Jonathan Smallwood

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Professor

Queen's University
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Canada

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Recent Grants

Grant: Close

Understanding the significance of age related declines in self-generated thought

Open Date: 2016-01-01

Close Date: 2017-01-01

Grant: Close

Not all minds that wander are lost: A neurocognitive test of mind-wandering state’s contribution to human cognition.

Open Date: 2015-12-01

Close Date: 2020-05-31

Grant: Close

Wandering minds

Open Date: 2015-01-01

Close Date: 2020-01-01

Grant: Close

Resting state joco

Open Date: 2015-01-01

Close Date: 2016-01-01

Grant: Close

Wandering Minds: Interdisciplinary Experiments on Self-Generated Thought

Open Date: 2014-12-08

Close Date: 2016-12-08

Articles (11)

Body mass index–dependent shifts along large-scale gradients in human cortical organization explain dietary regulatory success

Making healthy dietary choices is essential for keeping weight within a normal range. Yet many people struggle with dietary self-control despite good intentions. What distinguishes neural processing in those who succeed or fail to implement healthy eating goals? Does this vary by weight status? To examine these questions, we utilized an analytical framework of gradients that characterize systematic spatial patterns of large-scale neural activity, which have the advantage of considering the entire suite of processes subserving self-control and potential regulatory tactics at the whole-brain level. Using an established laboratory food task capturing brain responses in natural and regulatory conditions (N = 123), we demonstrate that regulatory changes of dietary brain states in the gradient space predict individual differences in dietary success. Better regulators required smaller shifts in brain states to achieve larger goal-consistent changes in dietary behaviors, pointing toward efficient network organization. This pattern was most pronounced in individuals with lower weight status (low-BMI, body mass index) but absent in high-BMI individuals. Consistent with prior work, regulatory goals increased activity in frontoparietal brain circuits. However, this shift in brain states alone did not predict variance in dietary success. Instead, regulatory success emerged from combined changes along multiple gradients, showcasing the interplay of different large-scale brain networks subserving dietary control and possible regulatory strategies. Our results provide insights into how the brain might solve the problem of dietary control: Dietary success may be easier for people who adopt modes of large-scale brain activation that do not require significant reconfigurations across contexts and goals.

Year:

2024

Collaborators (13)

Hannah Thompson

City, University of London

UNITED KINGDOM

Daniel Margulies

University of Oxford

UNITED KINGDOM

Hilke Plassmann

-

FRANCE

Peter Hellyer

King’s College London

UNITED KINGDOM

Naoki Tani

Associated Professor

Osaka University

JAPAN

Cendri Hutcherson

Assistant Professor

University of Toronto

CANADA

Anita Tusche

-

CANADA

Elizabeth Jefferies

Professor

University of York

UNITED KINGDOM

Robert Leech

King’s College London

UNITED KINGDOM

Glyn Paul Hallam

University of Huddersfield

UNITED KINGDOM

Hui Ming Khoo

Assistant Professor

Osaka University

JAPAN

Tirso Rene del Jesus Gonzalez Alam

Lecturer

Bangor University

UNITED KINGDOM

Yuji Ikegaya

Professor

University of Tokyo

JAPAN
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