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Wouter Hoogkamer

TitleResearch Associate
InstitutionUniversity of Colorado Boulder
DepartmentIntegrative Physiology
Phone303/492-0926

    Collapse Bibliographic 
    Collapse selected publications
    Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Faculty can login to make corrections and additions.
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    1. Kipp S, Kram R, Hoogkamer W. Extrapolating Metabolic Savings in Running: Implications for Performance Predictions. Front Physiol. 2019; 10:79. PMID: 30804807.
      View in: PubMed
    2. Hoogkamer W, Snyder KL, Arellano CJ. Reflecting on Eliud Kipchoge's Marathon World Record: An Update to Our Model of Cooperative Drafting and Its Potential for a Sub-2-Hour Performance. Sports Med. 2019 Feb; 49(2):167-170. PMID: 30671908.
      View in: PubMed
    3. Swinnen W, Hoogkamer W, Delabastita T, Aeles J, De Groote F, Vanwanseele B. Effect of habitual foot-strike pattern on the gastrocnemius medialis muscle-tendon interaction and muscle force production during running. J Appl Physiol (1985). 2019 Mar 01; 126(3):708-716. PMID: 30629477.
      View in: PubMed
    4. Hoogkamer W, Kipp S, Kram R. The Biomechanics of Competitive Male Runners in Three Marathon Racing Shoes: A Randomized Crossover Study. Sports Med. 2019 Jan; 49(1):133-143. PMID: 30460454.
      View in: PubMed
    5. Hoogkamer W, Snyder KL, Arellano CJ. Modeling the Benefits of Cooperative Drafting: Is There an Optimal Strategy to Facilitate a Sub-2-Hour Marathon Performance? Sports Med. 2018 Dec; 48(12):2859-2867. PMID: 30298477.
      View in: PubMed
    6. Hoogkamer W, Kipp S, Frank JH, Farina EM, Luo G, Kram R. Correction to: A Comparison of the Energetic Cost of Running in Marathon Racing Shoes. Sports Med. 2018 06; 48(6):1521-1522. PMID: 29249085.
      View in: PubMed
    7. Hoogkamer W, Kipp S, Frank JH, Farina EM, Luo G, Kram R. A Comparison of the Energetic Cost of Running in Marathon Racing Shoes. Sports Med. 2018 04; 48(4):1009-1019. PMID: 29143929.
      View in: PubMed
    8. da Silva ES, Fischer G, da Rosa RG, Schons P, Teixeira LBT, Hoogkamer W, Peyré-Tartaruga LA. Gait and functionality of individuals with visual impairment who participate in sports. Gait Posture. 2018 May; 62:355-358. PMID: 29614469.
      View in: PubMed
    9. Corporaal SHA, Bruijn SM, Hoogkamer W, Chalavi S, Boisgontier MP, Duysens J, Swinnen SP, Gooijers J. Different neural substrates for precision stepping and fast online step adjustments in youth. Brain Struct Funct. 2018 May; 223(4):2039-2053. PMID: 29368052.
      View in: PubMed
    10. Hoogkamer W, Kram R, Arellano CJ. Author's Reply to Candau et al.: Comment on: "How Biomechanical Improvements in Running Economy Could Break the 2-Hour Marathon Barrier". Sports Med. 2017 11; 47(11):2405-2407. PMID: 28741184.
      View in: PubMed
    11. Bekkers EMJ, Hoogkamer W, Bengevoord A, Heremans E, Verschueren SMP, Nieuwboer A. Freezing-related perception deficits of asymmetrical walking in Parkinson's disease. Neuroscience. 2017 Nov 19; 364:122-129. PMID: 28927894.
      View in: PubMed
    12. Hoogkamer W, Potocanac Z, Van Calenbergh F, Duysens J. Quick foot placement adjustments during gait are less accurate in individuals with focal cerebellar lesions. Gait Posture. 2017 10; 58:390-393. PMID: 28888908.
      View in: PubMed
    13. Hoogkamer W, Kram R, Arellano CJ. How Biomechanical Improvements in Running Economy Could Break the 2-hour Marathon Barrier. Sports Med. 2017 Sep; 47(9):1739-1750. PMID: 28255937.
      View in: PubMed
    14. Straw AH, Hoogkamer W, Kram R. Changing relative crank angle increases the metabolic cost of leg cycling. Eur J Appl Physiol. 2017 Oct; 117(10):2021-2027. PMID: 28785797.
      View in: PubMed
    15. Maas E, De Bie J, Vanfleteren R, Hoogkamer W, Vanwanseele B. Novice runners show greater changes in kinematics with fatigue compared with competitive runners. Sports Biomech. 2018 Sep; 17(3):350-360. PMID: 28730917.
      View in: PubMed
    16. Hoogkamer W. Perception of Gait Asymmetry During Split-Belt Walking. Exerc Sport Sci Rev. 2017 01; 45(1):34-40. PMID: 27984329.
      View in: PubMed
    17. Hoogkamer W, Kipp S, Spiering BA, Kram R. Altered Running Economy Directly Translates to Altered Distance-Running Performance. Med Sci Sports Exerc. 2016 11; 48(11):2175-2180. PMID: 27327023.
      View in: PubMed
    18. Hoogkamer W, O'Brien MK. Sensorimotor recalibration during split-belt walking: task-specific and multisensory? J Neurophysiol. 2016 10 01; 116(4):1539-1541. PMID: 26864755.
      View in: PubMed
    19. Drijkoningen D, Leunissen I, Caeyenberghs K, Hoogkamer W, Sunaert S, Duysens J, Swinnen SP. Regional volumes in brain stem and cerebellum are associated with postural impairments in young brain-injured patients. Hum Brain Mapp. 2015 Dec; 36(12):4897-909. PMID: 26441014.
      View in: PubMed
    20. Mazaheri M, Hoogkamer W, Potocanac Z, Verschueren S, Roerdink M, Beek PJ, Peper CE, Duysens J. Effects of aging and dual tasking on step adjustments to perturbations in visually cued walking. Exp Brain Res. 2015 Dec; 233(12):3467-74. PMID: 26298043; PMCID: PMC4646946.
    21. Hoogkamer W, Potocanac Z, Duysens J. Quick foot placement adjustments during gait: direction matters. Exp Brain Res. 2015 Dec; 233(12):3349-57. PMID: 26259749.
      View in: PubMed
    22. Hoogkamer W, Bruijn SM, Sunaert S, Swinnen SP, Van Calenbergh F, Duysens J. Adaptation and aftereffects of split-belt walking in cerebellar lesion patients. J Neurophysiol. 2015 Sep; 114(3):1693-704. PMID: 26203113; PMCID: PMC4567611.
    23. Hoogkamer W, Bruijn SM, Potocanac Z, Van Calenbergh F, Swinnen SP, Duysens J. Gait asymmetry during early split-belt walking is related to perception of belt speed difference. J Neurophysiol. 2015 Sep; 114(3):1705-12. PMID: 26203114; PMCID: PMC4567612.
    24. Hoogkamer W, Bruijn SM, Sunaert S, Swinnen SP, Van Calenbergh F, Duysens J. Toward new sensitive measures to evaluate gait stability in focal cerebellar lesion patients. Gait Posture. 2015 Feb; 41(2):592-6. PMID: 25618477.
      View in: PubMed
    25. Hoogkamer W, Van Calenbergh F, Swinnen SP, Duysens J. Cutaneous reflex modulation and self-induced reflex attenuation in cerebellar patients. J Neurophysiol. 2015 Feb 01; 113(3):915-24. PMID: 25392164; PMCID: PMC4312859.
    26. Hoogkamer W, Bruijn SM, Duysens J. Gait parameters affecting the perception threshold of locomotor symmetry: comment on Lauzière, et al. (2014). Percept Mot Skills. 2014 Oct; 119(2):474-7. PMID: 25244554.
      View in: PubMed
    27. Hoogkamer W, Meyns P. Is action-perception coupling improved with delay in patients with focal cerebellar lesions? J Neurosci. 2014 Aug 20; 34(34):11175-6. PMID: 25143597.
      View in: PubMed
    28. Hoogkamer W, Taboga P, Kram R. Applying the cost of generating force hypothesis to uphill running. PeerJ. 2014; 2:e482. PMID: 25083347; PMCID: PMC4106190.
    29. Meyns P, Van de Walle P, Hoogkamer W, Kiekens C, Desloovere K, Duysens J. Coordinating arms and legs on a hybrid rehabilitation tricycle: the metabolic benefit of asymmetrical compared to symmetrical arm movements. Eur J Appl Physiol. 2014 Apr; 114(4):743-50. PMID: 24384984.
      View in: PubMed
    30. Hoogkamer W, Meyns P, Duysens J. Steps forward in understanding backward gait: from basic circuits to rehabilitation. Exerc Sport Sci Rev. 2014 Jan; 42(1):23-9. PMID: 24188982.
      View in: PubMed
    31. Hoogkamer W, Bruijn SM, Duysens J. Stride length asymmetry in split-belt locomotion. Gait Posture. 2014; 39(1):652-4. PMID: 24041467.
      View in: PubMed
    32. Potocanac Z, Hoogkamer W, Carpes FP, Pijnappels M, Verschueren SM, Duysens J. Response inhibition during avoidance of virtual obstacles while walking. Gait Posture. 2014; 39(1):641-4. PMID: 23968973.
      View in: PubMed
    33. Duysens J, Hoogkamer W, Levin O. Is there "arthrogenic inhibition" of cutaneous reflexes in subjects with functional ankle instability? Clin Neurophysiol. 2013 Jul; 124(7):1264-6. PMID: 23567073.
      View in: PubMed
    34. Hoogkamer W, Massaad F, Jansen K, Bruijn SM, Duysens J. Selective bilateral activation of leg muscles after cutaneous nerve stimulation during backward walking. J Neurophysiol. 2012 Oct; 108(7):1933-41. PMID: 22773779; PMCID: PMC3544994.
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