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Die Naturwissenschaften|May 20, 1999
Effect of altered gravity on the neurobiology of fishR H Anken, H RahmannJournal 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 RahmannJournal 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 susceptibilityH Rahmann, R H AnkenMicrogravity Science and Technology|March 18, 2005
Determination of the threshold of gravity for inducing kinetosis in fish: a drop-tower experimentR H Anken, R HilbigNeuroreport|November 13, 1995
Unusual brain nucleus in the diencephalon of a perciform (nototheniid) fish from AntarcticaR H Anken, H RahmannAdvances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)|September 7, 2001
Gravitational neurobiology of fishH Rahmann, R H AnkenAdvances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)|September 7, 2001
Neuroplastic reactivity of fish induced by altered gravity conditions: a review of recent resultsH Rahmann, R H AnkenAdvances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)|April 6, 2005
Efficacy of an ototoxic aminoglycoside (gentamicin) on the differentiation of the inner ear of cichlid fishJ Schönleber, R H AnkenAdvances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)|January 17, 2003
Influence of hypergravity on fish inner ear otoliths: II. Incorporation of calcium and kinetotic behaviourM Beier, R H Anken, H RahmannNeuroscience Letters|December 2, 2000
Weightlessness during spaceflight results in enhanced synapse formation in a fish brain vestibular nucleusM Ibsch, R H Anken, H RahmannPageof 5