RxPG News Feed for RxPG News

Medical Research Health Special Topics World
  Home
 
   Health
 Aging
 Asian Health
 Events
 Fitness
 Food & Nutrition
 Happiness
 Men's Health
 Mental Health
 Occupational Health
 Parenting
 Public Health
 Sleep Hygiene
 Women's Health
 
   Healthcare
 Africa
 Australia
 Canada Healthcare
 China Healthcare
 India Healthcare
 New Zealand
 South Africa
 UK
 USA
 World Healthcare
 
   Latest Research
 Aging
 Alternative Medicine
 Anaethesia
 Biochemistry
 Biotechnology
 Cancer
 Cardiology
 Clinical Trials
 Cytology
 Dental
 Dermatology
 Embryology
 Endocrinology
 ENT
 Environment
 Epidemiology
 Gastroenterology
 Genetics
 Gynaecology
 Haematology
 Immunology
 Infectious Diseases
 Medicine
 Metabolism
 Microbiology
 Musculoskeletal
 Nephrology
 Neurosciences
  Brain Diseases
  Demyelinating Diseases
  Headache
  Memory
  Neurochemistry
  Neurodegenerative Diseases
  Regeneration
  Spinal Cord Diseases
  Stroke
  Taste
  Trigeminal Neuralgia
 Obstetrics
 Ophthalmology
 Orthopedics
 Paediatrics
 Pathology
 Pharmacology
 Physiology
 Physiotherapy
 Psychiatry
 Radiology
 Rheumatology
 Sports Medicine
 Surgery
 Toxicology
 Urology
 
   Medical News
 Awards & Prizes
 Epidemics
 Launch
 Opinion
 Professionals
 
   Special Topics
 Ethics
 Euthanasia
 Evolution
 Feature
 Odd Medical News
 Climate

Last Updated: Oct 11, 2012 - 10:22:56 PM
Neurosciences Channel

subscribe to Neurosciences newsletter
Latest Research : Neurosciences

   EMAIL   |   PRINT
Olfaction is uniquely a "dual" sense

Aug 18, 2005 - 2:14:00 AM
"The effect of route of delivery was greatest for the chocolate odor, raising the possibility that odorant administration interacts with experience to engage unique brain regions and that olfactory referral induced by retronasal stimulation creates a differential reward context for food but not for non-food odors by signaling availability versus receipt of food,"

 
[RxPG] Researchers have presented the first clear evidence that olfaction is uniquely a "dual" sense, in that the brain perceives the same odorant molecule differently if it arrives through the nose rather than the mouth. In the August 18, 2005, issue of Neuron, researchers report that the smell of chocolate activated different brain regions according to whether the odor was introduced into the olfactory system through the mouth or through the nose.

In a joint research effort led by Dana M Small of The John B Pierce Laboratory and Yale University and Thomas Hummel of the University of Dresden Medical School, the researchers launched their exploration into the brain's possible dual response to odors because of the well-known phenomenon that sensing an odor "orthonasally" through the nose triggers the perception that it is coming from the outside world, while sensing it through the mouth--or "retronasally"--causes the perception that it arises from the mouth.

"The illusion that retronasally perceived odors are localized to the mouth is so powerful that people routinely mistake retronasal olfaction for 'taste,'" they wrote. "For example, we may say that we like the 'taste' of a wine, because of its fruity or spicy notes. However, gustation refers only to the sensations of sweet, sour, salty, savory, and bitter, and thus the pleasant 'taste' to which we refer is actually a pleasant odor sensed retronasally."

"The role of olfaction in taste is powerful," they said. For example, they pointed out that pinching the nose while eating or drinking--which blocks airflow from the mouth through the olfactory system--blocks flavor perception. Releasing the nose restores the sense of flavor in the mouth.

"The fact that the olfactory referral illusion is maintained even though the subject is now aware that the experience is related to an event in the nose demonstrates that olfactory referral is robust and cognitively impenetrable."

To begin to penetrate the neural cause of olfaction's duality, the researchers devised the first experiments to directly compare the same odorants introduced through the nose and the mouth.

"Although several studies have examined brain responses to retronasal olfactory stimulation, none have directly compared orthonasal and retronasal stimulation in the same subjects or considered the possibility that the effects of route of stimulation depend on the way that odors are typically sensed," wrote Small and her colleagues. "For example, food odors are normally experienced both orthonasally and retronasally, whereas nonfood odors are perceived only orthonasally. Therefore, it is possible that the route of stimulation may have different effects for food versus nonfood odors."

In their experiments, they inserted small tubes into the noses of volunteers such that one tube ended at the nostrils and the other ended farther back in the nasal passage near the throat, where odors from the mouth would originate. As they introduced odors into one tube or the other, they scanned the subject's brains using functional magnetic resonance imaging, a technique in which harmless magnetic fields and radio waves detect increased blood flow to brain areas, which reflects increased activity.

They used four odorants: chocolate odor represented a food odor, and lavender represented a non-food odor that was similarly pleasant as chocolate. They also chose two odorant chemicals--butanol and farnesol--to test a theory that the olfactory system distinguishes molecules according to whether they are more water soluble (butanol) or oily (farnesol).

The researchers found that the chocolate odor, indeed, activated different brain regions according to the route of administration, supporting the duality of olfaction. The lavender odor did appear to activate different regions, but to a far lesser extent.

"The effect of route of delivery was greatest for the chocolate odor, raising the possibility that odorant administration interacts with experience to engage unique brain regions and that olfactory referral induced by retronasal stimulation creates a differential reward context for food but not for non-food odors by signaling availability versus receipt of food," they concluded. "Because the current study tested only one food, future experiments are needed to determine whether other food odors produce the same differential brain activations," they wrote.

However, the researchers found that the two different chemicals butanol and farnesol did not elicit significantly different brain responses according to the route of delivery, indicating that the properties of the molecules do not play a role in the response.



Publication: Small et al.: "Differential neural responses evoked by orthonasal versus retronasal odorant perception in humans" Neuron, Vol. 47, 593–605, August 18, 2005, DOI 10.1016/j.neuron.2005.07.022 www.neuron.org
On the web: Cell Press 

Advertise in this space for $10 per month. Contact us today.


Related Neurosciences News
A new tool for brain research
Eve Marder to receive the $500,000 Gruber Neuroscience Prize
Research teams find genetic variant that could improve warfarin dosing in African-Americans
Diagnostic coronary angiography: Functional flow reserve changes decisions in 25 percent of cases
Study identifies a genetic risk factor for persistent pain
New BRAIN initiative announced at White House
Nurses can play key role in reducing deaths from world's most common diseases
UH Case Medical Center awarded highest certification as Comprehensive Stroke Center
NIH funds research to identify Parkinson's biomarkers
Treatment with clot-busting drug yields better results after stroke than supportive therapy alone

Subscribe to Neurosciences Newsletter

Enter your email address:


 Additional information about the news article
The researchers include Dana M. Small of The John B. Pierce Laboratory and Yale University, New Haven, Connecticut; Johannes C. Gerber and Thomas Hummel of University of Dresden Medical School, Dresen, Germany; and Y. Erica Mak of The John B. Pierce Laboratory, New Haven, Connecticut. This work was supported by grants from the National Institute of Deafness and Other Communication Disorders and the Deutsche Forschungsgemeinschaft.
 Feedback
For any corrections of factual information, to contact the editors or to send any medical news or health news press releases, use feedback form

Top of Page

 
Contact us

RxPG Online

Nerve

 

    Full Text RSS

© All rights reserved by RxPG Medical Solutions Private Limited (India)