Dimension Human Likeness

Dimension Human Likeness is a framework for assessing how closely a nonhuman entity, such as a robot, virtual agent, or artificial system, resembles a person in appearance, communication, or behavior. It operates by evaluating human-associated cues, including facial features, language, movement, emotional expression, and social responses, that shape observers’ perceptions of anthropomorphism. In behavioral research, this dimension helps explain how people interpret and interact with artificial agents, including whether they attribute intentions, emotions, or social capabilities to them. Measuring human likeness supports the design and evaluation of social robots, virtual environments, and human-computer interaction systems.

Dimension Human Likeness - Related Videos

Research

JoVE Journal - Behavior
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Perceptual and Category Processing of the Uncanny Valley Hypothesis' Dimension of Human Likeness: Some Methodological Issues

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Cited by 25 •

2013

Investigation of the Uncanny Valley Hypothesis and affective experience requires an understanding of the hypothesis' dimension of human likeness (DHL). This protocol allows representation of the DHL and examination of categorical perception. Use of the same stimuli and fMRI to distinguish brain regions responsive to physical and category change is illustrated.

Research

JoVE Journal - Neuroscience
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One Dimensional Turing-Like Handshake Test for Motor Intelligence

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Cited by 10 •

2010

We present a Turing-like Handshake test administered through a telerobotic system in which the interrogator is holding a robotic stylus and interacting with another party (human or artificial). We use a forced choice method, and extract a measure for the similarity of the artificial model to a human handshake.

Research

JoVE Journal - Medicine

Three-dimensional Alginate-bead Culture of Human Pituitary Adenoma Cells

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Cited by 5 •

2016

Three-dimensional culture in alginate beads, due to its simplicity and reproducibility, was chosen to maintain the pituitary adenoma cells. The procedures included an initial enzymatic digestion and mechanical dissociation of the tumor tissue, and the subsequent cell suspension was encapsulated in alginate beads.

Three-dimensional Imaging of Nociceptive Intraepidermal Nerve Fibers in Human Skin Biopsies

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Cited by 5 •

2013

In order to study the changes of nociceptive intraepidermal nerve fibers (IENFs) in painful neuropathies (PN), we developed protocols that could directly examine three-dimensional morphological changes observed in nociceptive IENFs. Three-dimensional analysis of IENFs has the potential to evaluate the morphological changes of IENF in PN.

Human Cartilage Tissue Fabrication Using Three-dimensional Inkjet Printing Technology

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Cited by 85 •

2014

The methods described in this paper show how to convert a commercial inkjet printer into a bioprinter with simultaneous UV polymerization. The printer is capable of constructing 3D tissue structure with cells and biomaterials. The study demonstrated here constructed a 3D neocartilage.

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