Assessment of disease-related cognitive impairments using the novel object recognition (NOR) task in rodents

•NOR deficits are demonstrated in animal models of human disorders and conditions.•The NOR test is cost and time effective, non-rewarded and ethologically relevant.•The NOR test is invaluable in identifying the neural basis of cognitive deficits.•The NOR test is useful in evaluating the efficacy of...

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Published inBehavioural brain research Vol. 285; pp. 176 - 193
Main Authors Grayson, Ben, Leger, Marianne, Piercy, Chloe, Adamson, Lisa, Harte, Michael, Neill, Joanna C.
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 15.05.2015
Elsevier
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Abstract •NOR deficits are demonstrated in animal models of human disorders and conditions.•The NOR test is cost and time effective, non-rewarded and ethologically relevant.•The NOR test is invaluable in identifying the neural basis of cognitive deficits.•The NOR test is useful in evaluating the efficacy of novel therapeutic targets. The novel object recognition test (NOR) test is a two trial cognitive paradigm that assesses recognition memory. Recognition memory is disturbed in a range of human disorders and NOR is widely used in rodents for investigating deficits in a variety of animal models of human conditions where cognition is impaired. It possesses several advantages over more complex tasks that involve lengthy training procedures and/or food or water deprivation. It is quick to administer, non-rewarded, provides data quickly, cost effective and most importantly, ethologically relevant as it relies on the animal's natural preference for novelty. A PubMed search revealed over 900 publications in rats and mice using this task over the past 3 years with 34 reviews in the past 10 years, demonstrating its increasing popularity with neuroscientists. Although it is widely used in many disparate areas of research, no articles have systematically examined this to date, which is the subject of our review. We reveal that NOR may be used to study recognition memory deficits that occur in Alzheimer's disease and schizophrenia, where research is extensive, in Parkinson's disease and Autism Spectrum Disorders (ASD) where we observed markedly reduced numbers of publications. In addition, we review the use of NOR to study cognitive deficits induced by traumatic brain injury and cancer chemotherapy, not disorders per se, but situations in which cognitive deficits dramatically reduce the quality of life for those affected, see Fig. 1 for a summary. Our review reveals that, in all these animal models, the NOR test is extremely useful for identification of the cognitive deficits observed, their neural basis, and for testing the efficacy of novel therapeutic agents. Our conclusion is that NOR is of considerable value for cognitive researchers of all disciplines and we anticipate that its use will continue to increase due to its versatility and several other advantages, as detailed in this review.
AbstractList The novel object recognition test (NOR) test is a two trial cognitive paradigm that assesses recognition memory. Recognition memory is disturbed in a range of human disorders and NOR is widely used in rodents for investigating deficits in a variety of animal models of human conditions where cognition is impaired. It possesses several advantages over more complex tasks that involve lengthy training procedures and/or food or water deprivation. It is quick to administer, non-rewarded, provides data quickly, cost effective and most importantly, ethologically relevant as it relies on the animal's natural preference for novelty. A PubMed search revealed over 900 publications in rats and mice using this task over the past 3 years with 34 reviews in the past 10 years, demonstrating its increasing popularity with neuroscientists. Although it is widely used in many disparate areas of research, no articles have systematically examined this to date, which is the subject of our review. We reveal that NOR may be used to study recognition memory deficits that occur in Alzheimer's disease and schizophrenia, where research is extensive, in Parkinson's disease and Autism Spectrum Disorders (ASD) where we observed markedly reduced numbers of publications. In addition, we review the use of NOR to study cognitive deficits induced by traumatic brain injury and cancer chemotherapy, not disorders per se, but situations in which cognitive deficits dramatically reduce the quality of life for those affected, see Fig. 1 for a summary. Our review reveals that, in all these animal models, the NOR test is extremely useful for identification of the cognitive deficits observed, their neural basis, and for testing the efficacy of novel therapeutic agents. Our conclusion is that NOR is of considerable value for cognitive researchers of all disciplines and we anticipate that its use will continue to increase due to its versatility and several other advantages, as detailed in this review.
The novel object recognition test (NOR) test is a two trial cognitive paradigm that assesses recognition memory. Recognition memory is disturbed in a range of human disorders and NOR is widely used in rodents for investigating deficits in a variety of animal models of human conditions where cognition is impaired. It possesses several advantages over more complex tasks that involve lengthy training procedures and/or food or water deprivation. It is quick to administer, non-rewarded, provides data quickly, cost effective and most importantly, ethologically relevant as it relies on the animal's natural preference for novelty. A PubMed search revealed over 900 publications in rats and mice using this task over the past 3 years with 34 reviews in the past 10 years, demonstrating its increasing popularity with neuroscientists. Although it is widely used in many disparate areas of research, no articles have systematically examined this to date, which is the subject of our review. We reveal that NOR may be used to study recognition memory deficits that occur in Alzheimer's disease and schizophrenia, where research is extensive, in Parkinson's disease and Autism Spectrum Disorders (ASD) where we observed markedly reduced numbers of publications. In addition, we review the use of NOR to study cognitive deficits induced by traumatic brain injury and cancer chemotherapy, not disorders per se, but situations in which cognitive deficits dramatically reduce the quality of life for those affected, see Fig. 1 for a summary. Our review reveals that, in all these animal models, the NOR test is extremely useful for identification of the cognitive deficits observed, their neural basis, and for testing the efficacy of novel therapeutic agents. Our conclusion is that NOR is of considerable value for cognitive researchers of all disciplines and we anticipate that its use will continue to increase due to its versatility and several other advantages, as detailed in this review.The novel object recognition test (NOR) test is a two trial cognitive paradigm that assesses recognition memory. Recognition memory is disturbed in a range of human disorders and NOR is widely used in rodents for investigating deficits in a variety of animal models of human conditions where cognition is impaired. It possesses several advantages over more complex tasks that involve lengthy training procedures and/or food or water deprivation. It is quick to administer, non-rewarded, provides data quickly, cost effective and most importantly, ethologically relevant as it relies on the animal's natural preference for novelty. A PubMed search revealed over 900 publications in rats and mice using this task over the past 3 years with 34 reviews in the past 10 years, demonstrating its increasing popularity with neuroscientists. Although it is widely used in many disparate areas of research, no articles have systematically examined this to date, which is the subject of our review. We reveal that NOR may be used to study recognition memory deficits that occur in Alzheimer's disease and schizophrenia, where research is extensive, in Parkinson's disease and Autism Spectrum Disorders (ASD) where we observed markedly reduced numbers of publications. In addition, we review the use of NOR to study cognitive deficits induced by traumatic brain injury and cancer chemotherapy, not disorders per se, but situations in which cognitive deficits dramatically reduce the quality of life for those affected, see Fig. 1 for a summary. Our review reveals that, in all these animal models, the NOR test is extremely useful for identification of the cognitive deficits observed, their neural basis, and for testing the efficacy of novel therapeutic agents. Our conclusion is that NOR is of considerable value for cognitive researchers of all disciplines and we anticipate that its use will continue to increase due to its versatility and several other advantages, as detailed in this review.
•NOR deficits are demonstrated in animal models of human disorders and conditions.•The NOR test is cost and time effective, non-rewarded and ethologically relevant.•The NOR test is invaluable in identifying the neural basis of cognitive deficits.•The NOR test is useful in evaluating the efficacy of novel therapeutic targets. The novel object recognition test (NOR) test is a two trial cognitive paradigm that assesses recognition memory. Recognition memory is disturbed in a range of human disorders and NOR is widely used in rodents for investigating deficits in a variety of animal models of human conditions where cognition is impaired. It possesses several advantages over more complex tasks that involve lengthy training procedures and/or food or water deprivation. It is quick to administer, non-rewarded, provides data quickly, cost effective and most importantly, ethologically relevant as it relies on the animal's natural preference for novelty. A PubMed search revealed over 900 publications in rats and mice using this task over the past 3 years with 34 reviews in the past 10 years, demonstrating its increasing popularity with neuroscientists. Although it is widely used in many disparate areas of research, no articles have systematically examined this to date, which is the subject of our review. We reveal that NOR may be used to study recognition memory deficits that occur in Alzheimer's disease and schizophrenia, where research is extensive, in Parkinson's disease and Autism Spectrum Disorders (ASD) where we observed markedly reduced numbers of publications. In addition, we review the use of NOR to study cognitive deficits induced by traumatic brain injury and cancer chemotherapy, not disorders per se, but situations in which cognitive deficits dramatically reduce the quality of life for those affected, see Fig. 1 for a summary. Our review reveals that, in all these animal models, the NOR test is extremely useful for identification of the cognitive deficits observed, their neural basis, and for testing the efficacy of novel therapeutic agents. Our conclusion is that NOR is of considerable value for cognitive researchers of all disciplines and we anticipate that its use will continue to increase due to its versatility and several other advantages, as detailed in this review.
Author Adamson, Lisa
Grayson, Ben
Piercy, Chloe
Harte, Michael
Leger, Marianne
Neill, Joanna C.
Author_xml – sequence: 1
  givenname: Ben
  surname: Grayson
  fullname: Grayson, Ben
  email: Ben.grayson@manchester.ac.uk
– sequence: 2
  givenname: Marianne
  surname: Leger
  fullname: Leger, Marianne
– sequence: 3
  givenname: Chloe
  surname: Piercy
  fullname: Piercy, Chloe
– sequence: 4
  givenname: Lisa
  surname: Adamson
  fullname: Adamson, Lisa
– sequence: 5
  givenname: Michael
  surname: Harte
  fullname: Harte, Michael
– sequence: 6
  givenname: Joanna C.
  surname: Neill
  fullname: Neill, Joanna C.
  email: Joanna.neill@manchester.ac.uk
BackLink https://www.ncbi.nlm.nih.gov/pubmed/25447293$$D View this record in MEDLINE/PubMed
https://normandie-univ.hal.science/hal-02135285$$DView record in HAL
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Keywords Schizophrenia
Parkinson's disease
Traumatic brain injury
Object recognition
Alzheimer's disease
Autistic spectrum disorder
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Snippet •NOR deficits are demonstrated in animal models of human disorders and conditions.•The NOR test is cost and time effective, non-rewarded and ethologically...
The novel object recognition test (NOR) test is a two trial cognitive paradigm that assesses recognition memory. Recognition memory is disturbed in a range of...
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SubjectTerms Alzheimer's disease
Animals
Autistic spectrum disorder
Cognition Disorders - diagnosis
Cognitive science
Disease Models, Animal
Mice
Neuroscience
Object recognition
Parkinson's disease
Psychological Tests
Rats
Recognition (Psychology)
Schizophrenia
Traumatic brain injury
Title Assessment of disease-related cognitive impairments using the novel object recognition (NOR) task in rodents
URI https://dx.doi.org/10.1016/j.bbr.2014.10.025
https://www.ncbi.nlm.nih.gov/pubmed/25447293
https://www.proquest.com/docview/1667964537
https://www.proquest.com/docview/1732835526
https://normandie-univ.hal.science/hal-02135285
Volume 285
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