Forum for Science, Industry and Business
  • Sponsored by:
  • Siemens
  • Siemens
  • Siemens
Search our Site:

Topic (optional):

 

Home Reports Life Sciences Content

Unnatural light-dark cycles expose duelling circadian clocks

next article
04.05.2004

 


In mammals, the endogenous daily pacemaker that regulates circadian rhythms like sleep and wakefulness is localized to a defined site in the brain, the suprachiasmatic nucleus (SCN), which is composed of many neurons whose circadian activities are in synchrony with one another. By exposing rats to a very short day/night schedule – a regimen that effectively pushes the limits of the SCN’s ability to set the clock to day length – researchers have discovered within the SCN two sub-clocks that normally oscillate in unison, but can become disconnected from one another as a result of artificial day/night cycles. One clock followed the artificially short 11-hr. day/11-hr. night schedule, while the other followed a longer cycle (>24 hrs.), but both clocks controlled behavioral rhythms within an individual animal.


The researchers, Horacio de la Iglesia and William Schwartz of the University of Massachusetts Medical School in Worcester, collaborating with Trinitat Cambras and Antoni Díez-Noguera of the University of Barcelona, found that the two locomotor activity rhythms reflected the separate oscillating activities of two areas within the SCN – essentially the top and bottom halves – that correspond to previously described anatomical subdivisions.

The results add to a growing awareness that it is a network of multiple oscillators, not only throughout the brain and body but also within the SCN itself, that underlies the workings of the circadian timing system. In humans, some of the symptoms arising from jet lag or rotating work schedules might not be due to the desynchronization between the central brain pacemaker and downstream oscillators in the body, but rather from the uncoupling of oscillators within the central pacemaker itself.


Horacio O. de la Iglesia, Trinitat Cambras, William J. Schwartz, and Antoni Díez-Noguera: "Forced Desynchronization of Dual Circadian Oscillators Within the Rat Suprachiasmatic Nucleus"

Publishing in Current Biology, Volume 14, Number 9 May 4, 2004.

Heidi Hardman | Source: EurekAlert!
Further information: www.cell.com/

next article

More articles from Life Sciences:

nachricht Genetic Biobanks: Deposits, Withdrawals, and Consumer Protection
21.11.2008 | Genetics and Public Policy Center

nachricht Research Consortium to Sequence Turkey Genome
21.11.2008 | Virginia Tech (Virginia Polytechnic Institute and State University)

B2B Search

Product / Service
Company / Organisation

Latest News

Sustainable garden roofs developed as a new construction material

21.11.2008 | Studies and Analyses

Bees declared the winners in Earthwatch’s ‘irreplaceable species’ battle

21.11.2008 | Ecology, The Environment and Conservation

Hairspray is linked to common genital birth defect

21.11.2008 | Studies and Analyses

Event News

The Automobile – The Transition from Energy Guzzler to Power Supplier

20.11.2008 | Event News

Ministers meet to define the role of space in delivering global objectives

18.11.2008 | Event News

156th Annual Acoustical Society of America (ASA) Meeting in Miami

28.10.2008 | Event News