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Motor control of flexible octopus arms

NaturePublished 1 February 2005
Germán Sumbre, Graziano Fiorito, Tamar Flash, Binyamin Hochner
Citations167
SJR quartileQ1
SJR score18.29
SNIP10.16

TL;DR

It is shown that when the octopus uses one of its long and highly flexible arms to transfer an object from one place to another, it employs a vertebrate-like strategy, temporarily reconfiguring its arm into a stiffened, articulated, quasi-jointed structure, indicating that an articulated limb may provide an optimal solution for achieving precise, point-to-point movements.

Abstract

Animals with rigid skeletons can rely on several mechanisms to simplify motor control--for example, they have skeletal joints that reduce the number of variables and degrees of freedom that need to be controlled. Here we show that when the octopus uses one of its long and highly flexible arms to transfer an object from one place to another, it employs a vertebrate-like strategy, temporarily reconfiguring its arm into a stiffened, articulated, quasi-jointed structure. This indicates that an articulated limb may provide an optimal solution for achieving precise, point-to-point movements.

Keywords

PsychologyAgricultural and Biological SciencesNeuroscience