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enNeuroanatomy of the subadult and fetal brain of the Atlantic white-sided dolphin (<i>Lagenorhynchus acutus</i>) from in situ magnetic resonance images
http://csi.whoi.edu/biblio/neuroanatomy-subadult-and-fetal-brain-atlantic-white-sided-dolphin-lagenorhynchus-acutus-si-0
<a href="http://csi.whoi.edu/biblio/neuroanatomy-subadult-and-fetal-brain-atlantic-white-sided-dolphin-lagenorhynchus-acutus-si-0" class="sharethis-link" title="Neuroanatomy of the subadult and fetal brain of the Atlantic white-sided dolphin (Lagenorhynchus acutus) from in situ magnetic resonance images" rel="nofollow">ShareThis</a>[1620] <span class="biblio-authors"><a href="/biblio/author/48">Montie, E. W.</a>, <a href="/biblio/author/346">G. E. Schneider</a>, <a href="/biblio/author/4">D. R. Ketten</a>, <a href="/biblio/author/50">L. Marino</a>, <a href="/biblio/author/12">K. E. Touhey</a>, and <a href="/biblio/author/347">M. E. Hahn</a>, </span>
<span class="biblio-title">"<a href="/biblio/neuroanatomy-subadult-and-fetal-brain-atlantic-white-sided-dolphin-lagenorhynchus-acutus-si-0">Neuroanatomy of the subadult and fetal brain of the Atlantic white-sided dolphin (<i>Lagenorhynchus acutus</i>) from in situ magnetic resonance images</a>", </span>
<i>The Anatomical Record</i>, vol. 290, issue 12: The Anatomical Record, pp. 1459-1479, 01/2008.
<span class="Z3988" title="ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.atitle=Neuroanatomy+of+the+subadult+and+fetal+brain+of+the+Atlantic+white-sided+dolphin+%28%26lt%3Bi%26gt%3BLagenorhynchus+acutus%26lt%3B%2Fi%26gt%3B%29+from+in+situ+magnetic+resonance+images&rft.title=The+Anatomical+Record&rft.date=2008&rft.volume=290&rft.issue=12&rft.spage=1459&rft.epage=1479&rft.aulast=Montie&rft.aufirst=Eric&rft.pub=The+Anatomical+Record&rft_id=info%3Adoi%2F10.1002%2Far.20612"></span><div class="field field-pdf">
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acutusAtlanticatlantic white sided dolphinAtlantic white-sided dolphinBiologydolphinfetal brainlagenorhynchusLagenorhynchus acutusmagnetic resonance imagesmagnetic resonance imagingMRIneuroanatomyOceanic dolphinsSagmatiasToothed whalesWaterwhite sided dolphinZoologyMon, 20 Aug 2012 16:55:36 +0000csiadmin1620 at http://csi.whoi.eduThe auditory anatomy of the Minke Whale (<em>Balaenoptera acutorostrata</em>): Insights into potential sound reception pathways in a baleen whale
http://csi.whoi.edu/biblio/auditory-anatomy-minke-whale-balaenoptera-acutorostrata-insights-potential-sound-reception-pa
<a href="http://csi.whoi.edu/biblio/auditory-anatomy-minke-whale-balaenoptera-acutorostrata-insights-potential-sound-reception-pa" class="sharethis-link" title="The auditory anatomy of the Minke Whale (Balaenoptera acutorostrata): Insights into potential sound reception pathways in a baleen whale" rel="nofollow">ShareThis</a>[1431] <span class="biblio-authors"><a href="/biblio/author/6">Yamato, M.</a>, <a href="/biblio/author/4">D. R. Ketten</a>, <a href="/biblio/author/9">J. J. Arruda</a>, <a href="/biblio/author/8">S. R. Cramer</a>, and <a href="/biblio/author/311">K. Moore</a>, </span>
<span class="biblio-title">"<a href="/biblio/auditory-anatomy-minke-whale-balaenoptera-acutorostrata-insights-potential-sound-reception-pa">The auditory anatomy of the Minke Whale (Balaenoptera acutorostrata): Insights into potential sound reception pathways in a baleen whale</a>", </span>
<i>19th Biennial Conference on the Biology of Marine Mammals</i>, vol. Abstracts, Tampa, FL, Society for Marine Mammology, pp. 319, 11/2011.
<span class="Z3988" title="ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rft.title=The+auditory+anatomy+of+the+Minke+Whale+%28%26lt%3Bem%26gt%3BBalaenoptera+acutorostrata%26lt%3B%2Fem%26gt%3B%29%3A+Insights+into+potential+sound+reception+pathways+in+a+baleen+whale&rft.date=2011&rft.volume=Abstracts&rft.spage=319&rft.aulast=Yamato&rft.aufirst=Maya&rft.pub=Society+for+Marine+Mammology&rft.place=Tampa%2C+FL"></span><div class="field field-pdf">
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Ken Norris first described a potential mandibular sound reception pathway in odontocetes in 1964. To date, sound reception paths in mysticetes remain unknown. To understand hearing mechanisms in baleen whales, a thorough examination of their auditory anatomy is required. This study combines classical dissection with biomed1cal imaging techniques such as X-ray, computerized tomography (CT), and magnetic resonance imaging (MRl) to describe the anatomy of the minke whale head with a focus on the ear region. Six individuals have been examined to date.
<p><a href="http://csi.whoi.edu/biblio/auditory-anatomy-minke-whale-balaenoptera-acutorostrata-insights-potential-sound-reception-pa" target="_blank">read more</a></p>anatomyauditoryauditory anatomyauditory systembalaenopterabalaenoptera acutorostrataBaleenbaleen whalebaleen whale hearingBaleen whalesBiologybiomed1cal imaging techniquesbodycetaceansCommon Minke Whalecomplexcomputerized tomographyearEardrumfat bodyFauna of Irelandfunctional analysesincoming soundJournal of MammalogyKen Norrismagnetic resonance imagingmandibular ramusmarine mammal hearingMegafaunaminkeminke whaleminke whale headodontocetesreceptionsoundsound receptionsound reception pathwaystraleytissuetomographyToothed whaletympanic bonetympanic cavitytympanic membranetympanowhalewhale headx-rayZoologyThu, 22 Dec 2011 18:18:47 +0000csiadmin1431 at http://csi.whoi.eduNeuroanatomy of the subadult and fetal brain of the Atlantic White-sided Dolphin (<i>Lagenorhynchus acutus</i>) from in-situ Magnetic Resonance Imaging
http://csi.whoi.edu/biblio/neuroanatomy-subadult-and-fetal-brain-atlantic-white-sided-dolphin-lagenorhynchus-acutus-situ
<a href="http://csi.whoi.edu/biblio/neuroanatomy-subadult-and-fetal-brain-atlantic-white-sided-dolphin-lagenorhynchus-acutus-situ" class="sharethis-link" title="Neuroanatomy of the subadult and fetal brain of the Atlantic White-sided Dolphin (Lagenorhynchus acutus) from in-situ Magnetic Resonance Imaging" rel="nofollow">ShareThis</a>[766] <span class="biblio-authors"><a href="/biblio/author/48">Montie, E. W.</a>, <a href="/biblio/author/49">G. Schneider</a>, <a href="/biblio/author/4">D. R. Ketten</a>, <a href="/biblio/author/50">L. Marino</a>, <a href="/biblio/author/12">K. E. Touhey</a>, and <a href="/biblio/author/51">M. Hahn</a>, </span>
<span class="biblio-title">"<a href="/biblio/neuroanatomy-subadult-and-fetal-brain-atlantic-white-sided-dolphin-lagenorhynchus-acutus-situ">Neuroanatomy of the subadult and fetal brain of the Atlantic White-sided Dolphin (<i>Lagenorhynchus acutus</i>) from in-situ Magnetic Resonance Imaging</a>", </span>
<i>The Anatomical Record</i>, vol. 290, issue 12: Wiley InterScience, pp. 1459-1479, 10/2007.
<span class="Z3988" title="ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.atitle=Neuroanatomy+of+the+subadult+and+fetal+brain+of+the+Atlantic+White-sided+Dolphin+%28%26lt%3Bi%26gt%3BLagenorhynchus+acutus%26lt%3B%2Fi%26gt%3B%29+from+in-situ+Magnetic+Resonance+Imaging&rft.title=The+Anatomical+Record&rft.date=2007&rft.volume=290&rft.issue=12&rft.spage=1459&rft.epage=1479&rft.aulast=Montie&rft.aufirst=Eric&rft.pub=Wiley+InterScience&rft_id=info%3Adoi%2F10.1002%2Far.20612"></span><div class="field field-pdf">
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http://csi.whoi.edu/biblio/neuroanatomy-subadult-and-fetal-brain-atlantic-white-sided-dolphin-lagenorhynchus-acutus-situ#commentsAtlantic white-sided dolphinbrainfetalin-situLagenorhynchus acutusmagnetic resonance imagingMRIneuroanatomyTue, 16 Nov 2010 15:05:50 +0000766 at http://csi.whoi.eduThe role of temporal bone imaging in cochlear implants
http://csi.whoi.edu/biblio/role-temporal-bone-imaging-cochlear-implants
<a href="http://csi.whoi.edu/biblio/role-temporal-bone-imaging-cochlear-implants" class="sharethis-link" title="The role of temporal bone imaging in cochlear implants" rel="nofollow">ShareThis</a>[80] <span class="biblio-authors"><a href="/biblio/author/4">Ketten, D. R.</a>, </span>
<span class="biblio-title">"<a href="/biblio/role-temporal-bone-imaging-cochlear-implants">The role of temporal bone imaging in cochlear implants</a>", </span>
<i>Current Opinion in Otolaryngology & Head and Neck Surgery, Otology-Neurotology</i>, vol. 2, issue 5, pp. 401-408, 1994.
<span class="Z3988" title="ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.atitle=The+role+of+temporal+bone+imaging+in+cochlear+implants&rft.title=Current+Opinion+in+Otolaryngology+%26amp%3B+Head+and+Neck+Surgery%2C+Otology-Neurotology&rft.date=1994&rft.volume=2&rft.issue=5&rft.spage=401&rft.epage=408&rft.aulast=Ketten&rft.aufirst=Darlene"></span>anatomycochleacochlear implantscomputerized tomographyCT scanhumansinner earmagnetic resonance imagingmiddle earMRItemporal bonesMon, 22 Mar 2010 19:55:46 +000080 at http://csi.whoi.eduMarine mammal ears: an anatomical perspective on underwater hearing
http://csi.whoi.edu/biblio/marine-mammal-ears-anatomical-perspective-underwater-hearing
<a href="http://csi.whoi.edu/biblio/marine-mammal-ears-anatomical-perspective-underwater-hearing" class="sharethis-link" title="Marine mammal ears: an anatomical perspective on underwater hearing" rel="nofollow">ShareThis</a>[67] <span class="biblio-authors"><a href="/biblio/author/4">Ketten, D. R.</a>, </span>
<span class="biblio-title">"<a href="/biblio/marine-mammal-ears-anatomical-perspective-underwater-hearing">Marine mammal ears: an anatomical perspective on underwater hearing</a>", </span>
<i>International Congress on Acoustics</i>, vol. 3: Elsevier Publishing, pp. 1657-1660, 1998.
<span class="Z3988" title="ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.atitle=Marine+mammal+ears%3A+an+anatomical+perspective+on+underwater+hearing&rft.title=International+Congress+on+Acoustics&rft.series=Proceedings+of+the+International+Congress+on+Acoustics&rft.date=1998&rft.volume=3&rft.spage=1657&rft.epage=1660&rft.aulast=Ketten&rft.aufirst=Darlene&rft.pub=Elsevier+Publishing"></span><div class="field field-pdf">
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ABRAEPaudiometryauditory brainstem responseauditory evoked potentialscarnivoracochleacomputerized tomographyCT scandolphinsearsFEM modelingfissipediahearingmagnetic resonance imagingmammalmammalian earsmanateesMarinemarine mammalmarine mammal earsmarine mammalsmorphologyMRImysticetesodobenidsodontocetesotariidsperspectivephocidspinnipedssealssireniaMon, 22 Mar 2010 19:55:39 +000067 at http://csi.whoi.eduUsing Magnetic Resonance Imaging (MRI) to obtain shapes and sizes of Pinniped and Cetacean brain regions that depend on thyroid hormones for maturation
http://csi.whoi.edu/content/using-magnetic-resonance-imaging-mri-obtain-shapes-and-sizes-pinniped-and-cetacean-brain-reg
<a href="http://csi.whoi.edu/content/using-magnetic-resonance-imaging-mri-obtain-shapes-and-sizes-pinniped-and-cetacean-brain-reg" class="sharethis-link" title="Using Magnetic Resonance Imaging (MRI) to obtain shapes and sizes of Pinniped and Cetacean brain regions that depend on thyroid hormones for maturation" rel="nofollow">ShareThis</a>[53] <span class="biblio-authors"><a href="/biblio/author/48">Montie, E. W.</a>, <a href="/biblio/author/13">M. Moore</a>, <a href="/biblio/author/4">D. R. Ketten</a>, <a href="/biblio/author/9">J. J. Arruda</a>, <a href="/biblio/author/81">A. Bogomolni</a>, and <a href="/biblio/author/51">M. Hahn</a>, </span>
<span class="biblio-title">"<a href="/content/using-magnetic-resonance-imaging-mri-obtain-shapes-and-sizes-pinniped-and-cetacean-brain-reg">Using Magnetic Resonance Imaging (MRI) to obtain shapes and sizes of Pinniped and Cetacean brain regions that depend on thyroid hormones for maturation</a>", </span>
<i>EPA STAR Graduate Fellowship Conference</i>, 2004.
<span class="Z3988" title="ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rft.title=Using+Magnetic+Resonance+Imaging+%28MRI%29+to+obtain+shapes+and+sizes+of+Pinniped+and+Cetacean+brain+regions+that+depend+on+thyroid+hormones+for+maturation&rft.date=2004&rft.aulast=Montie&rft.aufirst=Eric"></span><div class="field field-pdf">
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brainbrain regionsCentre for Magnetic Resonance InvestigationscetaceancetaceanshormonesImagingmagnetic resonance imagingmarine mammalsmaturationmedical imagingMedical physicsMRIpinnipedpinnipedsradiologyresonanceshapes and sizesTechnology Internetthyroidthyroid hormonethyroid hormonesusing magnetic resonance imagingWhole-body nuclear scanningMon, 22 Mar 2010 19:55:32 +000053 at http://csi.whoi.eduAnatomy, three-dimensional reconstructions, and volume estimation of the brain of the Atlantic White-sided Dolphin (Lagenorhynchus acutus) from magnetic resonance images
http://csi.whoi.edu/content/anatomy-three-dimensional-reconstructions-and-volume-estimation-brain-atlantic-white-sided-d
<a href="http://csi.whoi.edu/content/anatomy-three-dimensional-reconstructions-and-volume-estimation-brain-atlantic-white-sided-d" class="sharethis-link" title="Anatomy, three-dimensional reconstructions, and volume estimation of the brain of the Atlantic White-sided Dolphin (Lagenorhynchus acutus) from magnetic resonance images" rel="nofollow">ShareThis</a>[52] <span class="biblio-authors"><a href="/biblio/author/48">Montie, E. W.</a>, <a href="/biblio/author/13">M. Moore</a>, <a href="/biblio/author/4">D. R. Ketten</a>, <a href="/biblio/author/9">J. J. Arruda</a>, <a href="/biblio/author/8">S. R. Cramer</a>, <a href="/biblio/author/99">I. Fischer</a>, <a href="/biblio/author/12">K. E. Touhey</a>, <a href="/biblio/author/100">K. Patchett</a>, <a href="/biblio/author/81">A. Bogomolni</a>, <a href="/biblio/author/101">B. Lentell</a>, et al., </span>
<span class="biblio-title">"<a href="/content/anatomy-three-dimensional-reconstructions-and-volume-estimation-brain-atlantic-white-sided-d">Anatomy, three-dimensional reconstructions, and volume estimation of the brain of the Atlantic White-sided Dolphin (Lagenorhynchus acutus) from magnetic resonance images</a>", </span>
<i>New England Stranding Conference</i>, 2004.
<span class="Z3988" title="ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rft.title=Anatomy%2C+three-dimensional+reconstructions%2C+and+volume+estimation+of+the+brain+of+the+Atlantic+White-sided+Dolphin+%28Lagenorhynchus+acutus%29+from+magnetic+resonance+images&rft.date=2004&rft.aulast=Montie&rft.aufirst=Eric"></span><p>Thyroid hormones (TH) play an integral role in neuro-development, particularly in the maturation of the corpus callosum, cerebellum, hippocampus, and inner ear. In rodents, it has been shown that persistent organic pollutants (POPs), particularly polychlorinated biphenyls (PCBs), interfere with TH signaling. These pollutants are widespread in the marine environment and biomagnify in marine mammals to very high levels. Brominated flame-retardants have also recently been shown to interfere with the TH system in experimental animals.</p>
<p><a href="http://csi.whoi.edu/content/anatomy-three-dimensional-reconstructions-and-volume-estimation-brain-atlantic-white-sided-d" target="_blank">read more</a></p>anatomyAtlanticatlantic white sided dolphinAtlantic white-sided dolphinbeluga whalebiomagnifybottlenose dolphinbrainbrain chemicalbrain hippocampusbrain sizebrain volumecentral nervous systemcerebellumcerebral cortexchemical datacommon dolphindolphinEnvironmentestimationFlame retardantsHarbour PorpoisehippocampusImaginginternal brainLagenorhynchus acutusmagnetic resonance imagesmagnetic resonance imagingmarine mammalsMRInecropsy procedureneuroanatomyNeurologyodontocetesPersistent organic pollutantsPolychlorinated biphenylresonancethyroidthyroid hormonethyroid hormone disrupting chemicalsthyroid hormonesvolumevolume estimationwhite sided dolphinMon, 22 Mar 2010 19:55:31 +000052 at http://csi.whoi.eduNeuroanatomy, brain volume estimates, and pathologies of Cetaceans and Pinnipeds from magnetic resonance images
http://csi.whoi.edu/biblio/neuroanatomy-brain-volume-estimates-and-pathologies-cetaceans-and-pinnipeds-magnetic-resonanc
<a href="http://csi.whoi.edu/biblio/neuroanatomy-brain-volume-estimates-and-pathologies-cetaceans-and-pinnipeds-magnetic-resonanc" class="sharethis-link" title="Neuroanatomy, brain volume estimates, and pathologies of Cetaceans and Pinnipeds from magnetic resonance images" rel="nofollow">ShareThis</a>[44] <span class="biblio-authors"><a href="/biblio/author/48">Montie, E. W.</a>, <a href="/biblio/author/4">D. R. Ketten</a>, <a href="/biblio/author/49">G. Schneider</a>, <a href="/biblio/author/13">M. Moore</a>, <a href="/biblio/author/12">K. E. Touhey</a>, <a href="/biblio/author/81">A. Bogomolni</a>, and <a href="/biblio/author/51">M. Hahn</a>, </span>
<span class="biblio-title">"<a href="/biblio/neuroanatomy-brain-volume-estimates-and-pathologies-cetaceans-and-pinnipeds-magnetic-resonanc">Neuroanatomy, brain volume estimates, and pathologies of Cetaceans and Pinnipeds from magnetic resonance images</a>", </span>
<i>16th Biennial Conference on the Biology of Marine Mammals</i>, San Diego, CA, 2005.
<span class="Z3988" title="ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rft.title=Neuroanatomy%2C+brain+volume+estimates%2C+and+pathologies+of+Cetaceans+and+Pinnipeds+from+magnetic+resonance+images&rft.date=2005&rft.aulast=Montie&rft.aufirst=Eric&rft.place=San+Diego%2C+CA"></span>anatomybrainbrain volumecetaceansmagnetic resonance imagesmagnetic resonance imagingmarine mammalsmedical imagingMedical testsNervous systemneuroanatomypathologiespathologypinnipedsradiologyresonancevolumevolume estimatesMon, 22 Mar 2010 19:55:27 +000044 at http://csi.whoi.edu