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Transmission Electron Micrograph Collection (#6)

"Exploring the Microscopic World: Unveiling Intricate Structures through Transmission Electron Micrograph" In the realm of science

Background imageTransmission Electron Micrograph Collection: Intestinal arteriole, TEM

Intestinal arteriole, TEM
Intestinal arteriole. Transmission electron micrograph (TEM) of a section through an arteriole in the wall of the small intestine. Magnification: x5000 when printed 10 centimetres wide

Background imageTransmission Electron Micrograph Collection: Muscle arteriole, TEM

Muscle arteriole, TEM
Muscle arteriole. Transmission electron micrograph (TEM) of a section through an arteriole (black, centre) in striated muscle tissue. Magnification: x3500 when printed 10 centimetres wide

Background imageTransmission Electron Micrograph Collection: Arteriole, TEM

Arteriole, TEM
Arteriole. Transmission electron micrograph (TEM) of a section through a small calibre arterial vessel called an arteriole

Background imageTransmission Electron Micrograph Collection: Smooth endoplasmic reticulum, TEM

Smooth endoplasmic reticulum, TEM
Smooth endoplasmic reticulum. Transmission electron micrograph (TEM) showing smooth endoplasmic reticulum (ER, thin lines) inside a cell that is synthesising steroid hormones

Background imageTransmission Electron Micrograph Collection: Small bowel epithelium, TEM

Small bowel epithelium, TEM
Small bowel epithelium. Transmission electron micrograph (TEM) of a section through the epithelial lining of a villus in the small bowel, showing the enterocyte cells

Background imageTransmission Electron Micrograph Collection: Brain nerve cells, TEM C014 / 0356

Brain nerve cells, TEM C014 / 0356
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 imageTransmission Electron Micrograph Collection: Brain cell, TEM C014 / 0358

Brain cell, TEM C014 / 0358
Brain cell. Transmission electron micrograph (TEM) of a section through an oligodendrocyte in human brain tissue. Oligodendrocytes occur in both the white

Background imageTransmission Electron Micrograph Collection: Brain cell, TEM C014 / 0359

Brain cell, TEM C014 / 0359
Brain cell. Transmission electron micrograph (TEM) of a section through an oligodendrocyte in human brain tissue. Oligodendrocytes occur in both the white

Background imageTransmission Electron Micrograph Collection: Schmallenberg virus, TEM

Schmallenberg virus, TEM
Schmallenberg virus. Transmission electron micrograph (TEM) of a virus particle (virion) of the Schmallenberg virus. This is an informal name for a viral disease of livestock that was first reported

Background imageTransmission Electron Micrograph Collection: Monkeypox virus particles, TEM C016 / 7386

Monkeypox virus particles, TEM C016 / 7386
Monkeypox virus (MPV) particles, coloured transmission electron micrograph (TEM). Each particle is composed of a DNA (deoxyribonucleic acid) genome surrounded by a protein coat and lipid envelope

Background imageTransmission Electron Micrograph Collection: Monkeypox virus particles, TEM C016 / 7387

Monkeypox virus particles, TEM C016 / 7387
Monkeypox virus (MPV) particles, coloured transmission electron micrograph (TEM). Each particle is composed of a DNA (deoxyribonucleic acid) genome surrounded by a protein coat and lipid envelope

Background imageTransmission Electron Micrograph Collection: Monkeypox virus particles, TEM C016 / 7385

Monkeypox virus particles, TEM C016 / 7385
Monkeypox virus (MPV) particles, coloured transmission electron micrograph (TEM). Each particle is composed of a DNA (deoxyribonucleic acid) genome surrounded by a protein coat and lipid envelope

Background imageTransmission Electron Micrograph Collection: Monkeypox virus particles, TEM C016 / 7384

Monkeypox virus particles, TEM C016 / 7384
Monkeypox virus (MPV) particles, coloured transmission electron micrograph (TEM). Each particle is composed of a DNA (deoxyribonucleic acid) genome surrounded by a protein coat and lipid envelope

Background imageTransmission Electron Micrograph Collection: Monkeypox virus particle, TEM C016 / 7383

Monkeypox virus particle, TEM C016 / 7383
Monkeypox virus (MPV) particle, coloured transmission electron micrograph (TEM). Each particle is composed of a DNA (deoxyribonucleic acid) genome surrounded by a protein coat and lipid envelope

Background imageTransmission Electron Micrograph Collection: Monkeypox virus particle, TEM C016 / 7380

Monkeypox virus particle, TEM C016 / 7380
Monkeypox virus (MPV) particle, coloured transmission electron micrograph (TEM). Each particle is composed of a DNA (deoxyribonucleic acid) genome surrounded by a protein coat and lipid envelope

Background imageTransmission Electron Micrograph Collection: Influenza virus particle, TEM

Influenza virus particle, TEM
Influenza virus particle, coloured transmission electron micrograph (TEM). The virus consists of ribonucleic acid (RNA), surrounded by a nucleocapsid (light green) and a lipid envelope (dark green)

Background imageTransmission Electron Micrograph Collection: Purkinje nerve cell, TEM C014 / 0582

Purkinje nerve cell, TEM C014 / 0582
Purkinje nerve cell. Transmission electron micrograph (TEM) of a purkinje nerve cell (bright yellow, centre) from the cerebellum of the brain

Background imageTransmission Electron Micrograph Collection: MERS coronavirus, TEM C017 / 8300

MERS coronavirus, TEM C017 / 8300
MERS coronavirus. Coloured transmission electron micrograph (TEM) of a MERS coronavirus particle (yellow) budding from a host cell (orange)

Background imageTransmission Electron Micrograph Collection: Chloroplast, TEM C017 / 8233

Chloroplast, TEM C017 / 8233
Chloroplast. Coloured transmission electron micrograph (TEM) of chloroplast from the leaf of a Coleus blumei plant. Chloroplasts are the sites of photosynthesis

Background imageTransmission Electron Micrograph Collection: Islet of Langerhans, TEM C015 / 6418

Islet of Langerhans, TEM C015 / 6418
Islet of Langerhans. Transmission electron micrograph (TEM) of a section through cells clustered in an islet of Langerhans in the pancreas

Background imageTransmission Electron Micrograph Collection: Avian influenza virus, TEM C016 / 5843

Avian influenza virus, TEM C016 / 5843
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageTransmission Electron Micrograph Collection: Avian influenza virus, TEM C016 / 5841

Avian influenza virus, TEM C016 / 5841
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageTransmission Electron Micrograph Collection: Myelinated nerve, TEM C016 / 5840

Myelinated nerve, TEM C016 / 5840
Myelinated nerve. Coloured transmission electron micrograph (TEM) of a section through a myelinated nerve fibre and Schwann cell

Background imageTransmission Electron Micrograph Collection: Myelinated nerve, TEM C016 / 5839

Myelinated nerve, TEM C016 / 5839
Myelinated nerve. Coloured transmission electron micrograph (TEM) of a section through a myelinated nerve fibre and Schwann cell

Background imageTransmission Electron Micrograph Collection: Avian influenza virus, TEM C016 / 5842

Avian influenza virus, TEM C016 / 5842
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageTransmission Electron Micrograph Collection: Myelinated nerve, TEM C016 / 5838

Myelinated nerve, TEM C016 / 5838
Myelinated nerve. Coloured transmission electron micrograph (TEM) of a section through a myelinated nerve fibre and Schwann cell

Background imageTransmission Electron Micrograph Collection: Intraglomerular mesangial cells, TEM C016 / 5837

Intraglomerular mesangial cells, TEM C016 / 5837
Intraglomerular mesangial cells. Transmission electron micrograph (TEM) of a section through intraglomerular mesangial cells from the glomerulus of a kidney

Background imageTransmission Electron Micrograph Collection: Glomerulosclerosis, TEM C016 / 5836

Glomerulosclerosis, TEM C016 / 5836
Glomerulosclerosis. Transmission electron micrograph (TEM) of a section through through the glomerulus of a kidney affected by glomerulosclerosis

Background imageTransmission Electron Micrograph Collection: Kidney glomerulus, TEM C016 / 5831

Kidney glomerulus, TEM C016 / 5831
Kidney glomerulus. Transmission electron micrograph (TEM) of a section through a renal glomerulus. At centre left is a capillary with a red blood cell (black) in its lumen

Background imageTransmission Electron Micrograph Collection: Alveolar soft part sarcoma, TEM C016 / 5826

Alveolar soft part sarcoma, TEM C016 / 5826
Alveolar soft part sarcoma. Transmission electron micrograph (TEM) of a section through an alveolar soft part sarcoma (ASPS) showing a characteristic rhomboid crystal (black, centre)

Background imageTransmission Electron Micrograph Collection: Alveolar soft part sarcoma, TEM C016 / 5816

Alveolar soft part sarcoma, TEM C016 / 5816
Alveolar soft part sarcoma. Transmission electron micrograph (TEM) of a section through an alveolar soft part sarcoma (ASPS) showing a characteristic rhomboid crystal (black)

Background imageTransmission Electron Micrograph Collection: Mitochondrial inclusions, TEM C016 / 5807

Mitochondrial inclusions, TEM C016 / 5807
Mitochondrial inclusions. Transmission electron micrograph (TEM) of a section through a mitochondrion showing crystalline inclusions (thick parallel rods) in the intermembrane spaces

Background imageTransmission Electron Micrograph Collection: Mitochondrial inclusions, TEM C016 / 5806

Mitochondrial inclusions, TEM C016 / 5806
Mitochondrial inclusions. Transmission electron micrograph (TEM) of a section through a mitochondrion showing crystalline inclusions (thick parallel rods) in the intermembrane spaces

Background imageTransmission Electron Micrograph Collection: Unmyelinated nerve, TEM C016 / 5805

Unmyelinated nerve, TEM C016 / 5805
Unmyelinated nerve. Transmission electron micrograph (TEM) of a section through axon (nerve fibre) bundles of unmyelinated nerves

Background imageTransmission Electron Micrograph Collection: Unmyelinated nerve, TEM C016 / 5804

Unmyelinated nerve, TEM C016 / 5804
Unmyelinated nerve. Transmission electron micrograph (TEM) of a section through axon (nerve fibre) bundles of unmyelinated nerves

Background imageTransmission Electron Micrograph Collection: Myelinated nerve, TEM C016 / 5448

Myelinated nerve, TEM C016 / 5448
Myelinated nerve. Transmission electron micrograph (TEM) of a section through a myelinated nerve fibre and Schwann cell. Myelin (black)

Background imageTransmission Electron Micrograph Collection: Myelinated nerve, TEM C016 / 5370

Myelinated nerve, TEM C016 / 5370
Myelinated nerve. Transmission electron micrograph (TEM) of a section through a myelinated nerve fibre and Schwann cell (centre)

Background imageTransmission Electron Micrograph Collection: Pig retrovirus, TEM C016 / 4246

Pig retrovirus, TEM C016 / 4246
Pig retrovirus. Coloured transmission electron micrograph (TEM) of porcine endogenous retrovirus (PERV) particles (round) in infected tissue

Background imageTransmission Electron Micrograph Collection: Vesicular stomatitis virus, TEM C016 / 4244

Vesicular stomatitis virus, TEM C016 / 4244
Vesicular stomatitis virus. Coloured transmission electron micrograph (TEM) of a particle of the rhabdovirus vesicular stomatitis virus (VSV). The bullet shape is characteristic of rhabdoviruses

Background imageTransmission Electron Micrograph Collection: Vesicular stomatitis virus, TEM C016 / 4245

Vesicular stomatitis virus, TEM C016 / 4245
Vesicular stomatitis virus, TEM

Background imageTransmission Electron Micrograph Collection: Avian influenza virus, TEM C016 / 2354

Avian influenza virus, TEM C016 / 2354
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageTransmission Electron Micrograph Collection: Avian influenza virus, TEM C016 / 2353

Avian influenza virus, TEM C016 / 2353
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageTransmission Electron Micrograph Collection: Avian influenza virus, TEM C016 / 2352

Avian influenza virus, TEM C016 / 2352
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageTransmission Electron Micrograph Collection: Avian influenza virus, TEM C016 / 2351

Avian influenza virus, TEM C016 / 2351
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageTransmission Electron Micrograph Collection: Retinal rod cell, TEM C013 / 4805

Retinal rod cell, TEM C013 / 4805
Retinal rod cell. Transmission electron micrograph (TEM) of a section through a rod cell from the retina of an eye, showing the inner segment (bottom) filled with mitochondria (green)

Background imageTransmission Electron Micrograph Collection: Retinal rod cell, TEM C013 / 4804

Retinal rod cell, TEM C013 / 4804
Retinal rod cell. Transmission electron micrograph (TEM) of a section through a rod cell from the retina of an eye, showing the inner segment (bottom) filled with mitochondria (green)

Background imageTransmission Electron Micrograph Collection: Brain cells, TEM C013 / 4801

Brain cells, TEM C013 / 4801
Brain cells. Transmission electron micrograph (TEM) of a section through oligodendrocytes (dark) in human brain tissue, showing free ribosomes (dark green dots), golgi apparatus (curved brown lines)

Background imageTransmission Electron Micrograph Collection: Macrophage engulfing a nerve cell, TEM C013 / 4803

Macrophage engulfing a nerve cell, TEM C013 / 4803
Macrophage engulfing a nerve cell. Transmission electron micrograph (TEM) of a section through a macrophage white blood cell (blue) that has engulfed a nerve cell (neuron, centre)




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"Exploring the Microscopic World: Unveiling Intricate Structures through Transmission Electron Micrograph" In the realm of science, transmission electron micrographs (TEM) have revolutionized our understanding of various biological entities. These powerful images provide a glimpse into the hidden intricacies that make up our world at an unimaginably small scale. One captivating TEM showcases regenerating nerve cells, offering hope for those seeking to understand and treat neurological disorders. The image captures the delicate process of nerve cell regrowth, highlighting their remarkable ability to heal and restore function. Another fascinating TEM reveals fat cells in all their glory - spherical structures filled with lipid droplets that play crucial roles in energy storage and insulation within our bodies. This microscopic view sheds light on how these adipocytes contribute to overall health and metabolism. Moving on, we encounter an E. coli bacterium captured by TEM, showcasing its distinctive rod-shaped structure. This notorious bacterium serves as both a model organism for research purposes and a cause of concern due to its potential pathogenicity. Delving deeper into the microscopic world, plasma cells come into focus through another mesmerizing TEM image. These specialized white blood cells produce antibodies vital for immune defense against invading pathogens - a testament to the intricate mechanisms at work within our bodies. The hauntingly beautiful transmission electron micrograph of influenza virus particles provides insight into one of humanity's greatest challenges - infectious diseases. Studying such images aids scientists in developing effective vaccines and antiviral treatments against these elusive viral foes. Hepatitis C viruses also reveal themselves under TEM scrutiny, reminding us of the ongoing battle against this chronic liver disease affecting millions worldwide. Understanding their structure helps researchers devise strategies for prevention and treatment. Shifting gears slightly from infections to anatomy, an eye muscle is showcased through TEM imagery – revealing its unique fiber arrangement responsible for precise eye movements essential for vision coordination. A Purkinje nerve cell takes center stage next; this neuron found in the cerebellum plays a crucial role in coordinating movement and balance.