Caruana and Scott (open source) distinguish ancient and more modern brain systems regulating our laughter:
Highlights
Behavioral
and clinical evidence distinguish two major forms of human laughter:
spontaneous, emotionally driven vocalizations and volitional expressions
used in social communication.
Progress
in the neuroscience of laughter has been limited by the difficulty of
capturing spontaneous, natural signals in laboratory settings. Invasive
investigations in humans, such as direct electrical stimulation, have
provided a unique causal window into its underlying circuitry.
Evidence
supports a dual-system framework, in which an evolutionarily ancient
cingulo-temporal network drives spontaneous laughter and its social
bonding and analgesic functions, while a lateral motor-opercular system
co-opts speech networks for volitional expression used in social
negotiation and conversation.
Abstract
Laughter
is a universal social signal and a defining clinical sign of various
neurological disorders. Yet, its neural orchestration remains elusive,
due in part to the challenge of reproducing its spontaneous nature in
the laboratory. In this review, we showcase how recent invasive
investigations—from direct electrical stimulation to intracranial
recordings—unveil the underlying circuitry. We propose a dual-system
framework: an evolutionarily ancient cingulo-temporal network that acts
as the gateway for spontaneous, involuntary outbursts; and a lateral
motor-opercular system that co-opts speech-production networks for
volitional, conversational laughter. This neuroethological perspective
reveals how parallel cortico-subcortical pathways drive laughter as both
a primal affective signal and a sophisticated communicative tool,
offering a new roadmap for understanding human social bonding and its
clinical disruptions.
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