 314–318 publications: 14 scientists 319–323 publications: 8 scientists 324–328 publications: 8 scientists 329–333 publications: 13 scientists 334–338 publications: 14 scientists 339–343 publications: 13 scientists 344–348 publications: 10 scientists 349–353 publications: 11 scientists 354–358 publications: 5 scientists 359–363 publications: 8 scientists 364–368 publications: 8 scientists 369–373 publications: 6 scientists 374–378 publications: 7 scientists 379–383 publications: 8 scientists 384–388 publications: 3 scientists 389–393 publications: 4 scientists 394–398 publications: 5 scientists 399–403 publications: 8 scientists 404–408 publications: 5 scientists 409–413 publications: 4 scientists 414–418 publications: 3 scientists 419–423 publications: 8 scientists 424–428 publications: 5 scientists 429–433 publications: 3 scientists 434–438 publications: 5 scientists 439–441 publications: 5 scientists 442+ publications: 99 scientists
29 publications 442+

This scientist: 234 publications — 81st percentile

81% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 442 publications or more.

Christopher K. Reynolds D-index placement in Animal Science and Veterinary in 2026

The chart shows the D-index (discipline H-index) distribution of Animal Science and Veterinary scientists ranked by Research.com in 2026. The highlighted bar marks where Christopher K. Reynolds sits on this spectrum.

20 D-Index: 5 scientists 21 D-Index: 22 scientists 22 D-Index: 31 scientists 23 D-Index: 44 scientists 24 D-Index: 53 scientists 25 D-Index: 66 scientists 26 D-Index: 80 scientists 27 D-Index: 101 scientists 28 D-Index: 106 scientists 29 D-Index: 116 scientists 30 D-Index: 154 scientists 31 D-Index: 158 scientists 32 D-Index: 143 scientists 33 D-Index: 137 scientists 34 D-Index: 126 scientists 35 D-Index: 134 scientists 36 D-Index: 112 scientists 37 D-Index: 115 scientists 38 D-Index: 105 scientists 39 D-Index: 111 scientists 40 D-Index: 107 scientists 41 D-Index: 87 scientists 42 D-Index: 74 scientists 43 D-Index: 62 scientists 44 D-Index: 61 scientists 45 D-Index: 41 scientists 46 D-Index: 51 scientists 47 D-Index: 43 scientists 48 D-Index: 28 scientists 49 D-Index: 47 scientists 50 D-Index: 40 scientists 51 D-Index: 34 scientists 52 D-Index: 33 scientists 53 D-Index: 43 scientists 54 D-Index: 16 scientists 55 D-Index: 32 scientists 56 D-Index: 21 scientists 57 D-Index: 18 scientists 58 D-Index: 28 scientists 59 D-Index: 33 scientists 60 D-Index: 17 scientists 61 D-Index: 21 scientists 62 D-Index: 18 scientists 63 D-Index: 21 scientists 64 D-Index: 9 scientists 65 D-Index: 20 scientists 66 D-Index: 11 scientists 67 D-Index: 16 scientists 68 D-Index: 12 scientists 69 D-Index: 17 scientists 70 D-Index: 13 scientists 71 D-Index: 15 scientists 72 D-Index: 11 scientists 73 D-Index: 11 scientists 74 D-Index: 14 scientists 75 D-Index: 5 scientists 76 D-Index: 6 scientists 77+ D-Index: 100 scientists
20 D-Index 77+

This scientist: 63 D-Index — 92nd percentile

92% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 77 D-Index or more.

Overview

What is he best known for?

The fields of study he is best known for:

  • Biochemistry
  • Internal medicine
  • Metabolism

His primary areas of study are Lactation, Animal science, Internal medicine, Endocrinology and Dry matter. His Lactation research incorporates themes from Dairy cattle, Food science and Polyunsaturated fatty acid. Christopher K. Reynolds combines subjects such as Rumen, Digestion and Small intestine with his study of Dairy cattle.

His Animal science study deals with Nutrient intersecting with Thermogenesis, Fodder, Forage and Energy metabolism. His study in the field of Metabolism and Insulin also crosses realms of Composition. Christopher K. Reynolds interconnects Pregnancy, Luteal phase, Ice calving and Latin square in the investigation of issues within Dry matter.

His most cited work include:

  • Splanchnic metabolism of dairy cows during the transition from late gestation through early lactation. (317 citations)
  • Examination of the persistency of milk fatty acid composition responses to fish oil and sunflower oil in the diet of dairy cows. (261 citations)
  • Nitrogen recycling through the gut and the nitrogen economy of ruminants: an asynchronous symbiosis (252 citations)

What are the main themes of his work throughout his whole career to date?

Christopher K. Reynolds spends much of his time researching Animal science, Dairy cattle, Internal medicine, Dry matter and Food science. His Animal science study combines topics in areas such as Total mixed ration, Rumen and Forage. The study incorporates disciplines such as Ruminant, Lactation, Starch and Nitrogen in addition to Dairy cattle.

His study in Internal medicine is interdisciplinary in nature, drawing from both Endocrinology and Casein. Respiration is closely connected to Latin square in his research, which is encompassed under the umbrella topic of Dry matter. His Food science research focuses on Polyunsaturated fatty acid and how it relates to Conjugated linoleic acid and Sunflower oil.

He most often published in these fields:

  • Animal science (35.92%)
  • Dairy cattle (23.30%)
  • Internal medicine (23.30%)

What were the highlights of his more recent work (between 2017-2021)?

  • Animal science (35.92%)
  • Dry matter (22.82%)
  • Beef cattle (6.31%)

In recent papers he was focusing on the following fields of study:

His main research concerns Animal science, Dry matter, Beef cattle, Forage and Silage. His studies in Animal science integrate themes in fields like Ruminant, Nitrogen, Rumen, Urine and Digestion. His work on Latin square as part of general Rumen research is frequently linked to Particle-size distribution, bridging the gap between disciplines.

He combines Dry matter and Mathematics in his research. His research investigates the connection between Forage and topics such as Dairy cattle that intersect with problems in Neutral Detergent Fiber. His Silage study combines topics from a wide range of disciplines, such as CHOP, Herd, Dairy herds and Metabolism.

Between 2017 and 2021, his most popular works were:

  • Prediction of enteric methane production, yield, and intensity in dairy cattle using an intercontinental database (72 citations)
  • Symposium review: Uncertainties in enteric methane inventories, measurement techniques, and prediction models (41 citations)
  • Application of Sentinel-2A data for pasture biomass monitoring using a physically based radiative transfer model (34 citations)

In his most recent research, the most cited papers focused on:

  • Biochemistry
  • Internal medicine
  • Metabolism

His main research concerns Dry matter, Forage, Animal science, Predictive modelling and Beef cattle. Christopher K. Reynolds has included themes like Silage, Lactose and Total mixed ration in his Dry matter study. His research integrates issues of Ruminant, Rumen and Manure in his study of Animal science.

His work deals with themes such as Linseed oil, Saturated fatty acid, Essential nutrient, Nutrient and Digestion, which intersect with Rumen. Christopher K. Reynolds applies his multidisciplinary studies on Generalized linear mixed model and Dairy cattle in his research. Dairy cattle and Enteric methane are frequently intertwined in his study.

Best Publications

  • Splanchnic metabolism of dairy cows during the transition from late gestation through early lactation

    C.K. Reynolds;P.C. Aikman;B. Lupoli;D.J. Humphries

  • Nitrogen recycling through the gut and the nitrogen economy of ruminants: an asynchronous symbiosis

    C. K. Reynolds;N. B. Kristensen

  • Strategies for optimizing nitrogen use by ruminants

    S. Calsamiglia;A. Ferret;C. K. Reynolds;N. B. Kristensen

  • Examination of the persistency of milk fatty acid composition responses to fish oil and sunflower oil in the diet of dairy cows.

    K. J. Shingfield;C. K. Reynolds;G. Hervas;J. M. Griinari

  • Effect of Prepartum Propylene Glycol Administration on Periparturient Fatty Liver in Dairy Cows

    Vaughn A. Studer;Ric R. Grummer;Sandra J. Bertics;Christopher K. Reynolds

  • Effects of diet forage-to-concentrate ratio and intake on energy metabolism in growing beef heifers : whole body energy and nitrogen balance and visceral heat production

    Christopher K. Reynolds;Henry F. Tyrrell;Paul J. Reynolds

  • Prediction of enteric methane production, yield, and intensity in dairy cattle using an intercontinental database

    Mutian Niu;Ermias Kebreab;Alexander N. Hristov;Joonpyo Oh

  • Nutritional implications of gastrointestinal and liver metabolism in ruminants

    C. J. Seal;C. K. Reynolds

  • Invited review: Nitrogen in ruminant nutrition: A review of measurement techniques.

    A.N. Hristov;A. Bannink;L.A. Crompton;P. Huhtanen

  • Associations between dairy consumption and body weight: a review of the evidence and underlying mechanisms.

    Anestis Dougkas;Christopher K. Reynolds;Ian D. Givens;Peter Creighton Elwood

  • Design, implementation and interpretation of in vitro batch culture experiments to assess enteric methane mitigation in ruminants—a review

    D. R. Yáñez-Ruiz;A. Bannink;J. Dijkstra;Ermias Kebreab

  • Review of current in vivo measurement techniques for quantifying enteric methane emission from ruminants

    K. J. Hammond;L. A. Crompton;A. Bannink;J. Dijkstra

  • Techniques for Measuring Blood Flow in Splanchnic Tissues of Cattle

    Gerald B. Huntington;Christopher K. Reynolds;Ben H. Stroud

  • Absorption and delivery of nutrients for milk protein synthesis by portal-drained viscera.

    C.K. Reynolds;D.L. Harmon;M.J. Cecava

  • Production and metabolic effects of site of starch digestion in dairy cattle

    C.K. Reynolds

  • Feeding Rumen-Inert Fats Differing in Their Degree of Saturation Decreases Intake and Increases Plasma Concentrations of Gut Peptides in Lactating Dairy Cows

    A.E. Relling;C.K. Reynolds

  • Effect of forage type and proportion of concentrate in the diet on milk fatty acid composition in cows given sunflower oil and fish oil

    K. J. Shingfield;Chris K. Reynolds;B. Lupoli;V. Toivonen

  • Symposium review: Uncertainties in enteric methane inventories, measurement techniques, and prediction models

    A. N. Hristov;Ermias Kebreab;M. Niu;J. Oh

  • Visceral tissue mass and rumen volume in dairy cows during the transition from late gestation to early lactation.

    C.K. Reynolds;B. Dürst;B. Lupoli;D.J. Humphries

  • Effects of 3-nitrooxypropanol on methane emission, digestion, and energy and nitrogen balance of lactating dairy cows

    C.K. Reynolds;D.J. Humphries;P. Kirton;M. Kindermann

  • Methane emissions from cattle: Estimates from short-term measurements using a GreenFeed system compared with measurements obtained using respiration chambers or sulphur hexafluoride tracer

    Kirsty Hammond;David Humphries;Les Crompton;Colin Green

  • Net portal-drained visceral and hepatic metabolism of glucose, L-lactate, and nitrogenous compounds in lactating holstein cows.

    Christopher K. Reynolds;Gerald B. Huntington;Henry F. Tyrrell;Paul J. Reynolds

  • Diet digestibility, rate of passage, and eating and rumination behavior of Jersey and Holstein cows.

    P.C. Aikman;C.K. Reynolds;D.E. Beever

  • Effects of diet forage-to-concentrate ratio and intake on energy metabolism in growing beef heifers: net nutrient metabolism by visceral tissues.

    Christopher K. Reynolds;Henry F. Tyrrell;Paul J. Reynolds

  • Metabolism of Nitrogenous Compounds by Ruminant Liver

    Christopher K. Reynolds

  • Effects of postrumen starch infusion on milk production and energy metabolism in dairy cows.

    C.K. Reynolds;S.B. Cammell;D.J. Humphries;D.E. Beever

  • Net Metabolism of Volatile Fatty Acids, D-β-Hydroxybutyrate, Nonesterified Fatty Acids, and Blood Gasses by Portal-Drained Viscera and Liver of Lactating Holstein Cows,

    Christopher K. Reynolds;Gerald B. Huntington;Henry F. Tyrrell;Paul J. Reynolds

  • Dry Matter Intake is Decreased More by Abomasal Infusion of Unsaturated Free Fatty Acids than by Unsaturated Triglycerides

    N.B. Litherland;S. Thire;A.D. Beaulieu;C.K. Reynolds

Frequent Co-Authors

David Humphries
David Humphries University of Reading
Jan Dijkstra
Jan Dijkstra Wageningen University & Research
Kevin J. Shingfield
Kevin J. Shingfield Aberystwyth University
Ermias Kebreab
Ermias Kebreab University of California, Davis
Angela Schwarm
Angela Schwarm Norwegian University of Life Sciences
Alexander N. Hristov
Alexander N. Hristov Pennsylvania State University
A. Bannink
A. Bannink Wageningen University & Research
D.I. Givens
D.I. Givens University of Reading
Tom Misselbrook
Tom Misselbrook Rothamsted Research

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