Skip to main content
Top
Published in: Brain Structure and Function 3/2016

01-04-2016 | Original Article

The hippocampus and exercise: histological correlates of MR-detected volume changes

Authors: Sarah V. Biedermann, Johannes Fuss, Jörg Steinle, Matthias K. Auer, Christof Dormann, Claudia Falfán-Melgoza, Gabriele Ende, Peter Gass, Wolfgang Weber-Fahr

Published in: Brain Structure and Function | Issue 3/2016

Login to get access

Abstract

Growing evidence indicates that physical exercise increases hippocampal volume. This has consistently been shown in mice and men using magnetic resonance imaging. On the other hand, histological studies have reported profound alterations on a cellular level including increased adult hippocampal neurogenesis after exercise. A combined investigation of both phenomena has not been documented so far although a causal role of adult neurogenesis for increased hippocampal volume has been suggested before. We investigated 20 voluntary wheel running and 20 sedentary mice after a period of 2 month voluntary wheel running. Half of each group received focalized hippocampal irradiation to inhibit neurogenesis prior to wheel running. Structural MRI and histological investigations concerning newborn neurons (DCX), glial cells (GFAP), microglia, proliferating and pyknotic cells, neuronal activation, as well as blood vessel density and arborisation were performed. In a regression model, neurogenesis was the marker best explaining hippocampal gray matter volume. Individual analyses showed a positive correlation of gray matter volume with DCX-positive newborn neurons in the subgroups, too. GFAP-positive cells significantly interacted with gray matter volume with a positive correlation in sham-irradiated mice and no correlation in irradiated mice. Although neurogenesis appears to be an important marker of higher hippocampal gray matter volume, a monocausal relationship was not indicated, requesting further investigations.
Literature
go back to reference Amrein I, Isler K, Lipp HP (2011) Comparing adult hippocampal neurogenesis in mammalian species and orders: influence of chronological age and life history stage. Eur J Neurosci 34(6):978–987CrossRefPubMed Amrein I, Isler K, Lipp HP (2011) Comparing adult hippocampal neurogenesis in mammalian species and orders: influence of chronological age and life history stage. Eur J Neurosci 34(6):978–987CrossRefPubMed
go back to reference Asami T, Bouix S, Whitford TJ, Shenton ME, Salisbury DF, McCarley RW (2012) Longitudinal loss of gray matter volume in patients with first-episode schizophrenia: DARTEL automated analysis and ROI validation. Neuroimage 59(2):986–996CrossRefPubMedPubMedCentral Asami T, Bouix S, Whitford TJ, Shenton ME, Salisbury DF, McCarley RW (2012) Longitudinal loss of gray matter volume in patients with first-episode schizophrenia: DARTEL automated analysis and ROI validation. Neuroimage 59(2):986–996CrossRefPubMedPubMedCentral
go back to reference Ben Abdallah NM, Slomianka L, Vyssotski AL, Lipp HP (2010) Early age-related changes in adult hippocampal neurogenesis in C57 mice. Neurobiol Aging 31(1):151–161CrossRefPubMed Ben Abdallah NM, Slomianka L, Vyssotski AL, Lipp HP (2010) Early age-related changes in adult hippocampal neurogenesis in C57 mice. Neurobiol Aging 31(1):151–161CrossRefPubMed
go back to reference Biedermann S, Fuss J, Zheng L, Sartorius A, Falfan-Melgoza C, Demirakca T, Gass P, Ende G, Weber-Fahr W (2012) In vivo voxel based morphometry: detection of increased hippocampal volume and decreased glutamate levels in exercising mice. Neuroimage 61(4):1206–1212CrossRefPubMed Biedermann S, Fuss J, Zheng L, Sartorius A, Falfan-Melgoza C, Demirakca T, Gass P, Ende G, Weber-Fahr W (2012) In vivo voxel based morphometry: detection of increased hippocampal volume and decreased glutamate levels in exercising mice. Neuroimage 61(4):1206–1212CrossRefPubMed
go back to reference Bottiger BW, Teschendorf P, Krumnikl JJ, Vogel P, Galmbacher R, Schmitz B, Motsch J, Martin E, Gass P (1999) Global cerebral ischemia due to cardiocirculatory arrest in mice causes neuronal degeneration and early induction of transcription factor genes in the hippocampus. Brain Res Mol Brain Res 65(2):135–142CrossRefPubMed Bottiger BW, Teschendorf P, Krumnikl JJ, Vogel P, Galmbacher R, Schmitz B, Motsch J, Martin E, Gass P (1999) Global cerebral ischemia due to cardiocirculatory arrest in mice causes neuronal degeneration and early induction of transcription factor genes in the hippocampus. Brain Res Mol Brain Res 65(2):135–142CrossRefPubMed
go back to reference Chiang CS, McBride WH, Withers HR (1993) Radiation-induced astrocytic and microglial responses in mouse brain. Radiother Oncol 29(1):60–68CrossRefPubMed Chiang CS, McBride WH, Withers HR (1993) Radiation-induced astrocytic and microglial responses in mouse brain. Radiother Oncol 29(1):60–68CrossRefPubMed
go back to reference Clark PJ, Brzezinska WJ, Puchalski EK, Krone DA, Rhodes JS (2009) Functional analysis of neurovascular adaptations to exercise in the dentate gyrus of young adult mice associated with cognitive gain. Hippocampus 19(10):937–950CrossRefPubMedPubMedCentral Clark PJ, Brzezinska WJ, Puchalski EK, Krone DA, Rhodes JS (2009) Functional analysis of neurovascular adaptations to exercise in the dentate gyrus of young adult mice associated with cognitive gain. Hippocampus 19(10):937–950CrossRefPubMedPubMedCentral
go back to reference Cleppien D, Lei Zheng L, Falfan-Melgoza C, Vollmayr B, Ende G, Weber-Fahr W, Sartorius A (2013) Do Regional Cerebral Blood Volume (rCBV) Effects Partially Explain Short-Termed Changes of Voxel-Based Morphometry (VBM)? Proc Intl Soc Mag Reson Med 21 Cleppien D, Lei Zheng L, Falfan-Melgoza C, Vollmayr B, Ende G, Weber-Fahr W, Sartorius A (2013) Do Regional Cerebral Blood Volume (rCBV) Effects Partially Explain Short-Termed Changes of Voxel-Based Morphometry (VBM)? Proc Intl Soc Mag Reson Med 21
go back to reference Demirakca T, Brusniak W, Tunc-Skarka N, Wolf I, Meier S, Matthaus F, Ende G, Schulze TG, Diener C (2014) Does body shaping influence brain shape? Habitual physical activity is linked to brain morphology independent of age. World J Biol Psychiatry 15(5):387–396CrossRefPubMed Demirakca T, Brusniak W, Tunc-Skarka N, Wolf I, Meier S, Matthaus F, Ende G, Schulze TG, Diener C (2014) Does body shaping influence brain shape? Habitual physical activity is linked to brain morphology independent of age. World J Biol Psychiatry 15(5):387–396CrossRefPubMed
go back to reference Dorr AE, Lerch JP, Spring S, Kabani N, Henkelman RM (2008) High resolution three-dimensional brain atlas using an average magnetic resonance image of 40 adult C57Bl/6J mice. Neuroimage 42:60–69CrossRefPubMed Dorr AE, Lerch JP, Spring S, Kabani N, Henkelman RM (2008) High resolution three-dimensional brain atlas using an average magnetic resonance image of 40 adult C57Bl/6J mice. Neuroimage 42:60–69CrossRefPubMed
go back to reference Erickson KI, Prakash RS, Voss MW, Chaddock L, Hu L, Morris KS, White SM, Wojcicki TR, McAuley E, Kramer AF (2009) Aerobic fitness is associated with hippocampal volume in elderly humans. Hippocampus 19(10):1030–1039CrossRefPubMedPubMedCentral Erickson KI, Prakash RS, Voss MW, Chaddock L, Hu L, Morris KS, White SM, Wojcicki TR, McAuley E, Kramer AF (2009) Aerobic fitness is associated with hippocampal volume in elderly humans. Hippocampus 19(10):1030–1039CrossRefPubMedPubMedCentral
go back to reference Erickson KI, Voss MW, Prakash RS, Basak C, Szabo A, Chaddock L, Kim JS, Heo S, Alves H, White SM, Wojcicki TR, Mailey E, Vieira VJ, Martin SA, Pence BD, Woods JA, McAuley E, Kramer AF (2011) Exercise training increases size of hippocampus and improves memory. Proc Natl Acad Sci USA 108(7):3017–3022CrossRefPubMedPubMedCentral Erickson KI, Voss MW, Prakash RS, Basak C, Szabo A, Chaddock L, Kim JS, Heo S, Alves H, White SM, Wojcicki TR, Mailey E, Vieira VJ, Martin SA, Pence BD, Woods JA, McAuley E, Kramer AF (2011) Exercise training increases size of hippocampus and improves memory. Proc Natl Acad Sci USA 108(7):3017–3022CrossRefPubMedPubMedCentral
go back to reference Franklin TR, Wang Z, Shin J, Jagannathan K, Suh JJ, Detre JA, O’Brien CP, Childress AR (2013) A VBM study demonstrating ‘apparent’ effects of a single dose of medication on T1-weighted MRIs. Brain Struct Funct 218(1):97–104CrossRefPubMedPubMedCentral Franklin TR, Wang Z, Shin J, Jagannathan K, Suh JJ, Detre JA, O’Brien CP, Childress AR (2013) A VBM study demonstrating ‘apparent’ effects of a single dose of medication on T1-weighted MRIs. Brain Struct Funct 218(1):97–104CrossRefPubMedPubMedCentral
go back to reference Fuss J, Ben Abdallah NM, Hensley FW, Weber KJ, Hellweg R, Gass P (2010) Deletion of running-induced hippocampal neurogenesis by irradiation prevents development of an anxious phenotype in mice. PLoS One 5(9):0012769CrossRef Fuss J, Ben Abdallah NM, Hensley FW, Weber KJ, Hellweg R, Gass P (2010) Deletion of running-induced hippocampal neurogenesis by irradiation prevents development of an anxious phenotype in mice. PLoS One 5(9):0012769CrossRef
go back to reference Fuss J, Vogt MA, Weber KJ, Burke TF, Gass P, Hensler JG (2013) Hippocampal serotonin-1A receptor function in a mouse model of anxiety induced by long term voluntary wheel running. Synapse 67(10):648–655CrossRefPubMed Fuss J, Vogt MA, Weber KJ, Burke TF, Gass P, Hensler JG (2013) Hippocampal serotonin-1A receptor function in a mouse model of anxiety induced by long term voluntary wheel running. Synapse 67(10):648–655CrossRefPubMed
go back to reference Fuss J, Biedermann SV, Falfan-Melgoza C, Auer MK, Zheng L, Steinle J, Horner F, Sartorius A, Ende G, Weber-Fahr W, Gass P (2014) Exercise boosts hippocampal volume by preventing early age-related gray matter loss. Hippocampus 24(2):131–134CrossRefPubMed Fuss J, Biedermann SV, Falfan-Melgoza C, Auer MK, Zheng L, Steinle J, Horner F, Sartorius A, Ende G, Weber-Fahr W, Gass P (2014) Exercise boosts hippocampal volume by preventing early age-related gray matter loss. Hippocampus 24(2):131–134CrossRefPubMed
go back to reference Giedd JN, Blumenthal J, Jeffries NO, Castellanos FX, Liu H, Zijdenbos A, Paus T, Evans AC, Rapoport JL (1999) Brain development during childhood and adolescence: a longitudinal MRI study. Nat Neurosci 2(10):861–863CrossRefPubMed Giedd JN, Blumenthal J, Jeffries NO, Castellanos FX, Liu H, Zijdenbos A, Paus T, Evans AC, Rapoport JL (1999) Brain development during childhood and adolescence: a longitudinal MRI study. Nat Neurosci 2(10):861–863CrossRefPubMed
go back to reference Ho NF, Hooker JM, Sahay A, Holt DJ, Roffman JL (2013) In vivo imaging of adult human hippocampal neurogenesis: progress, pitfalls and promise. Mol Psychiatry 18(4):404–416CrossRefPubMedPubMedCentral Ho NF, Hooker JM, Sahay A, Holt DJ, Roffman JL (2013) In vivo imaging of adult human hippocampal neurogenesis: progress, pitfalls and promise. Mol Psychiatry 18(4):404–416CrossRefPubMedPubMedCentral
go back to reference Hong JH, Chiang CS, Campbell IL, Sun JR, Withers HR, McBride WH (1995) Induction of acute phase gene expression by brain irradiation. Int J Radiat Oncol Biol Phys 33(3):619–626CrossRefPubMed Hong JH, Chiang CS, Campbell IL, Sun JR, Withers HR, McBride WH (1995) Induction of acute phase gene expression by brain irradiation. Int J Radiat Oncol Biol Phys 33(3):619–626CrossRefPubMed
go back to reference Killgore WD, Olson EA, Weber M (2013) Physical exercise habits correlate with gray matter volume of the hippocampus in healthy adult humans. Sci Rep 3:3457CrossRefPubMedPubMedCentral Killgore WD, Olson EA, Weber M (2013) Physical exercise habits correlate with gray matter volume of the hippocampus in healthy adult humans. Sci Rep 3:3457CrossRefPubMedPubMedCentral
go back to reference Klauschen F, Goldman A, Barra V, Meyer-Lindenberg A, Lundervold A (2009) Evaluation of automated brain MR image segmentation and volumetry methods. Hum Brain Mapp 30(4):1310–1327CrossRefPubMed Klauschen F, Goldman A, Barra V, Meyer-Lindenberg A, Lundervold A (2009) Evaluation of automated brain MR image segmentation and volumetry methods. Hum Brain Mapp 30(4):1310–1327CrossRefPubMed
go back to reference Knoth R, Singec I, Ditter M, Pantazis G, Capetian P, Meyer RP, Horvat V, Volk B, Kempermann G (2010) Murine features of neurogenesis in the human hippocampus across the lifespan from 0 to 100 years. PLoS One 5(1):e8809CrossRefPubMedPubMedCentral Knoth R, Singec I, Ditter M, Pantazis G, Capetian P, Meyer RP, Horvat V, Volk B, Kempermann G (2010) Murine features of neurogenesis in the human hippocampus across the lifespan from 0 to 100 years. PLoS One 5(1):e8809CrossRefPubMedPubMedCentral
go back to reference Luders E, Steinmetz H, Jancke L (2002) Brain size and grey matter volume in the healthy human brain. Neuro Report 13(17):2371–2374 Luders E, Steinmetz H, Jancke L (2002) Brain size and grey matter volume in the healthy human brain. Neuro Report 13(17):2371–2374
go back to reference Manganas LN, Zhang X, Li Y, Hazel RD, Smith SD, Wagshul ME, Henn F, Benveniste H, Djuric PM, Enikolopov G, Maletic-Savatic M (2007) Magnetic resonance spectroscopy identifies neural progenitor cells in the live human brain. Science 318(5852):980–985CrossRefPubMedPubMedCentral Manganas LN, Zhang X, Li Y, Hazel RD, Smith SD, Wagshul ME, Henn F, Benveniste H, Djuric PM, Enikolopov G, Maletic-Savatic M (2007) Magnetic resonance spectroscopy identifies neural progenitor cells in the live human brain. Science 318(5852):980–985CrossRefPubMedPubMedCentral
go back to reference Pajonk FG, Wobrock T, Gruber O, Scherk H, Berner D, Kaizl I, Kierer A, Muller S, Oest M, Meyer T, Backens M, Schneider-Axmann T, Thornton AE, Honer WG, Falkai P (2010) Hippocampal plasticity in response to exercise in schizophrenia. Arch Gen Psychiatry 67(2):133–143CrossRefPubMed Pajonk FG, Wobrock T, Gruber O, Scherk H, Berner D, Kaizl I, Kierer A, Muller S, Oest M, Meyer T, Backens M, Schneider-Axmann T, Thornton AE, Honer WG, Falkai P (2010) Hippocampal plasticity in response to exercise in schizophrenia. Arch Gen Psychiatry 67(2):133–143CrossRefPubMed
go back to reference Pereira AC, Huddleston DE, Brickman AM, Sosunov AA, Hen R, McKhann GM, Sloan R, Gage FH, Brown TR, Small SA (2007) An in vivo correlate of exercise-induced neurogenesis in the adult dentate gyrus. Proc Natl Acad Sci USA 104(13):5638–5643CrossRefPubMedPubMedCentral Pereira AC, Huddleston DE, Brickman AM, Sosunov AA, Hen R, McKhann GM, Sloan R, Gage FH, Brown TR, Small SA (2007) An in vivo correlate of exercise-induced neurogenesis in the adult dentate gyrus. Proc Natl Acad Sci USA 104(13):5638–5643CrossRefPubMedPubMedCentral
go back to reference Ramm P, Couillard-Despres S, Plotz S, Rivera FJ, Krampert M, Lehner B, Kremer W, Bogdahn U, Kalbitzer HR, Aigner L (2009) A nuclear magnetic resonance biomarker for neural progenitor cells: is it all neurogenesis? Stem Cells 27(2):420–423CrossRefPubMed Ramm P, Couillard-Despres S, Plotz S, Rivera FJ, Krampert M, Lehner B, Kremer W, Bogdahn U, Kalbitzer HR, Aigner L (2009) A nuclear magnetic resonance biomarker for neural progenitor cells: is it all neurogenesis? Stem Cells 27(2):420–423CrossRefPubMed
go back to reference Reif A, Fritzen S, Finger M, Strobel A, Lauer M, Schmitt A, Lesch KP (2006) Neural stem cell proliferation is decreased in schizophrenia, but not in depression. Mol Psychiatry 11(5):514–522CrossRefPubMed Reif A, Fritzen S, Finger M, Strobel A, Lauer M, Schmitt A, Lesch KP (2006) Neural stem cell proliferation is decreased in schizophrenia, but not in depression. Mol Psychiatry 11(5):514–522CrossRefPubMed
go back to reference Schlaffke L, Lissek S, Lenz M, Brune M, Juckel G, Hinrichs T, Platen P, Tegenthoff M, Schmidt-Wilcke T (2014) Sports and brain morphology - a voxel-based morphometry study with endurance athletes and martial artists. Neuroscience 259:35–42CrossRefPubMed Schlaffke L, Lissek S, Lenz M, Brune M, Juckel G, Hinrichs T, Platen P, Tegenthoff M, Schmidt-Wilcke T (2014) Sports and brain morphology - a voxel-based morphometry study with endurance athletes and martial artists. Neuroscience 259:35–42CrossRefPubMed
go back to reference Smith SM, Jenkinson M, Woolrich MW, Beckmann CF, Behrens TE, Johansen-Berg H, Bannister PR, De Luca M, Drobnjak I, Flitney DE, Niazy RK, Saunders J, Vickers J, Zhang Y, De Stefano N, Brady JM, Matthews PM (2004) Advances in functional and structural MR image analysis and implementation as FSL. Neuroimage 23(Suppl 1):S208–S219CrossRefPubMed Smith SM, Jenkinson M, Woolrich MW, Beckmann CF, Behrens TE, Johansen-Berg H, Bannister PR, De Luca M, Drobnjak I, Flitney DE, Niazy RK, Saunders J, Vickers J, Zhang Y, De Stefano N, Brady JM, Matthews PM (2004) Advances in functional and structural MR image analysis and implementation as FSL. Neuroimage 23(Suppl 1):S208–S219CrossRefPubMed
go back to reference Spalding KL, Bergmann O, Alkass K, Bernard S, Salehpour M, Huttner HB, Bostrom E, Westerlund I, Vial C, Buchholz BA, Possnert G, Mash DC, Druid H, Frisen J (2013) Dynamics of hippocampal neurogenesis in adult humans. Cell, 2013/06/12 edn, pp 1219–1227 Spalding KL, Bergmann O, Alkass K, Bernard S, Salehpour M, Huttner HB, Bostrom E, Westerlund I, Vial C, Buchholz BA, Possnert G, Mash DC, Druid H, Frisen J (2013) Dynamics of hippocampal neurogenesis in adult humans. Cell, 2013/06/12 edn, pp 1219–1227
go back to reference Strekalova T, Zorner B, Zacher C, Sadovska G, Herdegen T, Gass P (2003) Memory retrieval after contextual fear conditioning induces c-Fos and JunB expression in CA1 hippocampus. Genes Brain Behav 2(1):3–10CrossRefPubMed Strekalova T, Zorner B, Zacher C, Sadovska G, Herdegen T, Gass P (2003) Memory retrieval after contextual fear conditioning induces c-Fos and JunB expression in CA1 hippocampus. Genes Brain Behav 2(1):3–10CrossRefPubMed
go back to reference Toni N, Laplagne DA, Zhao C, Lombardi G, Ribak CE, Gage FH, Schinder AF (2008) Neurons born in the adult dentate gyrus form functional synapses with target cells. Nat Neurosci 11(8):901–907CrossRefPubMedPubMedCentral Toni N, Laplagne DA, Zhao C, Lombardi G, Ribak CE, Gage FH, Schinder AF (2008) Neurons born in the adult dentate gyrus form functional synapses with target cells. Nat Neurosci 11(8):901–907CrossRefPubMedPubMedCentral
go back to reference van Praag H, Kempermann G, Gage FH (1999) Running increases cell proliferation and neurogenesis in the adult mouse dentate gyrus. Nat Neurosci 2(3):266–270CrossRefPubMed van Praag H, Kempermann G, Gage FH (1999) Running increases cell proliferation and neurogenesis in the adult mouse dentate gyrus. Nat Neurosci 2(3):266–270CrossRefPubMed
go back to reference von Bohlen, Halbach O (2011) Immunohistological markers for proliferative events, gliogenesis, and neurogenesis within the adult hippocampus. Cell Tissue Res 345(1):1–19CrossRef von Bohlen, Halbach O (2011) Immunohistological markers for proliferative events, gliogenesis, and neurogenesis within the adult hippocampus. Cell Tissue Res 345(1):1–19CrossRef
go back to reference Voss MW, Vivar C, Kramer AF, van Praag H (2013) Bridging animal and human models of exercise-induced brain plasticity. Trends Cogn Sci 17(10):525–544CrossRefPubMedPubMedCentral Voss MW, Vivar C, Kramer AF, van Praag H (2013) Bridging animal and human models of exercise-induced brain plasticity. Trends Cogn Sci 17(10):525–544CrossRefPubMedPubMedCentral
go back to reference Zhang L, Cooper-Kuhn CM, Nannmark U, Blomgren K, Kuhn HG (2010) Stimulatory effects of thyroid hormone on brain angiogenesis in vivo and in vitro. J Cereb Blood Flow Metab 30(2):323–335CrossRefPubMedPubMedCentral Zhang L, Cooper-Kuhn CM, Nannmark U, Blomgren K, Kuhn HG (2010) Stimulatory effects of thyroid hormone on brain angiogenesis in vivo and in vitro. J Cereb Blood Flow Metab 30(2):323–335CrossRefPubMedPubMedCentral
Metadata
Title
The hippocampus and exercise: histological correlates of MR-detected volume changes
Authors
Sarah V. Biedermann
Johannes Fuss
Jörg Steinle
Matthias K. Auer
Christof Dormann
Claudia Falfán-Melgoza
Gabriele Ende
Peter Gass
Wolfgang Weber-Fahr
Publication date
01-04-2016
Publisher
Springer Berlin Heidelberg
Published in
Brain Structure and Function / Issue 3/2016
Print ISSN: 1863-2653
Electronic ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-014-0976-5

Other articles of this Issue 3/2016

Brain Structure and Function 3/2016 Go to the issue