» Articles » PMID: 25285431

Complexity Matching in Dyadic Conversation

Overview
Specialty Psychology
Date 2014 Oct 7
PMID 25285431
Citations 52
Authors
Affiliations
Soon will be listed here.
Abstract

Recent studies of dyadic interaction have examined phenomena of synchronization, entrainment, alignment, and convergence. All these forms of behavioral matching have been hypothesized to play a supportive role in establishing coordination and common ground between interlocutors. In the present study, evidence is found for a new kind of coordination termed complexity matching. Temporal dynamics in conversational speech signals were analyzed through time series of acoustic onset events. Timing in periods of acoustic energy was found to exhibit behavioral matching that reflects complementary timing in turn-taking. In addition, acoustic onset times were found to exhibit power law clustering across a range of timescales, and these power law functions were found to exhibit complexity matching that is distinct from behavioral matching. Complexity matching is discussed in terms of interactive alignment and other theoretical principles that lead to new hypotheses about information exchange in dyadic conversation and interaction in general.

Citing Articles

From unimodal to multimodal dynamics of verbal and nonverbal cues during unstructured conversation.

Fauviaux T, Marin L, Parisi M, Schmidt R, Mostafaoui G PLoS One. 2024; 19(9):e0309831.

PMID: 39321138 PMC: 11423967. DOI: 10.1371/journal.pone.0309831.


Places for reasoning.

Gastelum-Vargas M, Chemero A, Raja V Philos Trans R Soc Lond B Biol Sci. 2024; 379(1910):20230294.

PMID: 39114985 PMC: 11338562. DOI: 10.1098/rstb.2023.0294.


Complexity synchronization in living matter: a mini review.

West B Front Netw Physiol. 2024; 4:1379892.

PMID: 38831910 PMC: 11145412. DOI: 10.3389/fnetp.2024.1379892.


Complexity Synchronization of Organ Networks.

West B, Grigolini P, Kerick S, Franaszczuk P, Mahmoodi K Entropy (Basel). 2023; 25(10).

PMID: 37895514 PMC: 10606256. DOI: 10.3390/e25101393.


Temporal organization of stride-to-stride variations contradicts predictive models for sensorimotor control of footfalls during walking.

Mangalam M, Kelty-Stephen D, Sommerfeld J, Stergiou N, Likens A PLoS One. 2023; 18(8):e0290324.

PMID: 37616227 PMC: 10449478. DOI: 10.1371/journal.pone.0290324.