{"id":825,"date":"2015-10-14T14:33:05","date_gmt":"2015-10-14T14:33:05","guid":{"rendered":"https:\/\/lab.research.sickkids.ca\/harrison\/?page_id=825"},"modified":"2016-12-20T15:13:26","modified_gmt":"2016-12-20T15:13:26","slug":"neuronal-activity-patterns-in-the-central-auditory-system","status":"publish","type":"page","link":"https:\/\/lab.research.sickkids.ca\/harrison\/neuronal-activity-patterns-in-the-central-auditory-system\/","title":{"rendered":"Single unit electrophysiology"},"content":{"rendered":"<div class=\"fusion-fullwidth fullwidth-box fusion-builder-row-1 hundred-percent-fullwidth non-hundred-percent-height-scrolling\" style=\"--awb-border-radius-top-left:0px;--awb-border-radius-top-right:0px;--awb-border-radius-bottom-right:0px;--awb-border-radius-bottom-left:0px;--awb-overflow:visible;--awb-flex-wrap:wrap;\" ><div class=\"fusion-builder-row fusion-row\"><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-0 fusion_builder_column_2_3 2_3 fusion-two-third fusion-column-first\" style=\"--awb-bg-size:cover;width:65.3333%; margin-right: 4%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-title title fusion-title-1 sep-underline sep-solid fusion-title-text fusion-title-size-three\" style=\"--awb-sep-color:#000000;\"><h3 class=\"fusion-title-heading title-heading-left\" style=\"margin:0;\"><p style=\"text-align: left\"><span style=\"color: #0046ad\"><strong>Determination of tonotopic maps in auditory cortex<\/strong><\/span><\/p><\/h3><\/div><div class=\"fusion-text fusion-text-1\"><h3 style=\"text-align: left\"><span style=\"color: #000000\">A systematic recording from neuron best frequency (characteristic frequency) across regions of auditory cortex reveals cortical frequency maps. We have investigated various aspects of such tonotopic maps in cat and chinchilla animal models.<\/span><\/h3>\n<p><span style=\"color: #000000\"><strong>HARRISON, R.V., NAGASAWA A., SMITH D.W, STANTON S. and MOUNT R.J. (1991): Reorganization of auditory cortex after neonatal high frequency cochlear hearing loss. Hearing Research, 54, 11 -19.<\/strong><\/span><\/p>\n<p><span style=\"color: #000000\"><strong>HARRISON, R.V., KAKIGI, A., HIRAKAWA, H., HAREL, N., and MOUNT, R.J.: (1996) Tonotopic mapping in chinchilla auditory cortex. Hearing Research 100, 157-163.<\/strong><\/span><\/p>\n<p><span style=\"color: #000000\"><strong>PIENKOWSKI M, HARRISON RV. (2005). Tone frequency maps and receptive fields in developing chinchilla auditory cortex. J Neurophysiol. 93: 454-466<\/strong><\/span><\/p>\n<\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-1 fusion_builder_column_1_3 1_3 fusion-one-third fusion-column-last\" style=\"--awb-bg-size:cover;width:30.6666%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-image-element fusion-image-align-center in-legacy-container\" style=\"text-align:center;--awb-liftup-border-radius:0px;--awb-caption-title-font-family:var(--h2_typography-font-family);--awb-caption-title-font-weight:var(--h2_typography-font-weight);--awb-caption-title-font-style:var(--h2_typography-font-style);--awb-caption-title-size:var(--h2_typography-font-size);--awb-caption-title-transform:var(--h2_typography-text-transform);--awb-caption-title-line-height:var(--h2_typography-line-height);--awb-caption-title-letter-spacing:var(--h2_typography-letter-spacing);\"><div class=\"imageframe-align-center\"><div class=\"awb-image-frame awb-image-frame-1 imageframe-liftup\"><span class=\" fusion-imageframe imageframe-dropshadow imageframe-1\" style=\"border:8px solid #ffffff;-webkit-box-shadow: 3px 3px 7px rgba(0,0,0,0.3);box-shadow: 3px 3px 7px rgba(0,0,0,0.3);\"><a href=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/Response-properties-of-cortical-neurons1-e1456759106401.jpg\" class=\"fusion-lightbox\" data-rel=\"iLightbox[df2aef8d6cac7ebf184]\" data-title=\"Response properties of cortical neurons1\" title=\"Response properties of cortical neurons1\"><img decoding=\"async\" width=\"400\" height=\"300\" alt=\"Response-properties-of-cortical-neurons to tone stimuli\" src=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/Response-properties-of-cortical-neurons1-e1456759106401.jpg\" class=\"img-responsive wp-image-1524\"\/><\/a><\/span><\/div><\/div><\/div><div class=\"fusion-sep-clear\"><\/div><div class=\"fusion-separator fusion-full-width-sep\" style=\"margin-left: auto;margin-right: auto;margin-top:5px;margin-bottom:5px;width:100%;\"><\/div><div class=\"fusion-sep-clear\"><\/div><div class=\"fusion-image-element fusion-image-align-center in-legacy-container\" style=\"text-align:center;--awb-liftup-border-radius:0px;--awb-caption-title-font-family:var(--h2_typography-font-family);--awb-caption-title-font-weight:var(--h2_typography-font-weight);--awb-caption-title-font-style:var(--h2_typography-font-style);--awb-caption-title-size:var(--h2_typography-font-size);--awb-caption-title-transform:var(--h2_typography-text-transform);--awb-caption-title-line-height:var(--h2_typography-line-height);--awb-caption-title-letter-spacing:var(--h2_typography-letter-spacing);\"><div class=\"imageframe-align-center\"><div class=\"awb-image-frame awb-image-frame-2 imageframe-liftup\"><span class=\" fusion-imageframe imageframe-dropshadow imageframe-2\" style=\"border:8px solid #ffffff;-webkit-box-shadow: 3px 3px 7px rgba(0,0,0,0.3);box-shadow: 3px 3px 7px rgba(0,0,0,0.3);\"><img decoding=\"async\" width=\"400\" height=\"300\" alt=\"Mapping tonotopic organization in the auditory cortex\" title=\"tonotopic organisation\" src=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/tonotopic-organisation-e1456759163125.jpg\" class=\"img-responsive wp-image-1525\"\/><\/span><\/div><\/div><\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-2 fusion_builder_column_1_3 1_3 fusion-one-third fusion-column-first\" style=\"--awb-bg-size:cover;width:30.6666%; margin-right: 4%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-image-element fusion-image-align-center in-legacy-container\" style=\"text-align:center;--awb-liftup-border-radius:0px;--awb-caption-title-font-family:var(--h2_typography-font-family);--awb-caption-title-font-weight:var(--h2_typography-font-weight);--awb-caption-title-font-style:var(--h2_typography-font-style);--awb-caption-title-size:var(--h2_typography-font-size);--awb-caption-title-transform:var(--h2_typography-text-transform);--awb-caption-title-line-height:var(--h2_typography-line-height);--awb-caption-title-letter-spacing:var(--h2_typography-letter-spacing);\"><div class=\"imageframe-align-center\"><div class=\"awb-image-frame awb-image-frame-3 imageframe-liftup\"><span class=\" fusion-imageframe imageframe-dropshadow imageframe-3\" style=\"border:8px solid #ffffff;-webkit-box-shadow: 3px 3px 7px rgba(0,0,0,0.3);box-shadow: 3px 3px 7px rgba(0,0,0,0.3);\"><a href=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/neuroimage-cover-e1456760372681.jpg\" class=\"fusion-lightbox\" data-rel=\"iLightbox[c9a9089a30d71410201]\" data-title=\"neuroimage cover\" title=\"neuroimage cover\"><img decoding=\"async\" width=\"263\" height=\"354\" alt=\"Cover of Neuroimage journal\" src=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/neuroimage-cover-e1456760372681.jpg\" class=\"img-responsive wp-image-879\"\/><\/a><\/span><\/div><\/div><\/div><div class=\"fusion-sep-clear\"><\/div><div class=\"fusion-separator fusion-full-width-sep\" style=\"margin-left: auto;margin-right: auto;margin-top:5px;margin-bottom:5px;width:100%;\"><\/div><div class=\"fusion-sep-clear\"><\/div><div class=\"fusion-image-element fusion-image-align-center in-legacy-container\" style=\"text-align:center;--awb-liftup-border-radius:0px;--awb-caption-title-font-family:var(--h2_typography-font-family);--awb-caption-title-font-weight:var(--h2_typography-font-weight);--awb-caption-title-font-style:var(--h2_typography-font-style);--awb-caption-title-size:var(--h2_typography-font-size);--awb-caption-title-transform:var(--h2_typography-text-transform);--awb-caption-title-line-height:var(--h2_typography-line-height);--awb-caption-title-letter-spacing:var(--h2_typography-letter-spacing);\"><div class=\"imageframe-align-center\"><div class=\"awb-image-frame awb-image-frame-4 imageframe-liftup\"><span class=\" fusion-imageframe imageframe-dropshadow imageframe-4\" style=\"border:8px solid #ffffff;-webkit-box-shadow: 3px 3px 7px rgba(0,0,0,0.3);box-shadow: 3px 3px 7px rgba(0,0,0,0.3);\"><a href=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/reponse-onset-latency-e1456759866915.jpg\" class=\"fusion-lightbox\" data-rel=\"iLightbox[93f9ffd526867a589ae]\" data-title=\"reponse onset latency\" title=\"reponse onset latency\"><img decoding=\"async\" width=\"400\" height=\"187\" alt=\"Latency onset of neuronal responses\" src=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/reponse-onset-latency-e1456759866915.jpg\" class=\"img-responsive wp-image-1520\"\/><\/a><\/span><\/div><\/div><\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-3 fusion_builder_column_2_3 2_3 fusion-two-third fusion-column-last\" style=\"--awb-bg-size:cover;width:65.3333%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-title title fusion-title-2 sep-underline sep-solid fusion-title-text fusion-title-size-three\" style=\"--awb-sep-color:#000000;\"><h3 class=\"fusion-title-heading title-heading-left\" style=\"margin:0;\"><p style=\"text-align: left\"><span style=\"color: #0046ad\"><strong>Cerebral blood flow changes and neural activity patterns<\/strong><\/span><\/p><\/h3><\/div><div class=\"fusion-text fusion-text-2\"><h3 style=\"text-align: left\"><span style=\"color: #000000\">We have explored the relationship between neural activity in the auditory cortex and changes in local blood flow caused by the metabolic demands of neurons. We have used optical imaging of intrinsic signals in animals with simultaneous single unit recordings. Optical imaging measures aspects of blood flow similar to the BOLD effect in fMRI methods.<\/span><\/h3>\n<p style=\"text-align: left\"><span style=\"color: #000000\"><strong>HARRISON, R.V., N. HAREL, H. HAMRAHI, J.PANESAR, N. MORI, and R. J. MOUNT (2000) Local Hemodynamic Changes Associated with Neural Activity in Auditory Cortex. Acta Otolaryngol 120:255-258<\/strong><\/span><\/p>\n<p style=\"text-align: left\"><span style=\"color: #000000\"><strong>HAREL N, MORI N, SAWADA S, MOUNT RJ, HARRISON, R.V. (2000): Three distinct auditory areas of cortex (AI, AII, AAF) defined by optical imaging of intrinsic signals. NeuroImage 11:302-312<\/strong><\/span><\/p>\n<p style=\"text-align: left\"><span style=\"color: #000000\"><strong>PANESAR J, HAMRAHI H, HAREL N, MORI N, MOUNT RJ, HARRISON, R.V. (2001) Arterial blood supply to auditory cortex of the chinchilla. Act Otolaryngol 121 839-843<\/strong><\/span><\/p>\n<p style=\"text-align: left\"><span style=\"color: #000000\"><strong>HARRISON, R.V., HAREL N, PANESAR J, MOUNT RJ (2002) Blood capillary distribution correlates with hemodynamic based functional imaging in cerebral cortex. Cerebral Cortex. 12, 225-233.<\/strong><\/span><\/p>\n<\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-4 fusion_builder_column_2_3 2_3 fusion-two-third fusion-column-first\" style=\"--awb-bg-size:cover;width:65.3333%; margin-right: 4%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-title title fusion-title-3 sep-underline sep-solid fusion-title-text fusion-title-size-three\" style=\"--awb-sep-color:#000000;\"><h3 class=\"fusion-title-heading title-heading-left\" style=\"margin:0;\"><p style=\"text-align: left\"><span style=\"color: #0046ad\"><strong>Frequency coding in the auditory midbrain<\/strong><\/span><\/p><\/h3><\/div><div class=\"fusion-text fusion-text-3\"><h3 style=\"text-align: left\"><span style=\"color: #000000\">In the central nucleus of the inferior colliculus (IC) of the midbrain a clear tonotopic frequency map can be assessed using single unit recordings of neuron characteristic frequency. In this example, note the map in the chinchilla model.<\/span><\/h3>\n<p><span style=\"color: #000000\"><strong>HARRISON, R.V., IBRAHIM D, MOUNT RJ. (1998): Plasticity of tonotopic maps in auditory midbrain following partial cochlear damage in the developing chinchilla. Exp Brain Res 123; 449-460.<\/strong><\/span><\/p>\n<p><span style=\"color: #000000\"><strong>D\u2019ALESSANDRO L, HARRISON RV. (2014) Excitatory<\/strong><strong> and inhibitory tonotopic bands in\u00a0chinchilla inferior colliculus revealed by c-fos immuno-labeling. Hear Res Oct; 316:122-8<\/strong><\/span><\/p>\n<\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-5 fusion_builder_column_1_3 1_3 fusion-one-third fusion-column-last\" style=\"--awb-bg-size:cover;width:30.6666%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-sep-clear\"><\/div><div class=\"fusion-separator fusion-full-width-sep\" style=\"margin-left: auto;margin-right: auto;margin-top:30px;margin-bottom:30px;width:100%;\"><\/div><div class=\"fusion-sep-clear\"><\/div><div class=\"fusion-image-element fusion-image-align-center in-legacy-container\" style=\"text-align:center;--awb-liftup-border-radius:0px;--awb-caption-title-font-family:var(--h2_typography-font-family);--awb-caption-title-font-weight:var(--h2_typography-font-weight);--awb-caption-title-font-style:var(--h2_typography-font-style);--awb-caption-title-size:var(--h2_typography-font-size);--awb-caption-title-transform:var(--h2_typography-text-transform);--awb-caption-title-line-height:var(--h2_typography-line-height);--awb-caption-title-letter-spacing:var(--h2_typography-letter-spacing);\"><div class=\"imageframe-align-center\"><div class=\"awb-image-frame awb-image-frame-5 imageframe-liftup\"><span class=\" fusion-imageframe imageframe-dropshadow imageframe-5\" style=\"border:8px solid #ffffff;-webkit-box-shadow: 3px 3px 7px rgba(0,0,0,0.3);box-shadow: 3px 3px 7px rgba(0,0,0,0.3);\"><a href=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/Frequency-map-in-chinchilla-midbrain.jpg\" class=\"fusion-lightbox\" data-rel=\"iLightbox[ea61927463b4df0f41b]\" data-title=\"Frequency map in chinchilla midbrain\" title=\"Frequency map in chinchilla midbrain\"><img decoding=\"async\" width=\"414\" height=\"391\" alt=\"Freqency map in the chinchilla auditory midbrain\" src=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/Frequency-map-in-chinchilla-midbrain.jpg\" class=\"img-responsive wp-image-1527\" srcset=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/Frequency-map-in-chinchilla-midbrain-52x50.jpg 52w, https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/Frequency-map-in-chinchilla-midbrain-300x283.jpg 300w, https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/Frequency-map-in-chinchilla-midbrain.jpg 414w\" sizes=\"(max-width: 414px) 100vw, 414px\" \/><\/a><\/span><\/div><\/div><\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-6 fusion_builder_column_1_3 1_3 fusion-one-third fusion-column-first\" style=\"--awb-bg-size:cover;width:30.6666%; margin-right: 4%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-image-element fusion-image-align-center in-legacy-container\" style=\"text-align:center;--awb-liftup-border-radius:0px;--awb-caption-title-font-family:var(--h2_typography-font-family);--awb-caption-title-font-weight:var(--h2_typography-font-weight);--awb-caption-title-font-style:var(--h2_typography-font-style);--awb-caption-title-size:var(--h2_typography-font-size);--awb-caption-title-transform:var(--h2_typography-text-transform);--awb-caption-title-line-height:var(--h2_typography-line-height);--awb-caption-title-letter-spacing:var(--h2_typography-letter-spacing);\"><div class=\"imageframe-align-center\"><div class=\"awb-image-frame awb-image-frame-6 imageframe-liftup\"><span class=\" fusion-imageframe imageframe-dropshadow imageframe-6\" style=\"border:8px solid #ffffff;-webkit-box-shadow: 3px 3px 7px rgba(0,0,0,0.3);box-shadow: 3px 3px 7px rgba(0,0,0,0.3);\"><a href=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/tonotopic-map-in-cat-auditory-cortex-300x225.jpg\" class=\"fusion-lightbox\" data-rel=\"iLightbox[98b6c0b3c88aaa98622]\" data-title=\"tonotopic map in cat auditory cortex\" title=\"tonotopic map in cat auditory cortex\"><img decoding=\"async\" width=\"300\" height=\"225\" alt=\"Tonotopic organisation in the cat auditory cotex\" src=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/tonotopic-map-in-cat-auditory-cortex-300x225.jpg\" class=\"img-responsive wp-image-885\" srcset=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/tonotopic-map-in-cat-auditory-cortex-300x225.jpg 300w, https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/tonotopic-map-in-cat-auditory-cortex.jpg 387w\" sizes=\"(max-width: 300px) 100vw, 300px\" \/><\/a><\/span><\/div><\/div><\/div><div class=\"fusion-sep-clear\"><\/div><div class=\"fusion-separator fusion-full-width-sep\" style=\"margin-left: auto;margin-right: auto;margin-top:5px;margin-bottom:5px;width:100%;\"><\/div><div class=\"fusion-sep-clear\"><\/div><div class=\"fusion-image-element fusion-image-align-center in-legacy-container\" style=\"text-align:center;--awb-liftup-border-radius:0px;--awb-caption-title-font-family:var(--h2_typography-font-family);--awb-caption-title-font-weight:var(--h2_typography-font-weight);--awb-caption-title-font-style:var(--h2_typography-font-style);--awb-caption-title-size:var(--h2_typography-font-size);--awb-caption-title-transform:var(--h2_typography-text-transform);--awb-caption-title-line-height:var(--h2_typography-line-height);--awb-caption-title-letter-spacing:var(--h2_typography-letter-spacing);\"><div class=\"imageframe-align-center\"><div class=\"awb-image-frame awb-image-frame-7 imageframe-liftup\"><span class=\" fusion-imageframe imageframe-dropshadow imageframe-7\" style=\"border:8px solid #ffffff;-webkit-box-shadow: 3px 3px 7px rgba(0,0,0,0.3);box-shadow: 3px 3px 7px rgba(0,0,0,0.3);\"><a href=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/cortical-frequency-map-e1456760795408.jpg\" class=\"fusion-lightbox\" data-rel=\"iLightbox[208b50254362c862b28]\" data-title=\"cortical frequency map\" title=\"cortical frequency map\"><img decoding=\"async\" width=\"300\" height=\"224\" alt=\"Cortical frequency map after cochlear lesion\" src=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/cortical-frequency-map-e1456760795408.jpg\" class=\"img-responsive wp-image-875\"\/><\/a><\/span><\/div><\/div><\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-7 fusion_builder_column_2_3 2_3 fusion-two-third fusion-column-last\" style=\"--awb-bg-size:cover;width:65.3333%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-title title fusion-title-4 sep-underline sep-solid fusion-title-text fusion-title-size-three\" style=\"--awb-sep-color:#000000;\"><h3 class=\"fusion-title-heading title-heading-left\" style=\"margin:0;\"><p style=\"text-align: left\"><span style=\"color: #0046ad\"><strong>Developmental plasticity of tonotopic maps in cortex<\/strong><\/span><\/p><\/h3><\/div><div class=\"fusion-text fusion-text-4\"><h3 style=\"text-align: left\"><span style=\"color: #000000\">We have studied the neuroplasticity of frequency maps in auditory cortex by mapping tonotopic regions of cortex with singe unit recordings. We have noted the changes to such maps in subjects resulting from neonatal changes to cochlear activity patterns.<\/span><\/h3>\n<p><span style=\"color: #000000\"><strong>HARRISON, R.V., NAGASAWA A., SMITH D.W, STANTON S. and MOUNT R.J. (1991): Reorganization of auditory cortex after neonatal high frequency cochlear hearing loss. Hearing Research, 54, 11 -19. <\/strong><\/span><\/p>\n<p><span style=\"color: #000000\"><strong>STANTON, S.G. and HARRISON, R.V. (1996): Abnormal cochleotopic organization in the auditory cortex of cats reared in a frequency augmented environment. Auditory Neuroscience 2, 97-107<\/strong><\/span><\/p>\n<p><span style=\"color: #000000\"><strong>KAKIGI A, HIRAKAWA H, HAREL N, MOUNT RJ, HARRISON, R.V. (2000): Tonotopic mapping in auditory cortex of the adult chinchilla with amikacin induced cochlear lesions. Audiology 39:153-160<\/strong><\/span><\/p>\n<p><span style=\"color: #000000\"><strong>STANTON SG, HARRISON, R.V. (2000) Projections from the medial geniculate body to primary auditory cortex in neonatally deafened cats. J Comp Neurol 426: 117-129<\/strong><\/span><\/p>\n<\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-8 fusion_builder_column_3_5 3_5 fusion-three-fifth fusion-column-first\" style=\"--awb-bg-size:cover;width:58.4%; margin-right: 4%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-title title fusion-title-5 sep-underline sep-solid fusion-title-text fusion-title-size-three\" style=\"--awb-sep-color:#000000;\"><h3 class=\"fusion-title-heading title-heading-left\" style=\"margin:0;\"><p style=\"text-align: left\"><span style=\"color: #0046ad\"><strong>Postnatal refinement of frequency coding in auditory cortex<\/strong><\/span><\/p><\/h3><\/div><div class=\"fusion-text fusion-text-5\"><h3 style=\"text-align: left\"><span style=\"color: #000000\">Using single unit electrophysiology we have determined how frequency coding in (chinchilla) cortex changes from birth to maturity.<\/span><\/h3>\n<p><span style=\"color: #000000\"><strong>PIENKOWSKI M, HARRISON RV. (2005) Tone responses in core versus belt auditory cortex in the developing chinchilla. J Comp Neurol. Nov 7;492(1):101-9.<\/strong><\/span><\/p>\n<p><strong><span style=\"color: #000000\">BROWN TA, HARRISON RV. (2010) Postnatal development of neuronal responses to frequency-modulated tones in chinchilla auditory cortex. Brain Res. 14;1309:29-39.<\/span> <\/strong><\/p>\n<\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><div class=\"fusion-layout-column fusion_builder_column fusion-builder-column-9 fusion_builder_column_2_5 2_5 fusion-two-fifth fusion-column-last\" style=\"--awb-bg-size:cover;width:37.6%;\"><div class=\"fusion-column-wrapper fusion-flex-column-wrapper-legacy\"><div class=\"fusion-image-element fusion-image-align-center in-legacy-container\" style=\"text-align:center;--awb-liftup-border-radius:0px;--awb-caption-title-font-family:var(--h2_typography-font-family);--awb-caption-title-font-weight:var(--h2_typography-font-weight);--awb-caption-title-font-style:var(--h2_typography-font-style);--awb-caption-title-size:var(--h2_typography-font-size);--awb-caption-title-transform:var(--h2_typography-text-transform);--awb-caption-title-line-height:var(--h2_typography-line-height);--awb-caption-title-letter-spacing:var(--h2_typography-letter-spacing);\"><div class=\"imageframe-align-center\"><div class=\"awb-image-frame awb-image-frame-8 imageframe-liftup\"><span class=\" fusion-imageframe imageframe-dropshadow imageframe-8\" style=\"border:8px solid #ffffff;-webkit-box-shadow: 3px 3px 7px rgba(0,0,0,0.3);box-shadow: 3px 3px 7px rgba(0,0,0,0.3);\"><a href=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/neuron-response-in-auditory-cortex-with-age.jpg\" class=\"fusion-lightbox\" data-rel=\"iLightbox[3ee440afaeed92b2680]\" data-title=\"neuron response in auditory cortex with age\" title=\"neuron response in auditory cortex with age\"><img decoding=\"async\" width=\"720\" height=\"540\" alt=\"Increase in complexity with neuronal response in auditory cortex with age\" src=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/neuron-response-in-auditory-cortex-with-age.jpg\" class=\"img-responsive wp-image-1529\" srcset=\"https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/neuron-response-in-auditory-cortex-with-age-300x225.jpg 300w, https:\/\/lab.research.sickkids.ca\/harrison\/wp-content\/uploads\/sites\/22\/2015\/10\/neuron-response-in-auditory-cortex-with-age.jpg 720w\" sizes=\"(max-width: 720px) 100vw, 720px\" \/><\/a><\/span><\/div><\/div><\/div><div class=\"fusion-clearfix\"><\/div><\/div><\/div><\/div><\/div>\n","protected":false},"excerpt":{"rendered":"","protected":false},"author":17,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-825","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v27.0 (Yoast SEO v27.0) - 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