368 results on '"LIGHTFOOT, J. TIMOTHY"'
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2. Biological/Genetic Regulation of Physical Activity Level
3. Exercise Biology and Medicine: Innovative Research to Improve Global Health
4. Rapid Transition from a High-Fat, High-Fructose to a Low-Fat, Low-Fructose Diet Reverses Gains in Bone Mass and Strength
5. It All Rolls Downstream: Upstream Control of Physical Activity Regulation
6. Association between Mitochondrial DNA Sequence Variants and V˙O2 max Trainability
7. Routledge Handbook of Sport and Exercise Systems Genetics
8. Introduction
9. The Evolution of Genetic Mechanisms Controlling Physical Activity
10. Afterword – Closing the Loop: Observations and Conclusions
11. The Physiology of Auto Racing
12. Inter-individual variation in adaptations to endurance and resistance exercise training: genetic approaches towards understanding a complex phenotype
13. Sibling Resemblance in Physical Activity Levels: The Peruvian Sibling Study on Growth and Health
14. Heart Rate Response of Professional Musicians When Playing Music
15. Can You Be Born a Couch Potato? The Genomic Regulation of Physical Activity
16. Reduced Wheel Running via a High-Fat Diet Is Reversed by a Chow Diet with No Added Benefit from Fecal Microbial Transplants
17. Acute Exposure to a High-Fat High-Sugar Diet Alters Wheel Running Activity: 3311 Board #180 June 2 9: 30 AM - 11: 00 AM
18. Alleles Associated with Voluntary Physical Activity are Predicted to be Older Than Anatomically Modern Humans: 1431 Board #239 May 31 8: 00 AM - 9: 30 AM
19. Physical Activity Impacts of an Activity-Friendly Community: A Natural Experiment Study Protocol
20. The Importance Of Accurate Measurements In Voluntary Wheel Running In Mice: 3665 Board #112 June 3 8: 00 AM - 9: 30 AM
21. 7,12-dimethylbenz(a)-anthracene (DMBA) & High Fat High Sugar Diet Decrease Physical Activity in Female Mice: 1018 Board #197 May 31 2: 00 PM - 3: 30 PM
22. Translation Goes Both Ways: The Power of Reverse Translation from Human Trials into Animal Models
23. A Different Method of Teaching Peer Review Systems.
24. The McArdle’s Mouse Model: Providing Important Insight into Skeletal Muscle Regulation
25. Environmental Endocrine Disruptor Affects Voluntary Physical Activity in Mice
26. The Effect Of A High Fat/high Sugar Diet And Physical Activity On Body Fat Percentage And Bone Mineral Density: 1905 Board #57 June 2, 3: 30 PM - 5: 00 PM
27. The Effect of a High Fat/High Sugar Diet on Physical Activity in Female Mice: 1441 Board #94 June 2, 9: 00 AM - 10: 30 AM
28. Characterization Of Mitochondrial Genome Indels In Individuals Classified By High And Low Vo 2max Trainability
29. Strain Screen Suggests Genetic Influence on Physical Activity Varies Across the Lifespan: 323 Board #174 May 27, 11: 00 AM - 12: 30 PM
30. Endocrine-disruption And The Regulation Of Physical Activity And Mammary Gland Development In Mice: 312 Board #163 May 27, 11: 00 AM - 12: 30 PM
31. Systems Exercise Genetics Research Design Standards
32. Epistatic interactions of genes influence within-individual variation of physical activity traits in mice
33. Sex Hormone Effects on Physical Activity Levels: Why Doesn’t Jane Run as Much as Dick?
34. Comparable Organ Protein Fractional Synthesis Rate of High and Low-Active Mice
35. A Ketogenic Diet In Mice Reduces Cardiac Protein Synthesis Compared to a Western Diet
36. Is physical activity regulated by genetics?
37. Correction: Protein fractional synthesis rates within tissues of high- and low-active mice
38. Biological/Genetic Regulation of Physical Activity Level: Consensus from GenBioPAC.
39. Protein fractional synthesis rates within tissues of high- and low-active mice
40. Mitochondrial DNA lesions and copy number are strain dependent in endurance‐trained mice
41. The Regulation of Physical Activity by Genetic Mechanisms: Is there a Drive to be Active?
42. Genetic Epidemiology, Physical Activity, and Inactivity
43. The reproducibility of tolerance to lower-body negative pressure and its quantification
44. Driven to Be Inactive?—The Genetics of Physical Activity
45. Current Understanding of the Genetic Basis for Physical Activity1-3
46. A High Fat/High Sugar Diet Alters the Gastrointestinal Metabolome in a Sex Dependent Manner
47. EFFECTS OF DIET ALTERATIONS, WITH OR WITHOUT FECAL MICROBIAL TRANSPLANTS, ON BONE INTEGRITY
48. Expression Of Tyrosine Hydroxylase In The Nucleus Accumbens Are Not Altered By Diet Or Fecal Transplantation In Male C57bl/6j Mice
49. INFLUENCE OF GENETIC BACKGROUND ON HEART MITOCHONDRIAL DNA LESIONS AND COPY NUMBER IN INBRED MICE
50. Activated whole-body arginine pathway in high-active mice
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