$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

The motor cortex drives the muscles during walking in human subjects 원문보기

The Journal of physiology, v.590 no.10, 2012년, pp.2443 - 2452  

Petersen, T. H. (Department of Exercise and Sport Sciences & Department of Neuroscience and Pharmacology, The Panum Institute, University of Copenhagen, Denmark) ,  Willerslev‐Olsen, M. (Department of Exercise and Sport Sciences & Department of Neuroscience and Pharmacology, The Panum Institute, University of Copenhagen, Denmark) ,  Conway, B. A. (Department of Bioengineering, University of Strathclyde, Glasgow, UK) ,  Nielsen, J. B. (Department of Exercise and Sport Sciences & Department of Neuroscience and Pharmacology, The Panum Institute, University of Copenhagen, Denmark)

Abstract AI-Helper 아이콘AI-Helper

Key points  It is often assumed that automatic movements such as walking require little conscious attention and it has therefore been argued that these movements require little cortical control.In humans, however, the gait function is often heavily impaired or completely lost following cortical...

참고문헌 (40)

  1. Armstrong DM ( 1988 ). The supraspinal control of mammalian locomotion . J Physiol 405 , 1 – 37 . 

  2. Armstrong DM & Marple‐Horvat DE ( 1996 ). Role of the cerebellum and motor cortex in the regulation of visually controlled locomotion . Can J Physiol Pharmacol 74 , 443 – 455 . 

  3. Baker SN , Kilner JM , Pinches EM & Lemon RN ( 1999 ). The role of synchrony and oscillations in the motor output . Exp Brain Res 128 , 109 – 117 . 

  4. Baker SN , Olivier E & Lemon RN ( 1997 ). Coherent oscillations in monkey motor cortex and hand muscle EMG show task‐dependent modulation . J Physiol 501 , 225 – 241 . 

  5. Barthelemy D , Willerslev‐Olsen M , Lundell H , Conway BA , Knudsen H , Biering‐Sorensen F & Nielsen JB ( 2010 ). Impaired transmission in the corticospinal tract and gait disability in spinal cord injured persons . J Neurophysiol 104 , 1167 – 1176 . 

  6. Capaday C , Lavoie BA , Barbeau H , Schneider C & Bonnard M ( 1999 ). Studies on the corticospinal control of human walking. I. Responses to focal transcranial magnetic stimulation of the motor cortex . J Neurophysiol 81 , 129 – 139 . 

  7. Conway BA , Halliday DM , Farmer SF , Shahani U , Maas P , Weir AI & Rosenberg JR ( 1995 ). Synchronization between motor cortex and spinal motoneuronal pool during the performance of a maintained motor task in man . J Physiol 489 , 917 – 924 . 

  8. Delorme A & Makeig S ( 2004 ). EEGLAB: an open source toolbox for analysis of single‐trial EEG dynamics including independent component analysis . J Neurosci Methods 134 , 9 – 21 . 

  9. Drew T , Andujar JE , Lajoie K & Yakovenko S ( 2008 ). Cortical mechanisms involved in visuomotor coordination during precision walking . Brain Res Rev 57 , 199 – 211 . 

  10. Drew T , Prentice S & Schepens B ( 2004 ). Cortical and brainstem control of locomotion . Prog Brain Res 143 , 251 – 261 . 

  11. Feige B , Aertsen A & Kristeva‐Feige R ( 2000 ). Dynamic synchronization between multiple cortical motor areas and muscle activity in phasic voluntary movements . J Neurophysiol 84 , 2622 – 2629 . 

  12. Fetz EE & Cheney PD ( 1987 ). Functional relations between primate motor cortex cells and muscles: fixed and flexible . Ciba Found Symp 132 , 98 – 117 . 

  13. Fukuyama H , Ouchi Y , Matsuzaki S , Nagahama Y , Yamauchi H , Ogawa M , Kimura J & Shibasaki H ( 1997 ). Brain functional activity during gait in normal subjects: a SPECT study . Neurosci Lett 228 , 183 – 186 . 

  14. Gross J , Tass PA , Salenius S , Hari R , Freund HJ & Schnitzler A ( 2000 ). Cortico‐muscular synchronization during isometric muscle contraction in humans as revealed by magnetoencephalography . J Physiol 527 , 623 – 631 . 

  15. Halliday DM , Conway BA , Christensen LO , Hansen NL , Petersen NP & Nielsen JB . ( 2003 ). Functional coupling of motor units is modulated during walking in human subjects . J Neurophysiol 89 , 960 – 968 . 

  16. Halliday DM , Conway BA , Farmer SF & Rosenberg JR ( 1998 ). Using electroencephalography to study functional coupling between cortical activity and electromyograms during voluntary contractions in humans . Neurosci Lett 241 , 5 – 8 . 

  17. Halliday DM , Rosenberg JR , Amjad AM , Breeze P , Conway BA & Farmer SF ( 1995 ). A framework for the analysis of mixed time series/point process data – theory and application to the study of physiological tremor, single motor unit discharges and electromyograms . Prog Biophys Mol Biol 64 , 237 – 278 . 

  18. Hansen NL , Conway BA , Halliday DM , Hansen S , Pyndt HS , Biering‐Sorensen F & Nielsen JB ( 2005 ). Reduction of common synaptic drive to ankle dorsiflexor motoneurons during walking in patients with spinal cord lesion . J Neurophysiol 94 , 934 – 942 . 

  19. Hansen NL & Nielsen JB ( 2004 ). The effect of transcranial magnetic stimulation and peripheral nerve stimulation on corticomuscular coherence in humans . J Physiol 561 , 295 – 306 . 

  20. Hansen S , Hansen NL , Christensen LO , Petersen NT & Nielsen JB ( 2002 ). Coupling of antagonistic ankle muscles during co‐contraction in humans . Exp Brain Res 146 , 282 – 292 . 

  21. Jung TP , Makeig S , Humphries C , Lee TW , McKeown MJ , Iragui V & Sejnowski TJ ( 2000 ). Removing electroencephalographic artifacts by blind source separation . Psychophysiology 37 , 163 – 178 . 

  22. Kilner JM , Baker SN , Salenius S , Hari R & Lemon RN ( 2000 ). Human cortical muscle coherence is directly related to specific motor parameters . J Neurosci 20 , 8838 – 8845 . 

  23. Lemon RN ( 1993 ). The G. L. Brown Prize Lecture. Cortical control of the primate hand . Exp Physiol 78 , 263 – 301 . 

  24. Marsden JF , Ashby P , Limousin‐Dowsey P , Rothwell JC & Brown P ( 2000 ). Coherence between cerebellar thalamus, cortex and muscle in man: cerebellar thalamus interactions . Brain 123 , 1459 – 1470 . 

  25. Mendez‐Balbuena I , Huethe F , Schulte‐Monting J , Leonhart R , Manjarrez E & Kristeva R ( 2011 ). Corticomuscular coherence reflects interindividual differences in the state of the corticomuscular network during low‐level static and dynamic forces . Cereb Cortex 22 , 628 – 638 . 

  26. Mima T & Hallett M ( 1999 ). Electroencephalographic analysis of cortico‐muscular coherence: reference effect, volume conduction and generator mechanism . Clin Neurophysiol 110 , 1892 – 1899 . 

  27. Mima T , Steger J , Schulman AE , Gerloff C & Hallett M ( 2000 ). Electroencephalographic measurement of motor cortex control of muscle activity in humans . Clin Neurophysiol 111 , 326 – 337 . 

  28. Miyai I , Tanabe HC , Sase I , Eda H , Oda I , Konishi I , Tsunazawa Y , Suzuki T , Yanagida T & Kubota K ( 2001 ). Cortical mapping of gait in humans: a near‐infrared spectroscopic topography study . Neuroimage 14 , 1186 – 1192 . 

  29. Nielsen JB , Brittain JS , Halliday DM , Marchand‐Pauvert V , Mazevet D & Conway BA ( 2008 ). Reduction of common motoneuronal drive on the affected side during walking in hemiplegic stroke patients . Clin Neurophysiol 119 , 2813 – 2818 . 

  30. Nolte G , Bai O , Wheaton L , Mari Z , Vorbach S & Hallett M ( 2004 ). Identifying true brain interaction from EEG data using the imaginary part of coherency . Clin Neurophysiol 115 , 2292 – 2307 . 

  31. Omlor W , Patino L , Hepp‐Reymond MC & Kristeva R ( 2007 ). Gamma‐range corticomuscular coherence during dynamic force output . Neuroimage 34 , 1191 – 1198 . 

  32. Omlor W , Patino L , Mendez‐Balbuena I , Schulte‐Monting J & Kristeva R ( 2011 ). Corticospinal beta‐range coherence is highly dependent on the pre‐stationary motor state . J Neurosci 31 , 8037 – 8045 . 

  33. Perez MA , Lundbye‐Jensen J & Nielsen JB ( 2006 ). Changes in corticospinal drive to spinal motoneurones following visuo‐motor skill learning in humans . J Physiol 573 , 843 – 855 . 

  34. Petersen N , Christensen LO & Nielsen J ( 1998 ). The effect of transcranial magnetic stimulation on the soleus H reflex during human walking . J Physiol 513 , 599 – 610 . 

  35. Petersen NT , Butler JE , Marchand‐Pauvert V , Fisher R , Ledebt A , Pyndt HS , Hansen NL & Nielsen JB ( 2001 ). Suppression of EMG activity by transcranial magnetic stimulation in human subjects during walking . J Physiol 537 , 651 – 656 . 

  36. Petersen TH , Kliim‐Due M , Farmer SF & Nielsen JB ( 2010 ). Childhood development of common drive to a human leg muscle during ankle dorsiflexion and gait . J Physiol 588 , 4387 – 4400 . 

  37. Pohja M & Salenius S ( 2003 ). Modulation of cortex‐muscle oscillatory interaction by ischaemia‐induced deafferentation . Neuroreport 14 , 321 – 324 . 

  38. Schubert M , Curt A , Jensen L & Dietz V ( 1997 ). Corticospinal input in human gait: modulation of magnetically evoked motor responses . Exp Brain Res 115 , 234 – 246 . 

  39. Stam CJ , Nolte G & Daffertshofer A ( 2007 ). Phase lag index: assessment of functional connectivity from multi channel EEG and MEG with diminished bias from common sources . Hum Brain Mapp 28 , 1178 – 1193 . 

  40. Ushiyama J , Suzuki T , Masakado Y , Hase K , Kimura A , Liu M & Ushiba J ( 2011 ). Between‐subject variance in the magnitude of corticomuscular coherence during tonic isometric contraction of the tibialis anterior muscle in healthy young adults . J Neurophysiol 106 , 1379 – 1388 . 

관련 콘텐츠

오픈액세스(OA) 유형

BRONZE

출판사/학술단체 등이 한시적으로 특별한 프로모션 또는 일정기간 경과 후 접근을 허용하여, 출판사/학술단체 등의 사이트에서 이용 가능한 논문

이 논문과 함께 이용한 콘텐츠

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로