Neural networks for the coordination of the hands in time

被引:117
作者
Ullén, F [1 ]
Forssberg, H [1 ]
Ehrsson, HH [1 ]
机构
[1] Karolinska Inst, Dept Women & Child Hlth, Neuropediat Res Unit, SE-17176 Stockholm, Sweden
关键词
D O I
10.1152/jn.00775.2002
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Without practice, bimanual movements can typically be performed either in phase or in antiphase. Complex temporal coordination, e. g., during movements at different frequencies with a noninteger ratio (polyrhythms), requires training. Here, we investigate the organization of the neural control systems for in-phase, antiphase, and polyrhythmic coordination using functional magnetic resonance imaging (fMRI). Brisk rhythmic tapping with the index fingers was used as a model behavior. We demonstrate different patterns of brain activity during in-phase and antiphase coordination. In-phase coordination was characterized by activation of the right anterior cerebellum and cingulate motor area (CMA). Antiphase coordination was accompanied by extensive fronto-parieto-temporal activations, including the supplementary motor area (SMA), the preSMA, and the bilateral inferior parietal gyri, premotor cortex, and superior temporal gyri. When contrasting polyrhythmic tapping with in-phase tapping, activity was seen in the same set of brain regions, and in the posterior cerebellum and the CMA. Antiphase and polyrhythmic coordination may thus to a large extent use common neural control circuitry. In a separate experiment, we analyzed the neural control of the rhythmic structure and the serial order of finger movements during polyrhythmic tapping. Polyrhythmic tapping was compared with an isochronous coordination pattern that retained the same serial order of finger movements as the polyrhythm. This experiment showed that the preSMA and the bilateral superior temporal gyri may be crucial for the rhythmic control of polyrhythmic tapping, while the cerebellum, the CMA, and the premotor cortices presumably are more involved in the ordinal control of the sequence of finger movements.
引用
收藏
页码:1126 / 1135
页数:10
相关论文
共 51 条
[1]  
Amazeen PG, 1998, TIMING OF BEHAVIOR, P237
[2]  
BENGTSSON SL, 2002, J INT NEUROPSYCH SOC, V8, P487
[3]   A fronto-parietal circuit for object manipulation in man: evidence from an fMRI-study [J].
Binkofski, F ;
Buccino, G ;
Posse, S ;
Seitz, RJ ;
Rizzolatti, G ;
Freund, HJ .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1999, 11 (09) :3276-3286
[4]  
Bleasel A, 1996, ADV NEUROL, V70, P217
[5]   SUPPLEMENTARY MOTOR AREA IN THE MONKEY - ACTIVITY OF NEURONS DURING PERFORMANCE OF A LEARNED MOTOR TASK [J].
BRINKMAN, C ;
PORTER, R .
JOURNAL OF NEUROPHYSIOLOGY, 1979, 42 (03) :681-709
[6]  
BRINKMAN C, 1984, J NEUROSCI, V4, P918
[8]   THE GENERATION OF 2 ISOCHRONOUS SEQUENCES IN PARALLEL [J].
DEUTSCH, D .
PERCEPTION & PSYCHOPHYSICS, 1983, 34 (04) :331-337
[9]   Primary motor cortex is involved in bimanual coordination [J].
Donchin, O ;
Gribova, A ;
Steinberg, O ;
Bergman, H ;
Vaadia, E .
NATURE, 1998, 395 (6699) :274-278
[10]   Simultaneous movements of upper and lower limbs are coordinated by motor representations that are shared by both limbs: a PET study [J].
Ehrsson, HH ;
Naito, E ;
Geyer, S ;
Amunts, K ;
Zilles, K ;
Forssberg, H ;
Roland, PE .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2000, 12 (09) :3385-3398