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Fostering independent research for public health sciences...

Publications
1. Bartlett MF, Lehnhard RA. The lactate paradox: a review. Comparative Exercise Physiology. 2010/02// 2010;7(01):1–13. doi:10.1017/S1755254010000176
2. Lehnhard RA, Bartlett M, Roche BM, Hinchcliff KW, McKeever KH. Variations in lactate during graded exercise test due to sampling location and method. Comparative Exercise Physiology. 2010 2010;7(2):81–87.
3. Fitzgerald LF, Hoffmann BJ, Hartman EL, Bartlett MF. Considerations for determining human ex vivo submaximal skeletal muscle mitochondrial function. J Physiol (Lond). 2016/01/15/ 2016;594(2):261–262. doi:10.1113/JP271673
4. Bartlett MF, Miehm JD, Fitzgerald LF, Straight CR. Do changes in mitochondrial quality contribute to increases in skeletal muscle oxidative capacity following endurance training? J Physiol (Lond). 2017/03/15/ 2017;595(6):1861–1862. doi:10.1113/JP273809
5. Chung S, Nelson MD, Hamaoka T, et al. Commentaries on Viewpoint: Principles, insights, and potential pitfalls of the noninvasive determination of muscle oxidative capacity by near-infrared spectroscopy. J Appl Physiol. 2018//01/01 2018;124(1):249–255. doi:10.1152/japplphysiol.00857.2017
6. Bartlett MF. MECHANISMS THAT LIMIT OXIDATIVE PHOSPHORYLATION DURING HIGH-INTENSITY MUSCLE CONTRACTIONS IN VIVO (Doctoral Dissertation). University of Massachusetts Amherst, Amherst, Massachusetts. 2019.
7. Bartlett MF, Fitzgerald LF, Nagarajan R, Hiroi Y, Kent JA. Oxidative ATP Synthesis in Human Quadriceps Declines During 4 Minutes of Maximal Contractions. J Physiol (Lond). 2020;598(10):1847–1863.
8. Bartlett MF, Fitzgerald LF, Nagarajan R, Kent JA. Validity and accuracy of calculating oxidative ATP synthesis in vivo during high-intensity skeletal muscle contractions. NMR Biomed. 2020:e4381.
9. Bartlett MF, Oneglia A, Jaffery MF, Manitowabi-Huebner S, Hueber DM, Nelson MD. Kinetic Differences Between Macro- and Microvascular Measures of Reactive Hyperemia. J Appl Physiol. 09/17/2020 2020;129(4):1183–1192. doi:10.1152/japplphysiol.00481.2020
10. Jaber Y, Jiménez Francisco E, Bartlett M, Fitzgerald L, Kent J, Sup Iv F. Magnetic Resonance Compatible Knee Extension Ergometer. J Biomech Eng. 03/06/2020 2020;142(9):095001. doi:10.1115/1.4046585
11. Fitzgerald L, Ryan M, Bartlett M, Miehm J, Kent J. Muscle architecture, voluntary activation, and low-frequency fatigue do not explain the greater fatigue of older compared with young women during high-velocity contractions. PLoS ONE. 11/03/2020 2020;15(11):e0234217. doi:10.1371/journal.pone.0234217
12. A O, S Z, MF B. Shear stress-induced flow-mediated dilatation: is it up to haemoglobin? J Physiol (Lond). 2020 Dec 2020;598(24):5609–5610. doi:10.1113/JP280649
13. Bartlett MF, Jordan SM, Hueber DM, Nelson MD. Impact of Changes in Tissue Optical Properties on Near-Infrared Diffuse Correlation Spectroscopy Measures of Skeletal Muscle Blood Flow. J Appl Physiol. 02/11/2021 2021;130(4):1183–1195. doi:10.1152/japplphysiol.00857.2020
14. Bartlett M, Fitzgerald L, Kent J. Rates of oxidative ATP synthesis are not augmented beyond the pH threshold in human vastus lateralis muscles during a stepwise contraction protocol. J Physiol (Lond). 02/12/2021 2021;599(7):1997–2013. doi:10.1113/JP280851
15. Fitzgerald LF, Bartlett MF, Nagarajan R, Francisco EJ, F.C. SI, Kent JA. Effects of old age and contraction mode on knee extensor muscle ATP flux and metabolic economy in vivo. J Physiol (Lond). 04/19/2021 2021;599(12):3063–3080. doi:10.1113/JP281117
16. Bartlett MF, Akins JD, Oneglia AP, Brothers RM, Wilkes D, Nelson MD. Impact of cutaneous blood flow on NIR-DCS measures of skeletal muscle blood flow index. J Appl Physiol. Sep 1 2021;131(3):914–926. doi:10.1152/japplphysiol.00337.2021
17. Bartlett MF, Palmero-Canton A, Oneglia AP, et al. Epinephrine iontophoresis attenuates changes in skin blood flow and abolishes cutaneous contamination of near-infrared diffuse correlation spectroscopy estimations of muscle perfusion. Am J Physiol Regul Integr Comp Physiol. Mar 1 2023;324(3):R368–r380. doi:10.1152/ajpregu.00242.2022
18. Bartlett MF, Fitzgerald LF, Nagarajan R, Kent JA. Measurements of in vivo skeletal muscle oxidative capacity are lower following sustained isometric compared with dynamic contractions. Appl Physiol Nutr Metab. Oct 31 2023;doi:10.1139/apnm-2023-0315
19. Fitzgerald LF, Bartlett MF, Kent JA. Muscle fatigue, bioenergetic responses and metabolic economy during load- and velocity-based maximal dynamic contractions in young and older adults. Physiol Rep. Nov 2023;11(22):e15876. doi:10.14814/phy2.15876
20. Bartlett MF, Fitzgerald LF, Nagarajan R, Kent JA. Measurements of in vivo skeletal muscle oxidative capacity are lower following sustained isometric compared with dynamic contractions. Appl Physiol Nutr Metab. Feb 1 2024;49(2):250–264. doi:10.1139/apnm-2023-0315
21. Zhang B, Lowrance D, Sarma MK, et al. 3T (31) P/(1) H calf muscle coil for (1) H and (31) P MRI/MRS integrated with NIRS data acquisition. Magn Reson Med. Jan 24 2024;doi:10.1002/mrm.30025
22. Bartlett MF, Oneglia AP, Ricard MD, et al. DCS blood flow index underestimates skeletal muscle perfusion in vivo: rationale and early evidence for the NIRS-DCS perfusion index. J Biomed Opt. Feb 2024;29(2):020501. doi:10.1117/1.Jbo.29.2.020501