A RELATIONSHIP BETWEEN MOVEMENT TIME AND TRAVELED DISTANCE DURING SMOOTH COOPERATIVE OBJECT TRANSFER BY TWO HUMANS

A Relationship between Movement Time and Traveled Distance during Smooth Cooperative Object Transfer by Two Humans

A smooth manipulator motion is desired to work cooperatively with human hand in transferring an object.In this article, a relationship between movement time and traveled distance of a cooperative object transfer performed by two humans using their right hands in a seated position was investigated.The Dining Table relationship will be utilized with

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Impacts of stimulus parameters and configurations on motor cortex direct electrical stimulation using intrinsic optical imaging: a pilot study

Abstract Background Motor cortex stimulation applied as a clinical treatment for neuropathic disorders for decades.With stimulation electrodes placed directly on the cortical surface, this neuromodulation method provides higher spatial resolution than other non-invasive therapies.Yet, the therapeutic effects reported were not in conformity Ruler wi

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The Influence of Lateral Size and Oxidation of Graphene Oxide on Its Chemical Reduction and Electrical Conductivity of Reduced Graphene Oxide

The chemical reduction efficiencies of graphene oxide (GO) are critically important in achieving graphene-like properties in reduced graphene oxide (rGO).In this study, we assessed GO lateral size and its degree of oxidation effect on its chemical reduction efficiency in both suspension and film and the electrical conductivity of the corresponding

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Secret data modification based image steganography technique using genetic algorithm having a flexible chromosome structure

In all forms of confidential communication, the most significant element is security.Cryptography can be used to secure the information, but it discloses the presence of covert communication.Hence, CHLOROPHYLL LIQUIDE steganography was invented; steganography is an art of concealed communication.Steganography is performed by inserting the secret in

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Establishing the temperature and orientation dependence of the threshold displacement energy in ThO2 via molecular dynamics simulations

ThO2 is a promising fuel for next-generation nuclear reactors.As a critical quantity measuring its radiation tolerance, the dependence of the threshold displacement energy on temperature and crystal orientation in ThO2 is unclear and established using comprehensive molecular dynamics simulations in this work.For both Th and O primary knock-on atoms

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