Mohammad H Mahoor
Biographic Data
| ID | 1463391 |
|---|---|
| NAME | Mohammad H Mahoor |
| GIVEN NAMES | Mohammad H |
| FAMILY NAME | Mahoor |
| SIGNATURE | MAHOOR M H |
| AFFILIATIONS | University of Denver |
| ORCID | 0000-0001-8923-4660 |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 4 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2009 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 1 |
Ethics in digital phenotyping: Considerations regarding Alzheimer’s disease, speech and artificial intelligence
Artificial intelligence (AI)-based digital phenotyping, including computational speech analysis, increasingly allows for the collection of diagnostically relevant information from an ever-expanding number of sources. Such information usually assesses human behaviour, which is a consequence of the nervous system, and so digital phenotyping may be particularly helpful in diagnosing neurological illnesses such as Alzheimer’s disease. As illustrated …
A Close Look at the Imitation Performance of Children with Autism and Typically Developing Children Using a Robotic System
Role of embodiment and presence in human perception of robots’ facial cues
The eyes have it: Making positive expressions more positive and negative expressions more negative
Facial expressions frequently involve multiple individual facial actions. How do facial actions combine to create emotionally meaningful expressions? Infants produce positive and negative facial expressions at a range of intensities. It may be that a given facial action can index the intensity of both positive (smiles) and negative (cry-face) expressions. Objective, automated measurements of facial action intensity were paired with continuous rat…
Automated Measurement of Facial Expression in Infant–Mother Interaction: A Pilot Study
Automated facial measurement using computer vision has the potential to objectively document continuous changes in behavior. To examine emotional expression and communication, we used automated measurements to quantify smile strength, eye constriction, and mouth opening in two 6‐month‐old infant‐mother dyads who each engaged in a face‐to‐face interaction. Automated measurements showed high associations with anatomically based manual coding (concu…
Automated Measurement of Facial Expression in Infant–Mother Interaction: A Pilot Study
Automated facial measurement using computer vision has the potential to objectively document continuous changes in behavior. To examine emotional expression and communication, we used automated measurements to quantify smile strength, eye constriction, and mouth opening in two 6‐month‐old infant‐mother dyads who each engaged in a face‐to‐face interaction. Automated measurements showed high associations with anatomically based manual coding (concu…
The eyes have it: Making positive expressions more positive and negative expressions more negative
Facial expressions frequently involve multiple individual facial actions. How do facial actions combine to create emotionally meaningful expressions? Infants produce positive and negative facial expressions at a range of intensities. It may be that a given facial action can index the intensity of both positive (smiles) and negative (cry-face) expressions. Objective, automated measurements of facial action intensity were paired with continuous rat…
Role of embodiment and presence in human perception of robots’ facial cues
A Close Look at the Imitation Performance of Children with Autism and Typically Developing Children Using a Robotic System
Ethics in digital phenotyping: Considerations regarding Alzheimer’s disease, speech and artificial intelligence
Artificial intelligence (AI)-based digital phenotyping, including computational speech analysis, increasingly allows for the collection of diagnostically relevant information from an ever-expanding number of sources. Such information usually assesses human behaviour, which is a consequence of the nervous system, and so digital phenotyping may be particularly helpful in diagnosing neurological illnesses such as Alzheimer’s disease. As illustrated …
Psychology (5 works) · Computer Science (4 works) · Cognitive psychology (3 works) · Developmental psychology (3 works) · Face Recognition and Perception (3 works) · Facial expression (3 works) · Artificial Intelligence (2 works) · Communication (2 works) · Evolutionary Psychology and Human Behavior (2 works) · Facial Action Coding System (2 works)