Acceso abierto

Effect of types of stimuli, handedness and gender differences on reaction time among adults students during the COVID-19 pandemic


Cite

1. Adleman N.E., Chen G., Reynolds R.C., Frackman A., Razdan V., Weissman D.H., Pine D.S., Leibenluft E. (2016) Age-related differences in the neural correlates of trial-to-trial variations of reaction time. Dev. Cogn. Neurosci., 19: 248-257. Search in Google Scholar

2. Aranha V.P., Joshi R., Samuel A.J., Sharma K. (2015) Catch the moving ruler and estimate reaction time in children. Indian J. Med. Health Sci., 2: 23-26. Search in Google Scholar

3. Baayen R.H., Milin P. (2010) Analyzing reaction times. Int. J. Psychol. Res., 3: 12-28. Search in Google Scholar

4. Boisgontier M.P., Wittenberg G.F., Fujiyama H., Levin O., Swinnen S.P. (2014) Complexity of central processing in simple and choice multilimb reaction-time tasks. PloS one, 9: e90457.10.1371/journal.pone.0090457393873524587371 Search in Google Scholar

5. Bolfer C., Casella E.B., Baldo M.V.C., Mota A.M., Tsunemi M.H., Pacheco S.P., Reed U.C. (2010) Reaction time assessment in children with ADHD. Arq. Neuro-Psiquiatr., 68: 282-286. Search in Google Scholar

6. Brown A.A., Derkyi-Kwarteng L., Ackom C.K., Addae E., Newton F., Amoah D., Blemano D.N. (2017) Simple reaction time: how it relates to body mass index (BMI), gender and handedness in Ghanaian students. J. Med. Sci., 49: 1-7. Search in Google Scholar

7. Chun M.M., Golomb J.D., Turk-Browne N.B. (2011) Turk-Browne, A taxonomy of external and internal attention. Ann. Rev. Psychol., 62: 73-101. Search in Google Scholar

8. Dane S., Erzurumluoglu A.L.I. (2003) Erzurumluoglu, Sex and handedness differences in eye-hand visual reaction times in handball players. Int. J. Neurosci., 113: 923-929. Search in Google Scholar

9. Deary I.J., Der G., (2005) Reaction time, age, and cognitive ability: longitudinal findings from age 16 to 63 years in representative population samples. Aging Neuropsychol. Cogn., 12: 187-215.10.1080/13825580590969235 Search in Google Scholar

10. Der G., Deary I.J. (2006) Age and sex differences in reaction time in adulthood: results from the United Kingdom Health and Lifestyle Survey. Psychol. Aging, 21: 62-73. Search in Google Scholar

11. Dey C.K., Daokar R.G. (2018) A gender-based comparative study of visual and auditory reaction time on 1st year medical students “before” and “after” caffeine intake. Int. J. Sci. Study, 6: 39-42. Search in Google Scholar

12. Donders F.C. (1969) On the speed of mental processes. Acta Psychol., 30: 412-431. Search in Google Scholar

13. Engel B.T., Thorne P.R., Quilter R.E. (1972) On the relationships among sex, age, response mode, cardiac cycle phase, breathing cycle phase, and simple reaction time. J. Gerontol., 27: 456-460. Search in Google Scholar

14. Faisal R.A., Jobe M.C., Ahmed O., Sharker T. (2021) Mental health status, anxiety, and depression levels of Bangladeshi university students during the COVID-19 pandemic. Int. J. Ment. Health Addict., 1-16. Search in Google Scholar

15. Fruehwirth J.C., Biswas S., Perreira K.M. (2021) The Covid-19 pandemic and mental health of first-year college students: Examining the effect of Covid-19 stressors using longitudinal data. PloS one, 16: e024799910.1371/journal.pone.0247999793526833667243 Search in Google Scholar

16. Gavin B., Lyne L., McNicholas F. (2020) Mental health and the COVID-19 pandemic. Ir. J. Psychol. Med., 37: 156-158. Search in Google Scholar

17. Goldstone S., Lhamon W.T. (1974) Studies of auditory-visual differences in human time judgment: 1. Sounds are judged longer than lights. Percept. Mot. Skills, 39: 63-82.10.2466/pms.1974.39.1.634415924 Search in Google Scholar

18. Green D.M., Von Gierke S.M. (1984) Visual and auditory choice reaction times. Acta Psychol., 55(3): p. 231-247.10.1016/0001-6918(84)90043-X6464800 Search in Google Scholar

19. Greenhouse I., King M., Noah S., Maddock R.J., Ivry R.B. (2017) Individual differences in resting corticospinal excitability are correlated with reaction time and GABA content in motor cortex. J. Neurosci., 37: 2686-2696. Search in Google Scholar

20. Greimel E., Wanderer S., Rothenberger A., Herpertz-Dahlmann B., Konrad K., Roessner V. (2011) Attentional performance in children and adolescents with tic disorder and co-occurring attention-deficit/hyperactivity disorder: new insights from a 2×2 factorial design study. J. Abnorm. Child Psychol., 39: 819-828.10.1007/s10802-011-9493-7311155421331638 Search in Google Scholar

21. Ilamkar K.R. (2014) Analysis of human information processing in performance and cognition. Int. J. Res. Health Sci., 2: 36-40. Search in Google Scholar

22. Jadhav S.S. (2019) Evaluation of visual reaction time during pre-and post-menstrual phase. Natl. J. Physiol. Pharm. Pharmacol., 9: 398-400. Search in Google Scholar

23. Jain A., Bansal R., Kumar A., Singh K.D. (2015) A comparative study of visual and auditory reaction times on the basis of gender and physical activity levels of medical first year students. Int. J. Appl. Basic Med. Res., 5: 124-127. Search in Google Scholar

24. Jayaswal A. (2016) Comparison between auditory and visual simple reaction times and its relationship with gender in 1st year MBBS students of Jawaharlal Nehru Medical College, Bhagalpur, Bihar. Int. J. Med. Res. Rev., 4: 1228-1232.10.17511/ijmrr.2016.i07.26 Search in Google Scholar

25. Jose S., Gideon Praveen K. (2010) Comparison between auditory and visual simple reaction times. Neurosci. Med., 1: 30-32. Search in Google Scholar

26. Kalb R., Jansen S., Reulbach U., Kalb S. (2004) Sex differences in simple reaction tasks. Percept. Mot. Skills, 98: 793-802.10.2466/pms.98.3.793-80215209292 Search in Google Scholar

27. Kamath A., Shastry R. (2021) Diurnal Variation in Visual Simple Reaction Time between and within Genders in Young Adults: An Exploratory, Comparative, Pilot Study. Sci. World J., 9: 1-5. Search in Google Scholar

28. Kasozi K.I., Mbiydzneyuy N.E., Namubiru S., Safiriyu A.A., Sulaiman S.O., Okpanachi A.O., Ninsiima H.I. (2018) A study on visual, audio and tactile reaction time among medical students at Kampala International University in Uganda. Afr. Health Sci., 18: 828-836. Search in Google Scholar

29. Kuang S. (2017) Is reaction time an index of white matter connectivity during training? Cogn. Neurosci., 8: 126-128. Search in Google Scholar

30. Leckie R.L., Oberlin L.E., Voss M.W., Prakash R.S., Szabo-Reed A., Chaddock-Heyman L., Phillips S.M., Gothe N.P., Mailey E., Vieira-Potter V.J., Martin S.A. (2014) BDNF mediates improvements in executive function following a 1-year exercise intervention. Front. Hum. Neurosci., 8: 1-12. Search in Google Scholar

31. Liang L., Ren H., Cao R., Hu Y., Qin Z., Li C., Mei S. (2020) The effect of COVID-19 on youth mental health. Psychiatr. Q., 91: 841-852. Search in Google Scholar

32. Meda N., Pardini S., Slongo I., Bodini L., Zordan M.A., Rigobello P., Visioli F., Novara C. (2021) Students’ mental health problems before, during, and after COVID-19 lockdown in Italy. J. Psychiatr. Res., 134: 69-77. Search in Google Scholar

33. Metin B., Wiersema J.R., Verguts T., Gasthuys R., van Der Meere J.J., Roeyers H., Sonuga-Barke E. (2016) Event rate and reaction time performance in ADHD: testing predictions from the state regulation deficit hypothesis using an ex-Gaussian model. Child Neuropsychol., 22: 99-109.10.1080/09297049.2014.986082 Search in Google Scholar

34. Pain M.T., Hibbs A. (2007) Sprint starts and the minimum auditory reaction time. J. Sports Sci., 25: 79-86. Search in Google Scholar

35. Rakhmanov O., Dane S. (2020) Knowledge and anxiety levels of African university students against COVID-19 during the pandemic outbreak by an online survey. J. Res. Med. Dent. Sci., 8: 53-56. Search in Google Scholar

36. Rakhmanov O., Demir A., Dane S. (2020) A brief communication: anxiety and depression levels in the staff of a Nigerian private university during COVID 19 pandemic outbreak. J. Res. Med. Dent. Sci., 8: 118-122. Search in Google Scholar

37. Reigal R.E., Barrero S., Martín I., Morales-Sánchez V., Juárez-Ruiz de Mier R., Hernández-Mendo A. (2019) Relationships between reaction time, selective attention, physical activity, and physical fitness in children. Front. Psychol., 10: 1-8. Search in Google Scholar

38. Sant’Ana J., Franchini E., da Silva V., Diefenthaeler F. (2017) Effect of fatigue on reaction time, response time, performance time, and kick impact in taekwondo roundhouse kick. Sports Biomech., 16: 201-209. Search in Google Scholar

39. Shenvi D., Padma B. (1994) A comparative study of visual and auditory reaction times in males and females. Indian J. Physiol. Pharmacol., 38: 229-229. Search in Google Scholar

40. Singh I., Singh Y., Vikramaditya B., Singh S. (2020) Impact of examination stress on response time in first-year medical students. Indian J. Basic Appl. Med. Res., 5: 733-739. Search in Google Scholar

41. Son C., Hegde S., Smith A., Wang X., Sasangohar F. (2020) Effects of COVID-19 on college students’ mental health in the United States: Interview survey study. J. Med. Internet Res., 22: e21279.10.2196/21279747376432805704 Search in Google Scholar

42. Thompson P.D., Colebatch J.G., Brown P., Rothwell J.C., Day B.L., Obeso J.A., Marsden C.D. (1992) Voluntary stimulus-sensitive jerks and jumps mimicking myoclonus or pathological startle syndromes. Mov. Disord., 7: 257-262. Search in Google Scholar

43. Verleger R. (1997) On the utility of P3 latency as an index of mental chronometry. Psychophysiol., 34: 131-156. Search in Google Scholar

44. Wawrzyniak A.J., Hamer M., Steptoe A., Endrighi R. (2016) Decreased reaction time variability is associated with greater cardiovascular responses to acute stress. Psychophysiol., 53: 739-748. Search in Google Scholar

45. Woods D.L., Wyma J.M., Yund E.W., Herron T.J., Reed B. (2015) Factors influencing the latency of simple reaction time. Front. Hum. Neurosci., 9: 1-12. Search in Google Scholar

46. Yagi Y., Coburn K.L., Estes K.M., Arruda J.E. (1999) Effects of aerobic exercise and gender on visual and auditory P300, reaction time, and accuracy. Eur. J. Appl. Physiol. Occup. Physiol., 80: 402-408. Search in Google Scholar

47. Zhai Y., Du X. (2020) Addressing collegiate mental health amid COVID-19 pandemic. Psychiatry Res., 288: 113003. Search in Google Scholar

eISSN:
2080-2234
Idioma:
Inglés
Calendario de la edición:
Volume Open
Temas de la revista:
Medicine, Basic Medical Science, other, Clinical Medicine, Public Health, Sports and Recreation, Physical Education