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13 results for “Hippocampus CA1 pyramidal cell”

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zenodo36/100

Data set of CA1 pyramidal cell models using an intact whole hippocampus preparation

<p>The frequency-current (f-I) profiles of pyramidal cells are presented. Each .abf file contains the&nbsp;f-I curve data for the respective cell (as labelled PYR1, PYR2, PYR3 and PYR4 for Pyramidal cell 1, Pyramidal cell 2, Pyramidal cell 3 and Pyramidal cell 4). &nbsp;That is, they contain the cell&#39;s response to the application of a series of depolarizing current steps of 1 s duration while the cells are held in current clamp, as well as the current clamp data itself. &nbsp;Each recording is 2 s total. &nbsp;Amplitudes of the input were increased incrementally with step sizes of 10 pA for PYR1, PYR3, and PYR4, and a step size of 25 pA for PYR 2.&nbsp;&nbsp;PYR1 first spikes on the 5th of 30 steps with 38.7 pA of depolarizing input. &nbsp;PYR2 first spikes on the 3rd of 13 steps with 1.2 pA of input. &nbsp;PYR3 first spikes on the 7th of 34 steps with 62.0 pA of input, and PYR4 first spikes on the 7th of 30 steps with 12.1 pA of input.</p>

opencc-zeroApr 2014View details →
zenodo36/100

Data set of CA1 pyramidal cell recordings using an intact whole hippocampus preparation, including recordings of rebound firing (V2)

<p>The frequency-current (f-I) profiles and an example of rebound firing of pyramidal cells are presented. Four .abf files contain the&nbsp;f-I curve data for the respective cell (as labelled PYR1, PYR2, PYR3 and PYR4 for Pyramidal cell 1, Pyramidal cell 2, Pyramidal cell 3 and Pyramidal cell 4). &nbsp;That is, they contain the cell&#39;s response to the application of a series of depolarizing current steps of 1 s duration while the cells are held in current clamp, as well as the current clamp data itself. &nbsp;Each recording is 2 s total. &nbsp;Amplitudes of the input were increased incrementally with step sizes of 10 pA for PYR1, PYR3, and PYR4, and a step size of 25 pA for PYR 2.&nbsp;&nbsp;PYR1 first spikes on the 5th of 30 steps with 38.7 pA of depolarizing input. &nbsp;PYR2 first spikes on the 3rd of 13 steps with 1.2 pA of input. &nbsp;PYR3 first spikes on the 7th of 34 steps with 62.0 pA of input, and PYR4 first spikes on the 7th of 30 steps with 12.1 pA of input.&nbsp; In the .abf file labelled PYR5_rebound, an example of rebound firing of a pyramidal cell following hyperpolarizing input is given.&nbsp; While the cell was held at -52 mV in current clamp, as series of 1 s hyperpolarizing steps (10 steps, 25 pA increments) were used to record the post- hyperpolarization rebound spiking.&nbsp; For the figure showing this rebound spiking (Figure 1), the first two hyperpolarizing steps and the respective firing are shown.&nbsp; For visualization purposes, the spike artifact in the current clamp input trace was removed and replaced with the mean current in the Figure.&nbsp;</p>

opencc-zeroMay 2015View details →
zenodo36/100

Data set of CA1 pyramidal cell models using an intact whole hippocampus preparationV2

<p>The frequency-current (f-I) profiles and an example of rebound firing of pyramidal cells are presented. Four .abf files contain the&nbsp;f-I curve data for the respective cell (as labelled PYR1, PYR2, PYR3 and PYR4 for Pyramidal cell 1, Pyramidal cell 2, Pyramidal cell 3 and Pyramidal cell 4). &nbsp;That is, they contain the cell&#39;s response to the application of a series of depolarizing current steps of 1 s duration while the cells are held in current clamp, as well as the current clamp data itself. &nbsp;Each recording is 2 s total. &nbsp;Amplitudes of the input were increased incrementally with step sizes of 10 pA for PYR1, PYR3, and PYR4, and a step size of 25 pA for PYR 2.&nbsp;&nbsp;PYR1 first spikes on the 5th of 30 steps with 38.7 pA of depolarizing input. &nbsp;PYR2 first spikes on the 3rd of 13 steps with 1.2 pA of input. &nbsp;PYR3 first spikes on the 7th of 34 steps with 62.0 pA of input, and PYR4 first spikes on the 7th of 30 steps with 12.1 pA of input.&nbsp; In the .abf file labelled PYR5_rebound, an example of rebound firing of a pyramidal cell following hyperpolarizing input is given.&nbsp; While the cell was held at -52 mV in current clamp, as series of 1 s hyperpolarizing steps (10 steps, 25 pA increments) were used to record the post- hyperpolarization rebound spiking.&nbsp; For the figure showing this rebound spiking (Figure 1), the first two hyperpolarizing steps and the respective firing are shown.&nbsp; For visualization purposes, the spike artifact in the current clamp input trace was removed and replaced with the mean current in the Figure.</p>

opencc-zeroMay 2015View details →
zenodo36/100

Action potential dependent sIPSCs from 3-4 months old C57BL/6J X SJL female mice hippocampus CA1 pyramidal cell

<p>species : Mus musculus</p> <p>sex : female</p> <p>strain :&nbsp;C57BL/6J X SJL</p> <p>age : 3 - 4 months</p> <p>Voltage-clamp recordings of GABAA spontaneous inhibitory post-synaptic currents (sIPSCs) were obtained from 3-4 months old C57BL/6J X SJL female mice . The dataset contains 701 individual events recorded from 7 different neurons (expB1-B7).</p>

opencc-by-nc-sa-4.0Jul 2016View details →
zenodo32/100

Wistar rat hippocampus CA1 pyramidal cell morphologies

<p>title : Reconstruction of hippocampus CA1 cell morphologies</p> <p>specimen : Rattus norvegicus</p> <p>sex : male</p> <p>strain : Wistar</p> <p>age : post-natal day 14-16</p> <p>This neuron was recorded and filled with biocytin (3 mg/ml) in a 300 &micro;m thick coronal slice of rat hippocampus, using 2 - 10 MOhm patch pipettes. 3,3&prime;-diaminobenzidine (DAB) was used for revelation. The slice was fixed and the cell reconstructed with Neurolucida using a 100x oil immersion objective.</p>

opencc-by-nc-sa-4.0Jul 2016View details →
zenodo32/100

C57BL/6J mouse hippocampus CA1 pyramidal cell morphologies

<p>title : Reconstruction of hippocampus CA1 cell morphologies</p> <p>specimen : Mus musculus</p> <p>sex : male</p> <p>strain : C57BL/6J</p> <p>age : post-natal day 13-16</p> <p>This neuron was recorded and filled with biocytin (3 mg/ml) in a 300 &micro;m thick coronal slice of rat hippocampus, using 2 - 10 MOhm patch pipettes. 3,3&prime;-diaminobenzidine (DAB) was used for revelation. The slice was fixed and the cell reconstructed with Neurolucida using a 100x oil immersion objective.</p>

opencc-by-nc-nd-4.0Jul 2016View details →
geo24/100

Hippocampus CA1 pyramidal cells Transcriptomic profile in WT and Fmr1 KO mice, using Wfs1-CreERT2:RiboTag:Frm1 knockout and wildtype mice

GEO Series GSE94559. Mus musculus. 12 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenNov 2017View details →
zenodo16/100

Reconstruction of hippocampus CA1 stratum pyramidale, pyramidal cell

<p>title : Reconstruction of hippocampus CA1 cell morphologies</p> <p>specimen : Rattus norvegicus</p> <p>sex : male</p> <p>weight : 100-200 g</p> <p>This neuron was recorded and filled with biocytin in a 450-500 &micro;m thick coronal slice of adult rat hippocampus, using sharp electrodes (for methods see PMID: 11807843).&nbsp; The fixed slice was resectioned at 50-60&nbsp;&micro;m&nbsp;and the cell reconstructed with Neurolucida using a 100x oil immersion objective.</p>

restrictedMar 2016View details →
zenodo16/100

Reconstruction of hippocampus CA1 stratum pyramidale, pyramidal cell

<p>title : Reconstruction of hippocampus CA1 cell morphologies</p> <p>specimen : Rattus norvegicus</p> <p>sex : male</p> <p>weight : 100-200 g</p> <p>This neuron was recorded and filled with biocytin in a 450-500 µm thick coronal slice of adult rat hippocampus, using sharp electrodes (for methods see PMID: 11807843).  The fixed slice was resectioned at 50-60 µm and the cell reconstructed with Neurolucida using a 100x oil immersion objective.</p>

restrictedMar 2016View details →
zenodo16/100

Reconstruction of hippocampus CA1 stratum pyramidale, pyramidal cell

<p>title : Reconstruction of hippocampus CA1 cell morphologies</p> <p>specimen : Rattus norvegicus</p> <p>sex : male</p> <p>weight : 100-200 g</p> <p>This neuron was recorded and filled with biocytin in a 450-500 µm thick coronal slice of adult rat hippocampus, using sharp electrodes (for methods see PMID: 11807843).  The fixed slice was resectioned at 50-60 µm and the cell reconstructed with Neurolucida using a 100x oil immersion objective.</p>

restrictedMar 2016View details →
zenodo16/100

Reconstruction of hippocampus CA1 stratum pyramidale, pyramidal cell

<p>title : Reconstruction of hippocampus CA1 cell morphologies</p> <p>specimen : Rattus norvegicus</p> <p>sex : male</p> <p>weight : 100-200 g</p> <p>This neuron was recorded and filled with biocytin in a 450-500 µm thick coronal slice of adult rat hippocampus, using sharp electrodes (for methods see PMID: 11807843).  The fixed slice was resectioned at 50-60 µm and the cell reconstructed with Neurolucida using a 100x oil immersion objective.</p>

restrictedMar 2016View details →
zenodo16/100

Reconstruction of hippocampus CA1 stratum pyramidale, pyramidal cell

<p>title : Reconstruction of hippocampus CA1 cell morphologies</p> <p>specimen : Rattus norvegicus</p> <p>sex : male</p> <p>weight : 100-200 g</p> <p>This neuron was recorded and filled with biocytin in a 450-500 &micro;m thick coronal slice of adult rat hippocampus, using sharp electrodes (for methods see PMID: 11807843).&nbsp; The fixed slice was resectioned at 50-60&nbsp;&micro;m&nbsp;and the cell reconstructed with Neurolucida using a 100x oil immersion objective.</p>

restrictedMar 2016View details →
zenodo16/100

Reconstruction of hippocampus CA1 stratum pyramidale, pyramidal cell

<p>title : Reconstruction of hippocampus CA1 cell morphologies</p> <p>specimen : Rattus norvegicus</p> <p>sex : male</p> <p>weight : 100-200 g</p> <p>This neuron was recorded and filled with biocytin in a 450-500 µm thick coronal slice of adult rat hippocampus, using sharp electrodes (for methods see PMID: 11807843).  The fixed slice was resectioned at 50-60 µm and the cell reconstructed with Neurolucida using a 100x oil immersion objective.</p>

restrictedMar 2016View details →

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