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Зображення

EN_00966278_4237
EN_00966278_4237

Lyme disease cycle. Tick eggs become larvae and feed on small mammals or birds infected with the Lyme disease bacterium, Borrelia burgdorferi. Infected tick larvae then molt into nymphs, emerging aggressively in spring to infect new hosts, including humans. The nymphs molt to become adult ticks, which seek new hosts, mate, and produce eggs.

EN_00966278_4238
EN_00966278_4238

Lyme disease cycle. Tick eggs become larvae and feed on small mammals or birds infected with the Lyme disease bacterium, Borrelia burgdorferi. Infected tick larvae then molt into nymphs, emerging aggressively in spring to infect new hosts, including humans. The nymphs molt to become adult ticks, which seek new hosts, mate, and produce eggs.

EN_00966278_4239
EN_00966278_4239

Lyme disease cycle. Tick eggs become larvae and feed on small mammals or birds infected with the Lyme disease bacterium, Borrelia burgdorferi. Infected tick larvae then molt into nymphs, emerging aggressively in spring to infect new hosts, including humans. The nymphs molt to become adult ticks, which seek new hosts, mate, and produce eggs.

EN_00966278_4240
EN_00966278_4240

Lyme disease cycle. Tick eggs become larvae and feed on small mammals or birds infected with the Lyme disease bacterium, Borrelia burgdorferi. Infected tick larvae then molt into nymphs, emerging aggressively in spring to infect new hosts, including humans. The nymphs molt to become adult ticks, which seek new hosts, mate, and produce eggs.

EN_00966278_4241
EN_00966278_4241

Artist's concept of the vascular endothelial growth factor (VEGF) pathway within a cell. The pathway is labeled.

EN_00966278_4242
EN_00966278_4242

Artist's concept of the vascular endothelial growth factor (VEGF) pathway within a cell. The pathway is labeled.

EN_00966278_4243
EN_00966278_4243

Artist's concept of the vascular endothelial growth factor (VEGF) pathway within a cell. The pathway is labeled.

EN_00966278_4244
EN_00966278_4244

Artist's concept of vascular endothelial growth factor (VEGF) stimulated angiogenesis.

EN_00966278_4245
EN_00966278_4245

Artist's concept of angiogenesis stimulated by vascular endothelial growth factor (VEGF) released by tumor cells.

EN_00966278_4246
EN_00966278_4246

Artist's concept of angiogenesis stimulated by vascular endothelial growth factor (VEGF) released by tumor cells, with labels.

EN_00966278_4247
EN_00966278_4247

Artist's concept of the paramyxovirus that causes mumps, cross section view, illustrating proteins and RNA inside the virus.

EN_00966278_4248
EN_00966278_4248

Artist's concept of the paramyxovirus that causes mumps, cross section view, illustrating proteins and RNA inside the virus, with labels.

EN_00966278_4249
EN_00966278_4249

Artist's concept of the paramyxovirus that causes mumps, cross section view, illustrating proteins and RNA inside the virus.

EN_00966278_4250
EN_00966278_4250

Artist's concept of the paramyxovirus that causes mumps, cross section view, illustrating proteins and RNA inside the virus, labeled.

EN_00966278_4251
EN_00966278_4251

Artist's concept of the life cycle of the paramyxovirus that causes mumps.

EN_00966278_4252
EN_00966278_4252

Artist's concept of the life cycle of the paramyxovirus that causes mumps. Cross section of the virus and stages of development within a host cell are labeled.

EN_00966278_4253
EN_00966278_4253

Artist's concept of the life cycle of the paramyxovirus that causes mumps. Cross section of the virus and stages of development within a host cell are labeled.

EN_00966278_4254
EN_00966278_4254

Artist's concept of the life cycle of the paramyxovirus that causes mumps. Stages of development within a host cell are labeled.

EN_00966278_4255
EN_00966278_4255

Illustration showing a cancerous breast cell producing too many HER genes, which in turn produce an excessive number of HER2 receptors. The receptors attract growth factors, which stimulate the growth of more cells. Herceptin (generic name trastuzumab) and other antibodies inhibit HER2 receptors and VEGF growth factors.

EN_00966278_4256
EN_00966278_4256

Illustration showing a cancerous breast cell producing too many HER genes, which in turn produce an excessive number of HER2 receptors. The receptors attract growth factors, which stimulate the growth of more cells. Herceptin (generic name, trastuzumab) and other antibodies inhibit HER2 receptors and VEGF growth factors. The growth signal is green.

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