Neuronal Correlates of Kinematics-to-Dynamics Transformation in the Supplementary Motor Area
نویسندگان
چکیده
It is widely acknowledged that movements are planned at the level of the kinematics. However, the central nervous system must ultimately transform kinematic plans into dynamics-related commands. How, when, and where the kinematics-to-dynamics (KD) transformation is processed represent fundamental and unanswered questions. We recorded from the supplementary motor area (SMA) of two monkeys as they executed visually instructed reaching movements. We specifically analyzed a delay period following the instruction but prior to the go signal (motor planning). During the delay, a group of neurons in the SMA progressively came to reflect the dynamics rather than the desired kinematics of the upcoming movement. This finding suggests that some neurons in the SMA participate in the KD transformation.
منابع مشابه
Neuronal Correlates of Kinematics - to - Dynamics Transformation in the Supplementary Motor Area experience
addition, it was found that internal models for the dynamics are acquired independently of internal models for the kinematics, which subjects learn when the asso-Summary ciation between the visual stimulus and the instructed movement is perturbed (Krakauer et al., 1999; Flanagan It is widely acknowledged that movements are planned et al., 1999). Internal models for both the kinematics at the le...
متن کاملNeuronal activity in the supplementary motor area of monkeys adapting to a new dynamic environment.
To execute visually guided reaching movements, the central nervous system (CNS) must transform a desired hand trajectory (kinematics) into appropriate muscle-related commands (dynamics). It has been suggested that the CNS might face this challenging computation by using internal forward models for the dynamics. Previous work in humans found that new internal models can be acquired through exper...
متن کاملRobust Control of Electrically Driven Robots in the Task Space
In this paper, a task-space controller for electrically driven robot manipulators is developed using a robust control algorithm. The controller is designed using voltage control strategy. Based on the nominal model of the robotic arm, the desired signals for motor currents are calculated and then the voltage control law is proposed based on the current errors and motor nominal electrical model....
متن کاملRobust Control of Electrically Driven Robots in the Task Space
In this paper, a task-space controller for electrically driven robot manipulators is developed using a robust control algorithm. The controller is designed using voltage control strategy. Based on the nominal model of the robotic arm, the desired signals for motor currents are calculated and then the voltage control law is proposed based on the current errors and motor nominal electrical model....
متن کاملNeuronal Activity in the Dorsal Premotor Area and Ventral Premotor Area of Monkeys adapting to a New Dynamic Environment
In a series of experiments, we investigated how neurons in the different motor areas of the frontal lobe reflect the movement dynamics, and how their neuronal activity undergoes plastic changes when monkeys learn a new dynamics. Here we describe the results obtained in the dorsal premotor area (PMd) and ventral premotor area (PMv). Monkeys performed visually instructed, delayed reaching movemen...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Neuron
دوره 36 شماره
صفحات -
تاریخ انتشار 2002