Neurophysiological mechanisms and perspective for the use of dual tasks inrecovering cognitive function after cardiac surgery
https://doi.org/10.23946/2500-0764-2020-5-1-101-111
Abstract
This review encompasses current trends regarding the use of dual tasks in recovering of cognitive functions in patients with ageassociated cognitive decline, traumatic brain injury and brain ischemia. The dual task represents a cognitive rehabilitation approach which implies the simultaneous execution of physical activity (walking, running or postural training) and cognitive tasks (internal counting, short-term memory and attention tasks, divergent tasks). Dual tasks with the simultaneous involvement of motor and cognitive functions are associated with specific features of brain activity and permit evaluation of the brain compensatory resources both in the normal state and in ageassociated cognitive decline or ischemic/ traumatic injury. The review also describes the basic neurophysiological mechanisms of the dual task-associated action on cognitive functions including transfer and interference. Performing of complex, multidirectional tasks provides a more efficient coordination of cognitive processes and improves the opportunities for successful cognitive functioning. The work underlines the high prevalence of cognitive impairment in cardiac surgery patients and shows the prospects of using dual tasks for the postoperative cognitive recovery. We assume that the rehabilitation using dual tasks involving brain areas providing executive control, working memory, attention and motor control can result in a pronounced cognitive recovery in cardiac surgery patients with cognitive impairment.
About the Authors
O. A. TrubnikovaRussian Federation
Dr. Olga A. Trubnikova - MD, DSc, Head of Laboratory of Neurovascular Diseases, Department of Clinical Cardiology.
6, Sosnovy Boulevard, Kemerovo, 650002, Russian Federation
I. V. Tarasova
Russian Federation
Dr. Irina V. Tarasova - MD, DSc, Leading Researcher, Laboratory of Neurovascular Diseases, Department of Clinical Cardiology.
6, Sosnovy Boulevard, Kemerovo, 650002, Russian Federation
O. L. Barbarash
Russian Federation
Prof. Olga L. Barbarash - MD, DSc, Professor, Corresponding Member of Russian Academy of Sciences, Chief Executive Officer.
6, Sosnovy Boulevard, Kemerovo, 650002, Russian Federation
References
1. Chokron S, Helft G, Perez C. Effects of age and cardiovascular disease on selective attention. Cardiovasc Psychiatry Neurol. 2013;2013:185385. https://doi.org/10.1155/2013/185385
2. Kok WF, van Harten AE, Koene BM, Mariani MA, Koerts J, Tucha O, Absalom AR, Scheeren TW. A pilot study of cerebral tissue oxygenation and postoperative cognitive dysfunction among patients undergoing coronary artery bypass grafting randomised to surgery with or without cardiopulmonary bypass. Anaesthesia. 2014;69(6):613-22. https://doi.org/ 10.1111/anae.12634
3. Indja B, Seco M, Seamark R, Kaplan J, Bannon PG, Grieve SM, Vallely MP. Neurocognitive and psychiatric issues post cardiac surgery. Heart Lung Circ. 2017;26(8):779-785. https://doi.org/10.1016/j.hlc.2016.12.010
4. Trubnikova OA, Tarasova IV, Maleva OV, Kagan EU, Barbarash OL, Barbarash LS. Factors for the development of persistent postoperative cognitive dysfunction in patients undergoing coronary artery bypass surgery under extracorporeal circulation. Therapeutic Archive. 2017;89(9):41-47. (In Russ.). https://doi.org/10.17116/terarkh201789941-47
5. Mathew JP, White WD, Schinderle DB, Podgoreanu MV, Berger M, Milano CA, Laskowitz DT, Stafford-Smith M, Blumenthal JA, Newman MF; Neurologic Outcome Research Group of The Duke Heart Center. Intraoperative magnesium administration does not improve neurocognitive function after cardiac surgery. Stroke. 2013;44(12):3407-3413. https://doi.org/10.1161/STROKEAHA.113.004025
6. Evered LA, Silbert BS, Scott DA, Maruff P, Ames D. Prevalence of dementia 7.5 years after coronary artery bypass graft surgery. Anesthesiology. 2016;125(1):62-71. https://doi.org/10.1097/ALN.0000000000001143
7. Jessen F, Amariglio RE, van Boxtel M, Breteler M, Ceccaldi M, Chételat G, Dubois B, Dufouil C, Ellis KA, van der Flier WM, Glodzik L, van Harten AC, de Leon MJ, McHugh P, Mielke MM, Molinuevo JL, Mosconi L, Osorio RS, Perrotin A, Petersen RC, Rabin LA, Rami L, Reisberg B, Rentz DM, Sachdev PS, de la Sayette V, Saykin AJ, Scheltens P, Shulman MB, Slavin MJ, Sperling RA, Stewart R, Uspenskaya O, Vellas B, Visser PJ, Wagner M; Subjective Cognitive Decline Initiative (SCD-I) Working Group. Subjective Cognitive Decline Initiative (SCD-I) Working Group. A conceptual framework for research on subjective cognitive decline in preclinical Alzheimer's disease. Alzheimers Dement. 2014;10(6):844-52. https://doi.org/10.1016/j.jalz.2014.01.001
8. Trubnikova OA, Kagan ES, Kupriyanova TV, Maleva OV, Argunova YA, Kukhareva IN. Neuropsychological status of patients with stable coronary artery disease and factors affecting it. Complex Issues of Cardiovascular Diseases. 2017;6(1):112-121. (In Russ.) https://doi.org/10.17802/2306-1278-2017-1-112-121
9. Akchurin RS, Shiryaev AA, Vasiliev VP, Galyautdinov DM, Vlasova EE. Modern trends in coronary surgery. Circulation Pathology and Cardiac Surgery. 2017;21(3S):34-44. (In Russ.) https://doi.org/10.21688/1681-3472-2017-3S-34-44
10. Gorelick PB. Prevention of cognitive impairment: scientific guidance and windows of opportunity. J Neurochem. 2018;144(5):609-616. https://doi.org/10.1111/jnc.14113
11. Bhamidipati D, Goldhammer JE, Sperling MR, Torjman MC, McCarey MM, Whellan DJ. Cognitive outcomes after coronary artery bypass grafting. J Cardiothorac Vasc Anesth. 2017;31(2):707-718. https://doi.org/10.1053/j.jvca.2016.09.028
12. Жаворонкова Л.А., Максакова О.А., Шевцова Т.П., Морареску С.И., Купцова С.В., Кушнир Е.М., Иксанова Е.М. Двойные задачи – индикатор особенностей когнитивного дефицита у пациентов после черепно-мозговой травмы. Журнал неврологии и психиатрии им. С.С. Корсакова. 2019;119(8):46-52 [Zhavoronkova LA, Maksakova OA, Shevtsova TP, Moraresku SI, Kuptsova SV, Kushnir EM, Iksanova EM. Dual-tasks is an indicator of cognitive deficit specificity in patients after traumatic brain injury. S.S. Korsakov Journal of Neurology and Psychiatry. 2019;119(8):46-52. (In Russ.).] https://doi.org/10.17116/jnevro201911908146
13. Koberskaya NN. Current views of the risk factors, diagnosis, and therapy of Alzheimer's disease (according to the proceedings of the Alzheimer's Association International Conference, London, 2017). Neurology, Neuropsychiatry, Psychosomatics. 2017;9(3):81-87. (In Russ.) https://doi.org/10.14412/2074-2711-2017-3-81-87
14. Politis AM, Norman RS. Computer-based cognitive rehabilitation for individuals with traumatic brain injury: a systematic review. Perspectives of the ASHA Special Interest Groups. 2016;1(2):18-46. https://doi.org/10.1044/persp1.sig2.18
15. Yoo C, Yong MH, Chung J, Yang Y. Effect of computerized cognitive rehabilitation program on cognitive function and activities of living in stroke patients. J Phys Ther Sci. 2015;27(8):2487-2489. https://doi.org/10.1589/jpts.27.2487
16. Kulason K, Nouchi R, Hoshikawa Y, Noda M, Okada Y, Kawashima R. The beneficial effects of cognitive training with simple calculation and reading aloud in an elderly postsurgical population: study protocol for a randomized controlled trial. Trials. 2016;17:334. https://doi.org/10.1186/s13063-016-1476-0
17. Ajtahed SS, Rezapour T, Etemadi S, Moradi H, Habibi Asgarabad M, Ekhtiari H. Efficacy of neurocognitive rehabilitation after coronary artery bypass graft surgery in improving quality of life: an interventional trial. Front Psychol. 2019;10:1759. https://doi.org/10.3389/fpsyg.2019.01759
18. Tait JL, Duckham RL, Milte CM, Main LC, Daly RM. Influence of sequential vs. simultaneous dual-task exercise training on cognitive function in older adults. Front Aging Neurosci. 2017;9:368. https://doi.org/10.3389/fnagi.2017.00368
19. Ghai S, Ghai I, Effenberg AO. Effects of dual tasks and dual- task training on postural stability: a systematic review and meta-analysis. Clin Interv Aging. 2017;12:557-577. https://doi.org/10.2147/CIA.S125201
20. Petrigna L, Thomas E, Gentile A, Paoli A, Pajaujiene S, Palma A, Bianco A. The evaluation of dual-task conditions on static postural control in the older adults: a systematic review and meta-analysis protocol. Syst Rev. 2019;8(1):188. https://doi.org/10.1186/s13643-019-1107-4
21. Engvig A, Fjell AM, Westlye LT, Skaane NV, Sundseth O, Walhovd KB. Hippocampal subfield volumes correlate with memory training benefit in subjective memory impairment. Neuroimage. 2012;61(1):188-19. https://doi.org/10.1016/j.neuroimage.2012.02.072
22. Eryomina OV, Petrova MM, Prokopenko SV, Mozheyko EY, Kaskaeva DS, Gavrilyuk OA. The effectiveness of the correction of cognitive impairment using computer-based stimulation programs for patients with coronary heart disease after coronary bypass surgery. J Neurol Sci. 2015;358(1-2):188-192. https://doi.org/10.1016/j.jns.2015.08.1535
23. Argunova YuA, Trubnikova OA, Mamontova AS, Syrova ID, Kuhareva IN, Maleva OV, Barbarash OL. The influence of three-week aerobic exercise program on neurodynamic parameters of patients underwent coronary bypass grafting. Russian Journal of Cardiology. 2016;21(2):30-36. (In Russ.)
24. https://doi.org/10.15829/1560-4071-2016-2-30-36
25. Sobol NA, Hoffmann K, Frederiksen KS, Vogel A, Vestergaard K, Brændgaard H, Gottrup H, Lolk A, Wermuth L, Jakobsen S, Laugesen L, Gergelyffy R, Hogh P, Bjerregaard E, Siersma V, Andersen BB, Johannsen P, Waldemar G, Hasselbalch SG, Beyer N. Effect of aerobic exercise on physical performance in patients with Alzheimer's disease. Alzheimers Dement. 2016;12(12):1207-1215. https://doi.org/10.1016/j.jalz.2016.05.004
26. Wajda DA, Mirelman A, Hausdorff JM, Sosnoff JJ. Intervention modalities for targeting cognitive-motor interference in individuals with neurodegenerative disease: a systematic review. Expert Rev Neurother. 2017;17(3):251-261. https://doi.org/10.1080/14737175.2016.1227704
27. Commandeur D, Klimstra MD, MacDonald S, Inouye K, Cox M, Chan D, Hundza SR. Difference scores between single-task and dual-task gait measures are better than clinical measures for detection of fall-risk in community-dwelling older adults. Gait Posture. 2018;66:155-159. https://doi.org/10.1016/j.gaitpost.2018.08.020
28. Muir-Hunter SW, Wittwer JE. Dual-task testing to predict falls in community-dwelling older adults: a systematic review. Physiotherapy. 2016;102(1):29-40. https://doi.org/10.1016/j.physio.2015.04.011
29. Ansai JH, Andrade LP, Rossi PG, Almeida ML, Carvalho Vale FA, Rebelatto JR. Association between gait and dual task with cognitive domains in older people with cognitive impairment. J Mot Behav. 2018;50(4):409-415. https://doi.org/10.1080/00222895.2017.1363702
30. Kleiner AFR, Souza Pagnussat A, Pinto C, Redivo Marchese R, Salazar AP, Galli M. Automated mechanical peripheral stimulation effects on gait variability in individuals with Parkinson disease and freezing of gait: a double-blind, randomized controlled trial. Arch Phys Med Rehabil. 2018;99(12):2420-2429. https://doi.org/10.1016/j.apmr.2018.05.009
31. Zhavoronkova LA, Kushnir EM, Zharikova AV, Kupcova SV, Shevcova TP, Kulikov MA, Voronov VG. Electroencephalograpic parameters of healthy persons with different successfulness of dual task performance (postural control and calculation). I.P. Pavlov Journal of Higher Nervous Activity. 2015;65(5):597-606. (In Russ.) https://doi.org/10.7868/S0044467715050160
32. Tarasova IV, Trubnikova OA, Barbarash OL, Barbarash LS. Mild cognitive impairment, postoperative cognitive dysfunction and MCI-related changes in cortical activity in patients after coronary artery bypass grafting. In: Virginia Phillips, eds. Mild Cognitive Impairment (MCI): Diagnosis, Prevalence and Quality of Life. New York: 2017:63-82.
33. Borghini G, Vecchiato G, Toppi J, Astolfi L, Maglione A, Isabella R, Caltagirone C, Kong W, Wei D, Zhou Z, Polidori L, Vitiello S, Babiloni F. Assessment of mental fatigue during car driving by using high resolution EEG activity and neurophysiologic indices. Conf Proc IEEE Eng Med Biol Soc. 2012;2012:6442-5. https://doi.org/10.1109/EMBC.
34. 6347469
35. Borghini G, Astolfi L, Vecchiato G, Mattia D, Babiloni F. Measuring neurophysiological signals in aircraft pilots and car drivers for the assessment of mental workload, fatigue and drowsiness. Neurosci Biobehav Rev. 2014;44:58-75. https://doi.org/10.1016/j.neubiorev.2012.10.003
36. Zhavoronkova LA, Zharikova AB, Kushnir EM, Mikhalkova AA, Kuptsova SB. Characteristics of EEG reactivity changes during the performance of dual tasks in healthy subjects (voluntary postural control and calculation). Human Physiology. 2011;37(6):54-67. (In Russ.)
37. Ozdemir RA, Contreras-Vidal JL, Lee BC, Paloski W.H. Cortical activity modulations underlying age-related performance differences during posture-cognition dual tasking. Exp Brain Res. 2016;234(11):3321-3334. https://doi.org/10.1007/s00221-016-4730-5
38. Ohsugi H, Ohgi S, Shigemori K, Schneider EB. Differences in dual-task performance and prefrontal cortex activation between younger and older adults. BMC Neurosci. 2013;14:10. https://doi.org/10.1186/1471-2202-14-10
39. Mirelman A, Maidan I, Bernad-Elazari H, Shustack S, Giladi N, Hausdorff JM. Effects of aging on prefrontal brain activation during challenging walking conditions. Brain Cogn. 2017;115:41-46. https://doi.org/10.1016/j.bandc.2017.04.002
40. Tseng CF, Lee SH, Hsieh TC, Lee RP. Smart restored by learning exercise alleviates the deterioration of cognitive function in older adults with dementia-a quasi-experimental research. Int J Environ Res Public Health. 2019;16(7):1270. https://doi.org/10.3390/ijerph16071270
41. Uchida S, Kawashima R. Reading and solving arithmetic problems improves cognitive functions of normal aged people: a randomized controlled study. Age (Dordr). 2008;30(1):21-9. https://doi.org/10.1007/s11357-007-9044-x
42. Shulman RG, Hyder F, Rothman DL. Biophysical basis of brain activity: implications for neuroimaging. Q Rev Biophys. 2002;35(3):287-325. https://doi.org/10.1017/s0033583502003803
43. Kida I, Hyder F. Physiology of functional magnetic resonance imaging: energetics and function. Methods Mol Med. 2006;124:175-95. https://doi.org/10.1385/1-59745-010-3:175
44. Hoffmann M. The human frontal lobes and frontal network systems: an evolutionary, clinical, and treatment perspective. ISRN Neurol. 2013;2013:892459. https://doi.org/10.1155/2013/892459
45. Toepper M, Markowitsch HJ, Gebhardt H, Beblo T, Bauer E, Woermann FG, Driessen M, Sammer G. The impact of age on prefrontal cortex integrity during spatial working memory retrieval. Neuropsychologia. 2014;59:157-168. https://doi.org/10.1016/j.neuropsychologia.2014.04.020
46. Suzuki H, Matsumoto Y, Ota H, Sugimura K, Takahashi J, Ito K, Miyata S, Furukawa K, Arai H, Fukumoto Y, Taki Y, Shimokawa H. Hippocampal blood flow abnormality associated with depressive symptoms and cognitive impairment in patients with chronic heart failure. Circ J. 2016;80(8):1773-80. https://doi.org/10.1253/circj.CJ-16-0367
47. Dai W, Duan W, Alfaro FJ, Gavrieli A, Kourtelidis F, Novak V. The resting perfusion pattern associates with functional decline in type 2 diabetes. Neurobiol Aging. 2017;60:192-202. https://doi.org/10.1016/j.neurobiolaging.2017.09.004
48. Wählin A, Nyberg L. At the Heart of Cognitive Functioning in Aging. Trends Cogn Sci. 2019;23(9):717-720. https://doi.org/10.1016/j.tics.2019.06.004
49. Beurskens R, Helmich I, Rein R, Bock O. Age-related changes in prefrontal activity during walking in dual-task situations: a fNIRS study. Int J Psychophysiol. 2014;92(3):122-128. https://
50. doi.org/10.1016/j.ijpsycho.2014.03.005
51. van Rooteselaar N, Beke C, Gonzalez CLR. Dual-task performance of speech and motor skill: verb generation facilitates grasping behaviour. Exp Brain Res. 2020;238(2):453-463. https://doi.org/10.1007/s00221-020-05725-x
52. Zharikova AV, Zhavoronkova LA, Kupcova SB, Kushnir EM, Kulikov MA, Mihalkova AA. Psychological and stabilographic features in healthy persons performing dual tasks with different quality. Human Physiology. 2013;39(4):33-40. (In Russ.).] https://doi.org/10.7868/S0131164613030181
53. Granacher U, Bridenbaugh SA, Muehlbauer T, Wehrle A, Kressig RW. Age-related effects on postural control under multitask conditions. Gerontology. 2011;57(3):247-55. https://doi.org/10.1159/000322196
54. Salminen T, Kühn S, Frensch PA, Schubert T. Transfer after dual n-back training depends on striatal activation change. J Neurosci. 2016;36(39):10198-10213. https://doi.org/10.1523/JNEUROSCI.2305-15.2016
55. Heinzel S, Rimpel J, Stelzel C, Rapp MA. Transfer effects to a multimodal dual-task after working memory training and associated neural correlates in older adults - a pilot study. Front Hum Neurosci. 2017;11:85. https://doi.org/10.3389/fnhum.2017.00085
56. Wang CH, Moreau D, Yang CT, Tsai YY, Lin JT, Liang WK, Tsai CL. Aerobic exercise modulates transfer and brain signal complexity following cognitive training. Biol Psychol. 2019;144:85-98. https://doi.org/10.1016/j.biopsycho.2019.03.012
57. Ballesteros S, Mayas J, Prieto A, Ruiz-Marquez E, Toril P, Reales JM. Effects of video game training on measures of selective attention and working memory in older adults: results from a randomized controlled trial. Front Aging Neurosci. 2017;9:354. https://doi.org/10.3389/fnagi.2017.00354
58. Lampit A, Hallock H, Valenzuela MJ. Computerized cognitive training in healthy older adults: a systematic review and meta-analysis of effect modifiers. PLoS Med. 2014;11(11):e1001756. https://doi.org/10.1371/ journal.pmed.1001756
59. Suo C, Singh MF, Gates N, Wen W, Sachdev P, Brodaty H, Saigal N, Wilson GC, Meiklejohn J, Singh N, Baune BT, Baker M, Foroughi N, Wang Y, Mavros Y, Lampit A, Leung I, Valenzuela MJ. Therapeutically relevant structural and functional mechanisms triggered by physical and cognitive exercise. Molecular psychiatry. 2016;21(11):1633-1642. https://doi.org/10.1038 / mp.2016.19
60. Timmer K, Schiller NO. Neural correlates reveal sub-lexical orthography and phonology during reading aloud: a review. Front Psychol. 2014;5:884. https://doi.org/10.3389/fpsyg.2014.00884
61. Berken JA, Gracco VL, Chen JK, Watkins KE, Baum S, Callahan M, Klein D. Neural activation in speech production and reading aloud in native and non-native languages. Neuroimage. 2015;112:208-217. https://doi.org/10.1016/j.neuroimage.2015.03.016
62. Arsalidou M, Taylor MJ. Is 2+2=4? Meta-analyses of brain areas needed for numbers and calculations. Neuroimage. 2011;54(3):2382-93. https://doi.org/10.1016/j.neuroimage.2010.10.009
63. Gullick MM, Wolford G. Brain systems involved in arithmetic with positive versus negative numbers. Hum Brain Mapp. 2014;35(2):539-51. https://doi.org/10.1002/hbm.22201 61. de Tournay-Jette E, Dupuis G, Denault A, Cartier R, Bherer L. The benefits of cognitive training after a coronary artery bypass graft surgery. J Behav Med. 2012;35(5):557-568. https://doi.org/10.1007/s10865-011-9384-y
64. McFadden SH, Basting AD. Healthy aging persons and their brains: promoting resilience through creative engagement. Clin Geriatr Med. 2010;26(1):149-161. https://doi.org/10.1016/j.cger.2009.11.004
65. Johnson CM, Sullivan-Marx EM. Art therapy: Using the creative process for healing and hope among African American older adults. Geriatr Nurs. 2006;27(5):309-316. https://doi.org/10.1016/j.gerinurse.2006.08.010
66. Price KA, Tinker AM. Creativity in later life. Maturitas. 2014;78(4):281-286. https://doi.org/10.1016/j.maturitas. 2014.05.025
67. Parisi JM, Xia J, Spira AP, Xue QL, Rieger ML, Rebok GW, Carlson MC. The association between lifestyle activities and late-life depressive symptoms. Act Adapt Aging. 2014;38(1):1-10. https://doi.org/10.1080/01924788.2014.878871
68. Privodnova EYu, Volf NV. Topographic features of theta activity in young and elderly subjects at the initial stage of creative problem solving: sLORETA analysis. I.P. Pavlov Journal of Higher Nervous Activity. 2018;68(3):304-312. https://doi.org/10.7868/S0044467718030048
69. Tang Y, Zhu Z, Liu Q, Li F, Yang J, Li F, Xing Y, Jia J. The efficacy of cognitive training in patients with vascular cognitive impairment, no dementia (the Cog-VACCINE study): study protocol for a randomized controlled trial. Trials. 2016;17(1):392. (In Russ.).] https://doi.org/10.1186/s13063-016-1523-x
Review
For citations:
Trubnikova O.A., Tarasova I.V., Barbarash O.L. Neurophysiological mechanisms and perspective for the use of dual tasks inrecovering cognitive function after cardiac surgery. Fundamental and Clinical Medicine. 2020;5(2):101-111. (In Russ.) https://doi.org/10.23946/2500-0764-2020-5-1-101-111