<p>The interconnections represented by red (excitatory) and blue (inhibitory) arrows, respectively. Integration neurons receive inputs from both sets of complex and end-stopped cells in V1. They also receive inhibitory connections from segmentation cells. Segmentation cells receive excitatory input from complex cells and are inhibited by end-stopped cells. They also receive a conditional inhibitory connection from integration cells when the neurons in the receptive field center and surround are active. The connection parameters and variables are explained in the text and in Tables <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0164813#pone.0164813.t001" target="_blank">1</a> and <a href="http://www.plosone.org/article...
<p>The subnetworks are comprised of either excitatory or inhibitory neurons. Subnetworks <i>B</i><su...
<p>The entry in layers <i>i</i> (row) and <i>j</i> (column) represents the probability that a neuron...
<p>The entry in layers <i>i</i> (row) and <i>j</i> (column) represents the probability that a neuron...
<p>Nodes with the same color are neurons selective to the same direction. Neurons in columns have th...
<p>Input neurons are at the bottom. Similar to the Reynolds and Desimone model <a href="http://www.p...
<div><p>Excitatory and inhibitory neurons (represented by green and red dots, respectively) are arra...
<p>The extrinsic (associational) axons between ROI<sub>1</sub> and ROI<sub>2</sub> originate and end...
<p>The population of excitatory neurons is subdivided in non-overlapping populations selective to 8 ...
<p><b>A:</b> Schematic of an assembly <i>i</i> consisting of an excitatory (<i>E</i><sub><i>i</i></s...
Inhibitory and excitatory connections are equal partners in determining neuronal response properties...
<p>(A) Clusters of KCs and their connectivity. The connections shown here are the low-inhibition con...
<p>Excitatory connections are represented with arrows and inhibitory connections with circles. Just ...
<p>The entry in layers <i>i</i> (row) and <i>j</i> (column) represents the probability that a neuron...
A) List of excitatory and inhibitory connections. B) Scheme of Global and Modular connections. C) Co...
<p><b>A.</b> Structure of the network. The fully-connected network consists of <i>N</i> binary (<i>s...
<p>The subnetworks are comprised of either excitatory or inhibitory neurons. Subnetworks <i>B</i><su...
<p>The entry in layers <i>i</i> (row) and <i>j</i> (column) represents the probability that a neuron...
<p>The entry in layers <i>i</i> (row) and <i>j</i> (column) represents the probability that a neuron...
<p>Nodes with the same color are neurons selective to the same direction. Neurons in columns have th...
<p>Input neurons are at the bottom. Similar to the Reynolds and Desimone model <a href="http://www.p...
<div><p>Excitatory and inhibitory neurons (represented by green and red dots, respectively) are arra...
<p>The extrinsic (associational) axons between ROI<sub>1</sub> and ROI<sub>2</sub> originate and end...
<p>The population of excitatory neurons is subdivided in non-overlapping populations selective to 8 ...
<p><b>A:</b> Schematic of an assembly <i>i</i> consisting of an excitatory (<i>E</i><sub><i>i</i></s...
Inhibitory and excitatory connections are equal partners in determining neuronal response properties...
<p>(A) Clusters of KCs and their connectivity. The connections shown here are the low-inhibition con...
<p>Excitatory connections are represented with arrows and inhibitory connections with circles. Just ...
<p>The entry in layers <i>i</i> (row) and <i>j</i> (column) represents the probability that a neuron...
A) List of excitatory and inhibitory connections. B) Scheme of Global and Modular connections. C) Co...
<p><b>A.</b> Structure of the network. The fully-connected network consists of <i>N</i> binary (<i>s...
<p>The subnetworks are comprised of either excitatory or inhibitory neurons. Subnetworks <i>B</i><su...
<p>The entry in layers <i>i</i> (row) and <i>j</i> (column) represents the probability that a neuron...
<p>The entry in layers <i>i</i> (row) and <i>j</i> (column) represents the probability that a neuron...