The suprachiasmatic nuclei contain a tetrodotoxin-resistant circadian pacemaker.

Abstract:

:Tetrodotoxin was infused into the suprachiasmatic nuclei of unanesthetized and unrestrained rats continuously for 14 days. The internal timekeeping mechanism of the circadian pacemaker in the nuclei continued to oscillate unaffected by this treatment, although the toxin reversibly blocked function of both the input pathway for pacemaker entrainment and an output pathway for expression of the circadian drinking rhythm. Thus, Na+-dependent action potentials appear necessary for entrainment and expression of overt circadian rhythms, but they do not seem necessary for the pacemaker to keep accurate time. The experimental approach presented in this paper is useful because it allows systematic assessment and distinction of the input, pacemaker, and output components of a mammalian circadian timekeeping system in vivo.

authors

Schwartz WJ,Gross RA,Morton MT

doi

10.1073/pnas.84.6.1694

subject

Has Abstract

pub_date

1987-03-01 00:00:00

pages

1694-8

issue

6

eissn

0027-8424

issn

1091-6490

journal_volume

84

pub_type

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