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Advances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)
|
September 7, 2001
Influence of long-term hyper-gravity on the reactivity of succinic acid dehydrogenase and NADPH-diaphorase in the central nervous system of fish: a histochemical study
R H Anken, H Rahmann
Annals of Anatomy = Anatomischer Anzeiger : Official Organ of the Anatomische Gesellschaft
|
January 1, 1995
Notes on the organization of the rostral diencephalon of the atherinomorph swordtail-fish Xiphophorus helleri
R H Anken, H Rahmann
Advances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)
|
September 7, 2001
On inappropriately used neuronal circuits as a possible basis of the "loop-swimming" behaviour of fish under reduced gravity: a theoretical study
R H Anken, H Rahmann
Advances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)
|
January 17, 2003
Gravity related research with fishes--perspectives in regard to the upcoming International Space Station, ISS
H Rahmann, R H Anken
Acta Astronautica
|
September 7, 2001
Neurobiological responses of fish to altered gravity conditions: a review
R H Anken, H Rahmann
Advances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)
|
May 11, 2005
A drop-tower experiment to determine the threshold of gravity for inducing motion sickness in fish
R H Anken, R Hilbig
Die Naturwissenschaften
|
May 20, 1999
Effect of altered gravity on the neurobiology of fish
R H Anken, H Rahmann
Biotechnic & Histochemistry : Official Publication of the Biological Stain Commission
|
September 1, 1993
Orientation of small specimens for cryosectioning
R H Anken, T Kappel
Journal Fur Hirnforschung
|
January 1, 1996
An atlas of the distribution of NADPH-diaphorase in the brain of the highly derived swordtail fish Xiphophorus helleri (Atherinoformes:Teleostei)
R H Anken, H Rahmann
Journal of Gravitational Physiology : a Journal of the International Society for Gravitational Physiology
|
January 6, 2004
Gravitation biology using fish as model systems for understanding motion sickness susceptibility
H Rahmann, R H Anken
Page
of 5
Search research articles
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Showing results (1-10 of 45) with videos related to
Sort By:
Page
of 5
Advances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)
|
September 7, 2001
Influence of long-term hyper-gravity on the reactivity of succinic acid dehydrogenase and NADPH-diaphorase in the central nervous system of fish: a histochemical study
R H Anken, H Rahmann
Annals of Anatomy = Anatomischer Anzeiger : Official Organ of the Anatomische Gesellschaft
|
January 1, 1995
Notes on the organization of the rostral diencephalon of the atherinomorph swordtail-fish Xiphophorus helleri
R H Anken, H Rahmann
Advances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)
|
September 7, 2001
On inappropriately used neuronal circuits as a possible basis of the "loop-swimming" behaviour of fish under reduced gravity: a theoretical study
R H Anken, H Rahmann
Advances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)
|
January 17, 2003
Gravity related research with fishes--perspectives in regard to the upcoming International Space Station, ISS
H Rahmann, R H Anken
Acta Astronautica
|
September 7, 2001
Neurobiological responses of fish to altered gravity conditions: a review
R H Anken, H Rahmann
Advances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)
|
May 11, 2005
A drop-tower experiment to determine the threshold of gravity for inducing motion sickness in fish
R H Anken, R Hilbig
Die Naturwissenschaften
|
May 20, 1999
Effect of altered gravity on the neurobiology of fish
R H Anken, H Rahmann
Biotechnic & Histochemistry : Official Publication of the Biological Stain Commission
|
September 1, 1993
Orientation of small specimens for cryosectioning
R H Anken, T Kappel
Journal Fur Hirnforschung
|
January 1, 1996
An atlas of the distribution of NADPH-diaphorase in the brain of the highly derived swordtail fish Xiphophorus helleri (Atherinoformes:Teleostei)
R H Anken, H Rahmann
Journal of Gravitational Physiology : a Journal of the International Society for Gravitational Physiology
|
January 6, 2004
Gravitation biology using fish as model systems for understanding motion sickness susceptibility
H Rahmann, R H Anken
Page
of 5