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Neuron Collection (#4)

"Unveiling the Intricacies of Neurons: Exploring the Wonders Within Our Brain" Delving into the depths of our brain

Background imageNeuron Collection: Eye retina F008 / 0717

Eye retina F008 / 0717
The retina, inside the eye, contains a light-sensitive membranous layer of cells. These are specialized nerve cells: elongated rods (flower like shapes) and cone-tipped cells, that produce vision

Background imageNeuron Collection: Eye retina F008 / 0711

Eye retina F008 / 0711
The retina, inside the eye, contains a light-sensitive membranous layer of cells. These are specialized nerve cells: elongated rods (flower like shapes) and cone-tipped cells, that produce vision

Background imageNeuron Collection: Eye retina F008 / 0718

Eye retina F008 / 0718
The retina, inside the eye, contains a light-sensitive membranous layer of cells. These are specialized nerve cells: elongated rods (flower like shapes) and cone-tipped cells, that produce vision

Background imageNeuron Collection: Eye retina F008 / 0720

Eye retina F008 / 0720
The retina, inside the eye, contains a light-sensitive membranous layer of cells. These are specialized nerve cells: elongated rods (flower like shapes) and cone-tipped cells, that produce vision

Background imageNeuron Collection: Eye retina, rod and cone F008 / 0716

Eye retina, rod and cone F008 / 0716
The retina, inside the eye, contains a light-sensitive membranous layer of cells. These are specialized nerve cells: elongated rods (flower like shape) and cone-tipped cells, that produce vision

Background imageNeuron Collection: Neural network, artwork F008 / 3271

Neural network, artwork F008 / 3271
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F008 / 3269

Neural network, artwork F008 / 3269
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F008 / 3270

Neural network, artwork F008 / 3270
Neural network, computer artwork

Background imageNeuron Collection: Nerve cell, artwork F005 / 6921

Nerve cell, artwork F005 / 6921
Computer artwork of a nerve cell, also called a neuron. Neurons are responsible for passing information around the central nervous system (CNS) and from the CNS to the rest of the body

Background imageNeuron Collection: Nerve cell, artwork F005 / 6919

Nerve cell, artwork F005 / 6919
Computer artwork of a nerve cell, also called a neuron. Neurons are responsible for passing information around the central nervous system (CNS) and from the CNS to the rest of the body

Background imageNeuron Collection: Stem cell-derived neurons, micrograph

Stem cell-derived neurons, micrograph
Stem cell-derived neurons. Light micrograph of human nerve cells (neurons) that have been derived from induced pluripotent stem cells (IPS). Tuj1 proteins are cyan, and cell nuclei are red

Background imageNeuron Collection: Nerve cells, artwork F006 / 2403

Nerve cells, artwork F006 / 2403
Nerve cells, computer artwork

Background imageNeuron Collection: Neural network, artwork C017 / 2277

Neural network, artwork C017 / 2277
Neural network, computer artwork

Background imageNeuron Collection: Nerve cells, computer artwork F007 / 1988

Nerve cells, computer artwork F007 / 1988
Nerve cells. Computer artwork of nerve cells, or neurons

Background imageNeuron Collection: Neural network, artwork C017 / 2279

Neural network, artwork C017 / 2279
Neural network, computer artwork

Background imageNeuron Collection: Brain, neural network F007 / 0946

Brain, neural network F007 / 0946
Neural network. Computer artwork of a brain in side view, with the brains neural network represented by lines and flashes. A neural network is made up of nerve cells (neurons)

Background imageNeuron Collection: Collective consciousness, artwork F007 / 0040

Collective consciousness, artwork F007 / 0040
Collective consciousness, artwork

Background imageNeuron Collection: Central nervous system, artwork F006 / 8724

Central nervous system, artwork F006 / 8724
Central nervous system, conceptual computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8723

Neural network, artwork F006 / 8723
Neural network, computer artwork

Background imageNeuron Collection: Nerve cell, artwork F006 / 8722

Nerve cell, artwork F006 / 8722
Nerve cell, computer artwork

Background imageNeuron Collection: Nerve cell, artwork F006 / 8720

Nerve cell, artwork F006 / 8720
Nerve cell, computer artwork

Background imageNeuron Collection: Nerve cell, artwork F006 / 8718

Nerve cell, artwork F006 / 8718
Nerve cell, computer artwork

Background imageNeuron Collection: Nerve cell, artwork F006 / 8721

Nerve cell, artwork F006 / 8721
Nerve cell, computer artwork

Background imageNeuron Collection: Nerve cell, artwork F006 / 8719

Nerve cell, artwork F006 / 8719
Nerve cell, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8717

Neural network, artwork F006 / 8717
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8714

Neural network, artwork F006 / 8714
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8715

Neural network, artwork F006 / 8715
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8713

Neural network, artwork F006 / 8713
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8716

Neural network, artwork F006 / 8716
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8712

Neural network, artwork F006 / 8712
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8711

Neural network, artwork F006 / 8711
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8709

Neural network, artwork F006 / 8709
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8710

Neural network, artwork F006 / 8710
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8708

Neural network, artwork F006 / 8708
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8706

Neural network, artwork F006 / 8706
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8707

Neural network, artwork F006 / 8707
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8704

Neural network, artwork F006 / 8704
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8705

Neural network, artwork F006 / 8705
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8703

Neural network, artwork F006 / 8703
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8702

Neural network, artwork F006 / 8702
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8701

Neural network, artwork F006 / 8701
Neural network, computer artwork

Background imageNeuron Collection: Neural network, artwork F006 / 8700

Neural network, artwork F006 / 8700
Neural network, computer artwork

Background imageNeuron Collection: Headache, conceptual artwork F006 / 8693

Headache, conceptual artwork F006 / 8693
Headache, conceptual computer artwork

Background imageNeuron Collection: Nerve synapse, computer artwork C017 / 3429

Nerve synapse, computer artwork C017 / 3429
Nerve synapse. Conceptual computer artwork of a synapse between two nerve cells or neurons. Neurons are responsible for passing information around the central nervous system (CNS)

Background imageNeuron Collection: Pyramidal nerve cell, artwork C017 / 2275

Pyramidal nerve cell, artwork C017 / 2275
Pyramidal nerve cell. Computer artwork of a pyramidal nerve cell from the cerebral cortex of the brain. Pyramidal cells are so named for their triangular cell bodies (lower frame)

Background imageNeuron Collection: Brain nerve cells, TEM C014 / 0357

Brain nerve cells, TEM C014 / 0357
Brain nerve cells. Transmission electron micrograph (TEM) of a section through brain tissue from the cerebral cortex, showing numerous neurons (nerve cells) surrounded by axons and dendrites

Background imageNeuron Collection: Neural cells F006 / 9203

Neural cells F006 / 9203
Computer artwork depicting nerve cells and neural communication

Background imageNeuron Collection: Stem cell-derived astrocyte brain cells

Stem cell-derived astrocyte brain cells
Stem cell-derived nerve cells. Fluorescence light micrograph of astrocyte brain cells that have been derived from neural (nerve) stem cells from a mouse




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"Unveiling the Intricacies of Neurons: Exploring the Wonders Within Our Brain" Delving into the depths of our brain, we encounter a histological diagram of a mammalian retina. This intricate network showcases the complexity and beauty of neurons that enable us to perceive light and color. Moving further, we explore cerebellum tissue through a light micrograph. The mesmerizing patterns reveal nerve and glial cells working in harmony, orchestrating our body's movements with precision. Zooming in closer, we witness a synapse nerve junction captured by TEM. This microscopic marvel highlights how information is transmitted between neurons, forming connections crucial for our thoughts and actions. Shifting gears to SEM imagery, we are introduced to an awe-inspiring nerve cell. Its intricate structure resembles an elaborate work of art—a testament to nature's ingenuity in crafting these building blocks of intelligence. Tracing back history, we stumble upon Santiago Ramon y Cajal's 1894 drawing depicting cell types within the mammalian cerebellum. His meticulous observations laid foundations for understanding neural networks that govern our motor skills. Venturing deeper into brain tissue, we discover hippocampus tissue—an essential region responsible for memory formation and spatial navigation. Here lies another realm where neurons weave together memories that shape who we are. Intriguingly unique are Purkinje nerve cells found within the cerebellum—majestic giants among their peers. Their distinctive appearance signifies their vital role in coordinating movement and maintaining balance. As if peering through a microscope lens once again, another nerve cell captures our attention—the epitome of elegance amidst complexity; it reminds us how intricately woven life truly is at its core. Diving into glial stem cell culture under bright illumination reveals their remarkable regenerative potential—a beacon of hope for treating neurological disorders as they hold promises yet untapped. Examining brain tissue blood supply uncovers an indispensable lifeline, nourishing neurons with oxygen and nutrients.