Caronni Antonio, Cavallari Paolo
Dipartimento di Fisiologia Umana, Università degli Studi, Via Mangiagalli 32, 20133, Milan, Italy.
Exp Brain Res. 2009 Mar;194(1):59-66. doi: 10.1007/s00221-008-1668-2. Epub 2008 Dec 12.
Little is known about anticipatory postural adjustments (APAs) developing when body segments of tiny mass are moved. Thus, APAs in the human upper-limb were investigated during a gentle and small index finger tap (35 mm stroke in 50 ms). This task was fulfilled by ten subjects either with prone or supine hand. EMG was recorded from Flexor Digitorum Superficialis (FDS), the prime mover, and from several upper-limb muscles under slight tonic contraction. Regardless of hand posture, EMG was inhibited in Flexor Carpi Radialis and facilitated in Extensor Carpi Radialis well before the FDS burst. With the prone hand, the prime mover activity was preceded by Biceps inhibition and Triceps facilitation; this effect reverted in sign with the supine hand. A postural reversal was also observed in Anterior Deltoid and Trapezius which were both inhibited with the prone hand. The effect in Trapezius was present only with the unsupported forearm. It is thus demonstrated that a gentle small finger tap produces well-defined anticipatory natural synergies behaving as the most "classical" APAs: (1) they are distributed to several upper-limb muscles creating a postural chain aiming to prevent the effects of the interaction torques generated by the voluntary movement; (2) they change in amplitude according to the level of postural stability and (3) they revert in sign when movement direction is reverted. These results are also corroborated by data obtained from a simple mechanical model simulating finger tapping in a fictive upper-limb. A possible role of APAs in controlling movements' accuracy is also discussed.
对于微小质量的身体节段移动时所产生的预期姿势调整(APAs),人们了解甚少。因此,在进行轻柔且幅度较小的食指敲击(50毫秒内行程35毫米)过程中,对人类上肢的预期姿势调整进行了研究。这项任务由十名受试者完成,他们的手要么处于俯卧位,要么处于仰卧位。从主要运动肌指浅屈肌(FDS)以及在轻微强直收缩状态下的几块上肢肌肉记录肌电图。无论手的姿势如何,在FDS爆发之前,桡侧腕屈肌的肌电图受到抑制,而桡侧腕伸肌的肌电图则得到促进。当手处于俯卧位时,主要运动肌活动之前肱二头肌受到抑制,肱三头肌得到促进;当手处于仰卧位时,这种效应的正负号相反。在前三角肌和斜方肌中也观察到了姿势反转,当手处于俯卧位时,这两块肌肉均受到抑制。斜方肌的这种效应仅在无支撑的前臂时出现。因此证明,轻柔的小手指敲击会产生明确的预期自然协同作用,表现为最“经典”的预期姿势调整:(1)它们分布到几块上肢肌肉,形成一个姿势链,旨在防止由自主运动产生的相互作用扭矩的影响;(2)它们的幅度会根据姿势稳定性水平而变化;(3)当运动方向反转时,它们的正负号也会反转。从一个模拟虚拟上肢手指敲击的简单力学模型获得的数据也证实了这些结果。还讨论了预期姿势调整在控制运动准确性方面的可能作用。