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Francois M Lambert

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Citations 297
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Recent Articles
1.
Barrios G, Olechowski-Bessaguet A, Pain M, Bacque-Cazenave J, Cardoit L, Cabirol M, et al.
Front Neurol . 2024 Sep; 15:1439784. PMID: 39220733
In all vertebrates, maintaining trunk posture primarily depends on descending commands originating from brainstem vestibulospinal nuclei. Despite being broadly outlined across species, the detailed anatomical and operational structure of these...
2.
Lambert F, Beraneck M, Straka H, Simmers J
Curr Opin Neurobiol . 2023 Aug; 82:102761. PMID: 37604066
Neural replicas of the spinal motor commands that drive locomotion have become increasingly recognized as an intrinsic neural mechanism for producing gaze-stabilizing eye movements that counteract the perturbing effects of...
3.
Straka H, Lambert F, Simmers J
Front Neural Circuits . 2022 Dec; 16:1040070. PMID: 36569798
Vertebrate locomotion presents a major challenge for maintaining visual acuity due to head movements resulting from the intimate biomechanical coupling with the propulsive musculoskeletal system. Retinal image stabilization has been...
4.
Dubois C, Cardoit L, Simmers J, Lambert F, Thoby-Brisson M
Front Neurosci . 2022 Sep; 16:935166. PMID: 36117641
Central circuitry of the vestibular nuclei integrates sensory inputs in the adaptive control of motor behaviors such as posture, locomotion, and gaze stabilization. Thus far, such circuits have been mostly...
5.
Bacque-Cazenave J, Courtand G, Beraneck M, Straka H, Combes D, Lambert F
Nat Commun . 2022 May; 13(1):2957. PMID: 35618719
Locomotion in vertebrates is accompanied by retinal image-stabilizing eye movements that derive from sensory-motor transformations and predictive locomotor efference copies. During development, concurrent maturation of locomotor and ocular motor proficiency...
6.
Franca de Barros F, Bacque-Cazenave J, Taillebuis C, Courtand G, Manuel M, Bras H, et al.
Curr Biol . 2021 Dec; 32(2):453-461.e4. PMID: 34856124
Efference copies are neural replicas of motor outputs used to anticipate the sensory consequences of a self-generated motor action or to coordinate neural networks involved in distinct motor behaviors. An...
7.
Lambert F, Bacque-Cazenave J, Le Seach A, Arama J, Courtand G, Tagliabue M, et al.
Curr Biol . 2020 Jan; 30(4):746-753.e4. PMID: 31956031
Locomotor maturation requires concurrent gaze stabilization improvement for maintaining visual acuity [1, 2]. The capacity to stabilize gaze, in particular in small aquatic vertebrates where coordinated locomotor activity appears very...
8.
Olechowski-Bessaguet A, Grandemange R, Cardoit L, Courty E, Lambert F, Le Ray D
J Physiol . 2019 Dec; 598(4):817-838. PMID: 31834949
Key Points: Vestibulospinal reflexes participate in postural control. How this is achieved has not been investigated fully. We combined electrophysiological, neuroanatomical and imaging techniques to decipher the vestibulospinal network controlling...
9.
Oueghlani Z, Juvin L, Lambert F, Cardoit L, Courtand G, Masmejean F, et al.
Neuropharmacology . 2019 Oct; 170:107815. PMID: 31634501
Descending neuromodulators from the brainstem play a major role in the development and regulation of spinal sensorimotor functions. Here, the contribution of serotonergic signaling in the lumbar spinal cord was...
10.
Bacque-Cazenave J, Courtand G, Beraneck M, Lambert F, Combes D
Front Neural Circuits . 2018 Nov; 12:95. PMID: 30420798
In larval xenopus, locomotor-induced oculomotor behavior produces gaze-stabilizing eye movements to counteract the disruptive effects of tail undulation during swimming. While neuronal circuitries responsible for feed-forward intrinsic spino-extraocular signaling have...