James N. Ingram
Papers
4
Total Citations
325
H-Index
4
About
James N. Ingram is a leading researcher in the field of human motor control and sensorimotor learning, with a particular focus on how the brain represents and predicts the dynamics of tools and objects during skillful manipulation. His work has fundamentally advanced our understanding of how the motor system forms separate, context-dependent memories for tool use, demonstrating that the brain can store multiple, grasp-specific representations of an object’s dynamic properties—a key insight for robotics and neurorehabilitation. Ingram’s most influential contribution is the development of a modular planar robotic manipulandum with end-point torque control (234 citations), a device that has become a standard tool for studying human motor adaptation and force control. His research has also shown that the brain can rapidly predict object weight using spatial location cues rather than visual appearance, a finding with implications for intuitive human-robot interaction. With over 300 total citations across his highly focused body of work, Ingram’s elegant experimental designs and novel robotic interfaces continue to shape how scientists understand the neural mechanisms underlying dexterous manipulation.
Research Focus
Key Achievements
Top Papers
- 1A modular planar robotic manipulandum with end-point torque control234 citations · 2009
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