Environmental topography and postural control demands shape aging-associated decrements in spatial navigation performance.

This study tests the hypothesis that aging-induced cognitive permeation of sensorimotor functions contributes to adult age differences in spatial navigation performance. Virtual maze-like museums were projected in front of a treadmill. Sixteen 20-30-year-old men and sixteen 60-70-year-old men performed a way-finding task in city-block or variable topographies while walking with or without support. Walking support attenuated age-related decrements in navigational learning. Navigation load increased trunk-angle variability for older adults only. Age differences in spatial knowledge persisted despite perfect place-finding performance. City-block topography was easier than variable topography for younger adults only, indicating age-related differences in reliance on spatial relational learning. Attempts at supporting older adults' navigation performance should consider sensorimotor/cognitive interactions and qualitative differences in navigational activity.

[1]  P. Lipman,et al.  Age and exposure differences in acquisition of route information. , 1991, Psychology and aging.

[2]  M. Naveh-Benjamin,et al.  Adult age differences in episodic memory: further support for an associative-deficit hypothesis. , 2003, Journal of experimental psychology. Learning, memory, and cognition.

[3]  Raymond J. Shaw,et al.  Attention and Aging: A Functional Perspective , 2000 .

[4]  P. Baltes,et al.  Walking While Memorizing: Age-Related Differences in Compensatory Behavior , 2001, Psychological science.

[5]  Shu-Chen Li,et al.  Aging Neuromodulation Impairs Associative Binding , 2005, Psychological science.

[6]  E. Maguire,et al.  The Well-Worn Route and the Path Less Traveled Distinct Neural Bases of Route Following and Wayfinding in Humans , 2003, Neuron.

[7]  S. Vandenberg,et al.  Mental Rotations, a Group Test of Three-Dimensional Spatial Visualization , 1978, Perceptual and motor skills.

[8]  S. Resnick,et al.  Age differences in spatial memory in a virtual environment navigation task , 2001, Neurobiology of Aging.

[9]  Gabriele Janzen,et al.  Selective neural representation of objects relevant for navigation , 2004, Nature Neuroscience.

[10]  R Kliegl,et al.  Speed and intelligence in old age. , 1993, Psychology and aging.

[11]  Bart Rypma,et al.  Age differences in components of mental-rotation task performance , 1991 .

[12]  L L Jacoby,et al.  Ironic effects of repetition: measuring age-related differences in memory. , 1999, Journal of experimental psychology. Learning, memory, and cognition.

[13]  S. Huettel,et al.  Males and females use different distal cues in a virtual environment navigation task. , 1998, Brain research. Cognitive brain research.

[14]  N. Raz,et al.  Differential effects of aging on memory for content and context: a meta-analysis. , 1995, Psychology and aging.

[15]  Denise C. Park,et al.  Handbook of the Psychology of Aging , 1979 .

[16]  H. Eichenbaum,et al.  Brain Aging: Impaired Coding of Novel Environmental Cues , 1997, The Journal of Neuroscience.

[17]  D. Winter,et al.  Gait in the elderly , 1997 .

[18]  Robin J. Caster Handbook of the Psychology of Aging, 5th ed. , 2003 .

[19]  U. Lindenberger,et al.  Studying individual aging in an interindividual context: typical paths of age-related, dementia-related, and mortality-related cognitive development in old age. , 2005, Psychology and aging.

[20]  M. Woollacott,et al.  Attention and the control of posture and gait: a review of an emerging area of research. , 2002, Gait & posture.

[21]  M. Gallagher,et al.  An evaluation of spatial information processing in aged rats. , 1987, Behavioral neuroscience.

[22]  Elizabeth M. Zelinski,et al.  Memory for spatial information in young and old adults. , 1983 .

[23]  Dylan M. Jones,et al.  Navigating Buildings in "Desk-Top" Virtual Environments: Experimental Investigations Using Extended Navigational Experience , 1997 .

[24]  A B Schultz,et al.  Stepping over obstacles: dividing attention impairs performance of old more than young adults. , 1996, The journals of gerontology. Series A, Biological sciences and medical sciences.

[25]  S Hale,et al.  Converging evidence that visuospatial cognition is more age-sensitive than verbal cognition. , 2000, Psychology and aging.

[26]  Haptic Lateralization, Field Dependence, and Sex , 1987 .

[27]  L Nyberg,et al.  Attention, Frailty, and Falls: The Effect of a Manual Task on Basic Mobility , 1998, Journal of the American Geriatrics Society.

[28]  L. Nyberg,et al.  “Stops walking when talking” as a predictor of falls in elderly people , 1997, The Lancet.

[29]  M. C. Newman,et al.  Older Adults Map Novel Environments but Do Not Place Learn: Findings From a Computerized Spatial Task , 2002 .

[30]  Sarah S. Chance,et al.  Spatial Updating of Self-Position and Orientation During Real, Imagined, and Virtual Locomotion , 1998 .

[31]  Kathleen C. Kirasic,et al.  Age differences in adults' spatial abilities, learning environmental layout, and wayfinding behavior , 2000, Spatial Cogn. Comput..

[32]  S. Moffat,et al.  Navigation in a “Virtual” Maze: Sex Differences and Correlation With Psychometric Measures of Spatial Ability in Humans , 1998 .

[33]  J. Morrison,et al.  Circuit-Specific Alterations in Hippocampal Synaptophysin Immunoreactivity Predict Spatial Learning Impairment in Aged Rats , 2000, The Journal of Neuroscience.

[34]  C A McGibbon,et al.  Age-related changes in lower trunk coordination and energy transfer during gait. , 2001, Journal of neurophysiology.

[35]  A. Wunderlich,et al.  Brain activation during human navigation: gender-different neural networks as substrate of performance , 2000, Nature Neuroscience.

[36]  E. Tolman Cognitive maps in rats and men. , 1948, Psychological review.

[37]  W. K. Honig,et al.  Spatial memory deficit in senescent rats. , 1980, Canadian journal of psychology.

[38]  P. Baltes,et al.  Memorizing while walking: increase in dual-task costs from young adulthood to old age. , 2000, Psychology and aging.

[39]  Richard S. J. Frackowiak,et al.  Knowing where and getting there: a human navigation network. , 1998, Science.

[40]  Anthony E. Richardson,et al.  Spatial knowledge acquisition from maps and from navigation in real and virtual environments , 1999, Memory & cognition.

[41]  B. McNaughton,et al.  Multistability of cognitive maps in the hippocampus of old rats , 1997, Nature.

[42]  M. G. Jones,et al.  Age-related differences in an ecologically based study of route learning. , 1997, Psychology and aging.

[43]  J. O’Keefe Do hippocampal pyramidal cells signal non‐spatial as well as spatial information? , 1999, Hippocampus.

[44]  Ulman Lindenberger,et al.  Cognition in the Berlin Aging Study (BASE): The First 10 Years , 2004 .

[45]  E. Maguire,et al.  The Human Hippocampus and Spatial and Episodic Memory , 2002, Neuron.

[46]  Marcia K. Johnson,et al.  Feature memory and binding in young and older adults , 1996, Memory & cognition.

[47]  U. Lindenberger,et al.  Development of intellectual abilities in old age : from age gradients to individuals , 2005 .

[48]  F. Gaunet,et al.  Virtual environments as a promising tool for investigating human spatial cognition. , 1998 .

[49]  T. Salthouse,et al.  Structural and operational capacities in integrative spatial ability. , 1989, Psychology and aging.

[50]  H. Eichenbaum,et al.  The Hippocampus, Memory, and Place Cells Is It Spatial Memory or a Memory Space? , 1999, Neuron.

[51]  U. Lindenberger,et al.  Relations between aging sensory/sensorimotor and cognitive functions , 2002, Neuroscience & Biobehavioral Reviews.

[52]  J. Loomis,et al.  Body-based senses enhance knowledge of directions in large-scale environments , 2004, Psychonomic bulletin & review.

[53]  J. O'Keefe,et al.  The hippocampus as a spatial map. Preliminary evidence from unit activity in the freely-moving rat. , 1971, Brain research.

[54]  Giuseppe Iaria,et al.  Hippocampal function and spatial memory: evidence from functional neuroimaging in healthy participants and performance of patients with medial temporal lobe resections. , 2004, Neuropsychology.

[55]  J. Taube,et al.  Hippocampal spatial representations require vestibular input , 2002, Hippocampus.

[56]  C. Lyketsos,et al.  Wandering behaviour in community‐residing persons with dementia , 1999, International journal of geriatric psychiatry.

[57]  B. McNaughton,et al.  Region‐specific age effects on AMPA sensitivity: Electrophysiological evidence for loss of synaptic contacts in hippocampal field CA1 , 1992, Hippocampus.

[58]  M. D’Esposito,et al.  Topographical disorientation: a synthesis and taxonomy. , 1999, Brain : a journal of neurology.

[59]  K P Ossenkopp,et al.  Spatial learning in an enclosed eight-arm radial maze in rats with sodium arsanilate-induced labyrinthectomies. , 1993, Behavioral and neural biology.

[60]  R. Morris Spatial Localization Does Not Require the Presence of Local Cues , 1981 .

[61]  H. Eichenbaum,et al.  Memory, amnesia, and the hippocampal system , 1993 .

[62]  M. Woollacott,et al.  Attentional demands and postural recovery: the effects of aging. , 1999, The journals of gerontology. Series A, Biological sciences and medical sciences.

[63]  W E Skaggs,et al.  Deciphering the hippocampal polyglot: the hippocampus as a path integration system. , 1996, The Journal of experimental biology.

[64]  N Teasdale,et al.  On the cognitive penetrability of posture control. , 1993, Experimental aging research.

[65]  K. Kirasic,et al.  Spatial cognition and behavior in young and elderly adults: implications for learning new environments. , 1991, Psychology and aging.

[66]  P. Graf,et al.  Episodic spatial memory in adulthood. , 1993, Psychology and aging.

[67]  R. Passingham The hippocampus as a cognitive map J. O'Keefe & L. Nadel, Oxford University Press, Oxford (1978). 570 pp., £25.00 , 1979, Neuroscience.

[68]  John H. Bailey,et al.  Virtual spaces and real world places: transfer of route knowledge , 1996, Int. J. Hum. Comput. Stud..

[69]  Arne D. Ekstrom,et al.  Cellular networks underlying human spatial navigation , 2003, Nature.

[70]  F. Craik,et al.  The handbook of aging and cognition , 1992 .

[71]  M. Woollacott,et al.  The interacting effects of cognitive demand and recovery of postural stability in balance-impaired elderly persons. , 2001, The journals of gerontology. Series A, Biological sciences and medical sciences.