Michel Barrot

About Michel Barrot

Michel Barrot, With an exceptional h-index of 64 and a recent h-index of 41 (since 2020), a distinguished researcher at Université de Strasbourg, specializes in the field of Neurosciences, Neurobiology, Pain, Depression.

His recent articles reflect a diverse array of research interests and contributions to the field:

The basolateral amygdala-anterior cingulate pathway contributes to depression-like behaviors and comorbidity with chronic pain behaviors in male mice

Role of the striatal dopamine, GABA and opioid systems in mediating feeding and fat intake

The Human SCN9AR185H Point Mutation Induces Pain Hypersensitivity and Spontaneous Pain in Mice

Fos response of the tail of the ventral tegmental area to food restriction entails a prediction error processing

Antiallodynic action of phosphodiesterase inhibitors in a mouse model of peripheral nerve injury

Platelet‐rich plasma and cytokines in neuropathic pain: A narrative review and a clinical perspective

Dopamine D1 receptor signalling in the lateral shell of the nucleus accumbens controls dietary fat intake in male rats

Action of mefloquine/amitriptyline THN101 combination on neuropathic mechanical hypersensitivity in mice

Michel Barrot Information

University

Position

CNRS Research Director INCI CNRS and

Citations(all)

20190

Citations(since 2020)

6089

Cited By

16584

hIndex(all)

64

hIndex(since 2020)

41

i10Index(all)

96

i10Index(since 2020)

77

Email

University Profile Page

Google Scholar

Michel Barrot Skills & Research Interests

Neurosciences

Neurobiology

Pain

Depression

Top articles of Michel Barrot

The basolateral amygdala-anterior cingulate pathway contributes to depression-like behaviors and comorbidity with chronic pain behaviors in male mice

Nature Communications

2023/4/17

Role of the striatal dopamine, GABA and opioid systems in mediating feeding and fat intake

2022/8/1

Anil Joshi
Anil Joshi

H-Index: 3

Michel Barrot
Michel Barrot

H-Index: 41

The Human SCN9AR185H Point Mutation Induces Pain Hypersensitivity and Spontaneous Pain in Mice

Frontiers in Molecular Neuroscience

2022/6/13

Fos response of the tail of the ventral tegmental area to food restriction entails a prediction error processing

Behavioural Brain Research

2022/5/3

Michel Barrot
Michel Barrot

H-Index: 41

Antiallodynic action of phosphodiesterase inhibitors in a mouse model of peripheral nerve injury

Neuropharmacology

2022/3/1

Sylvain Hugel
Sylvain Hugel

H-Index: 13

Michel Barrot
Michel Barrot

H-Index: 41

Platelet‐rich plasma and cytokines in neuropathic pain: A narrative review and a clinical perspective

2022/1

Michel Barrot
Michel Barrot

H-Index: 41

Dopamine D1 receptor signalling in the lateral shell of the nucleus accumbens controls dietary fat intake in male rats

Appetite

2021/12/1

Action of mefloquine/amitriptyline THN101 combination on neuropathic mechanical hypersensitivity in mice

Pain

2021/12/1

Perrine Inquimbert
Perrine Inquimbert

H-Index: 11

Michel Barrot
Michel Barrot

H-Index: 41

Midbrain and lateral nucleus accumbens dopamine depletion affects free-choice high-fat high-sugar diet preference in male rats

Neuroscience

2021/7/15

Anil Joshi
Anil Joshi

H-Index: 3

Michel Barrot
Michel Barrot

H-Index: 41

Dopaminergic activity in the ventral tegmental area in a chronic pain induced-depression model

2021/5/19

Sylvain Hugel
Sylvain Hugel

H-Index: 13

Michel Barrot
Michel Barrot

H-Index: 41

Depression in focus: Insights from animal and human data, from molecular to behavioural analyses

European journal of neuroscience

2021

Michel Barrot
Michel Barrot

H-Index: 41

How to study anxiety and depression in rodent models of chronic pain?

2021/1

Michel Barrot
Michel Barrot

H-Index: 41

Ablation of the tail of the ventral tegmental area compensates symptoms in an experimental model of Parkinson's disease

Neurobiology of Disease

2020/6/1

Delta opioid receptors are essential to the antiallodynic action of Β2-mimetics in a model of neuropathic pain

Molecular Pain

2020/3

Michel Barrot
Michel Barrot

H-Index: 41

Peripheral delta opioid receptors mediate formoterol anti-allodynic effect in a mouse model of neuropathic pain

Frontiers in Molecular Neuroscience

2020/2/14

Michel Barrot
Michel Barrot

H-Index: 41

See List of Professors in Michel Barrot University(Université de Strasbourg)

Co-Authors

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