Archive for the tag: Anatomy

Anatomy and Physiology of the Skin, Animation

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(USMLE topics) Structure of the skin, layers of the epidermis, skin barrier and pigmentation. Purchase PDF (script of this video + images) here: https://www.alilamedicalmedia.com/-/galleries/pdf-video-scripts-with-images/a-p-basics/-/medias/997936d8-99bf-479a-b34a-f3f64bad47d0-skin-anatomy-3-pages-5-images
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Voice by: Ashley Fleming
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The skin covers the body and protects it from the external environment. It also prevents water loss, provides sensory function, plays a role in body temperature regulation, and is the site of vitamin D synthesis.
The skin is composed of 2 layers: the outer epidermis and the deeper dermis. The dermis is connected to underlying structures via a subcutaneous tissue, the hypodermis, which is not technically considered part of the skin.
The epidermis provides barrier and protection, it consists mainly of the protein keratin, a tough and water-insoluble structural protein.
The dermis constitutes the bulk of the skin, it provides support and flexibility. The dermis consists mainly of collagen, and to a lesser extent, elastin fibers. Loss of collagen and elastin, such as with aging, causes the skin to slack. The boundary surface between the epidermis and dermis is not flat but wavy, meaning the 2 tissues interlock, strengthening their connection. With age, this boundary flattens and the skin becomes more fragile. The dermis is well vascularized and contains sensory nerves, hair follicles, sebaceous glands and sweat glands. It has 2 zones: the upper papillary dermis with loose connective tissue, and the lower reticular dermis with denser connective tissue. The dermis houses immune cells and allows inflammatory response to activate upon exposure to invading organisms.
The hypodermis is composed of loose connective and adipose tissues. This is where most of the body fat is stored. The hypodermis provides thermal insulation, padding and serves as the body main energy storage.
The thickness and proportion of the epidermis and dermis vary greatly depending on their location on the body, but the skin is classified as thick or thin based on the thickness of the epidermis alone. Thick skin is found only in areas where there is a lot of abrasion: palms, soles, digits; and has 5 epidermal layers. Thin skin is everywhere else and has 4 epidermal layers.
Most cells of the epidermis are keratin-producing cells, or keratinocytes. New cells are constantly produced by mitotic cell division in the basal layer. They then move towards the skin surface as they age and differentiate, changing shape, from cuboidal to flat. The distinct epidermal layers represent different stages of keratinocyte differentiation, from their birth to their death.
The spinous layer is characterized by presence of abundant desmosomes which connect keratin filaments of adjacent cells, anchoring them together, providing resistance to physical stress.
The granular layer is loaded with keratohyalin granules. These granules release several substances that cross-link keratin filaments, converting them into an impermeable keratin matrix. This process is known as cornification or keratinization, the result of which is the most superficial layer, the cornified layer, about 30 cells thick. These fully keratinized dead cells form the skin barrier. They are shed periodically from the surface as new cells are moving up. The entire epidermis is replaced every 30 to 40 days. The renewal process becomes slower with age but faster in injured skin, when cell proliferation is accelerated for wound healing.
The epidermis also contains immune cells, touch sensory cells and melanocytes. Melanocytes produce the pigment melanin and transfer it to keratinocytes. The amount of melanin produced is the major determinant of skin color. Melanin synthesis is stimulated by UV light and is thought to be a protective mechanism against UV radiation damage.
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Hey Kids, our skin is one of the most vital parts of our body but often it’s neglected for weird reasons. Watch the video as Dr. Binocs is here to explain how exactly your skin works. Sounds interesting, isn’t it? Take a look and do post your comments below.

Voice of Dr. Binocs – Joseph D’Souza
Creative Head/Written/Directed by Nitin Navale
Illustrators – Kalpesh Bamne, Mukesh Ishi, Rupesh Hire
Storyboard – Kalpesh Bamne
Animators – Rupesh Hire, Tushar Ishi
VFX Artist – Aliasgar Kagalwala
Background Score & SFX – Jay Rajesh Arya
Sound Engineer – Varad J. Khare
Producer – Neha Barjatya
Copyrights and Publishing: Rajshri Entertainment Private Limited
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Endocrine System, Part 1 – Glands & Hormones: Crash Course Anatomy & Physiology #23

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Hank begins teaching you about your endocrine system by explaining how it uses glands to produce hormones. These hormones are either amino-acid based and water soluble, or steroidal and lipid-soluble, and may target many types of cells or just turn on specific ones. He will also touch on hormone cascades, and how the HPA axis affects your stress response.

Pssst… we made flashcards to help you review the content in this episode! Find them on the free Crash Course App!

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Chapters:
Introduction: What are Hormones? 00:00
Endocrine System 1:48
Glands & Organs of the Endocrine System 2:42
Hormones Trigger Reactions in Target Cells 3:33
Water Soluble vs Lipid Soluble Hormones 4:16
How the Pancreas Regulates Blood Sugar 5:09
Hormone Cascades 6:05
Hypothalamic-Pituitary-Adrenal (HPA) Axis 6:30
Review 9:15
Credits 9:48

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