MBBS · Human Anatomy

Muscles and innervation

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Skeletal muscle — on-site reading

This reference extract addresses Skeletal muscle, a related subject. It does not cover every part of Muscles and innervation.. The article introduction is reproduced here, so you do not need to leave MedAtlas to read it. It may not match the latest official medical guidance.

Skeletal muscle (commonly referred to as muscle) is one of the three types of vertebrate muscle tissue, the others being cardiac muscle and smooth muscle. They are part of the musculoskeletal system, and typically are attached by tendons to the bones of a skeleton. The skeletal muscle cells (myocytes) are much longer than in the other types of muscle tissue, and are also known as muscle fibers. The tissue of a skeletal muscle is striated – having a striped appearance due to the arrangement of the sarcomeres.
A skeletal muscle contains multiple fascicles – bundles of muscle fibers. Each individual fiber and each muscle is surrounded by a type of connective tissue layer of fascia. Muscle fibers are formed from the fusion of developmental myoblasts in a process known as myogenesis resulting in long multinucleated cells. In these cells, the nuclei, termed myonuclei, are located along the inside of the cell membrane. Muscle fibers also have multiple mitochondria to meet energy needs.
Muscle fibers are in turn composed of myofibrils. The myofibrils are composed of actin and myosin filaments called myofilaments, repeated in units called sarcomeres, which are the basic functional, contractile units of the muscle fiber necessary for muscle contraction. Muscles are predominantly powered by the oxidation of fats and carbohydrates, but anaerobic chemical reactions are also used, particularly by fast twitch fibers. These chemical reactions produce adenosine triphosphate (ATP) molecules that are used to power the movement of the myosin heads.
Skeletal muscle comprises about 35% of the human body by weight. The functions of skeletal muscle include producing movement, maintaining body posture, controlling body temperature, and stabilizing joints. Skeletal muscle is also an endocrine organ. Under different physiological conditions, subsets of 654 different proteins as well as lipids, amino acids, metabolites and small RNAs are found in the secretome of skeletal muscles.
Skeletal muscles are substantially composed of multinucleated contractile muscle fibers (myocytes). Considerable numbers of resident and infiltrating mononuclear cells are also present. In terms of volume, myocytes make up the great majority of skeletal muscle. Skeletal muscle myocytes are usually very large, being about 2–3 cm long and 100 μm in diameter. By comparison, the mononuclear cells in muscles are much smaller. Some of the mononuclear cells in muscles are endothelial cells (which are about 50–70 μm long, 10–30 μm wide and 0.1–10 μm thick), macrophages (21 μm in diameter) and neutrophils (12-15 μm in diameter). However, in terms of nuclei present in skeletal muscle, myocyte nuclei (myonuclei) may be only half of the nuclei present, while nuclei from resident and infiltrating mononuclear cells make up the other half.
Considerable research on skeletal muscle is focused on the muscle fibers. Interest has also focused on the different types of mononuclear cells of skeletal muscle, as well as on the endocrine functions of muscle.

How this connects to Human Anatomy

To study this topic responsibly, identify its normal structure or function, distinguish the main mechanism from its observable consequences, and ask which data can test a competing explanation. The subject foundations below outline these connections without pretending to be a specialist textbook chapter.

Text credit: Wikipedia contributors, “Skeletal muscle”, original article · authors & revision history · CC BY-SA 4.0. Unmodified opening extract, accessed 24 September 2026. This Wikipedia-derived section is provided under CC BY-SA 4.0; the independent MedAtlas notes and design are separate works.

On-site diagram

Muscles and innervation · visual study map

Scalable vector illustration. Labeled conceptual map, not a precise anatomical, histological or diagnostic image.
TOPIC LEARNING MAP · NOT AN ANATOMICAL PLATE01 · BackgroundSkeletal muscle (commonly referred to asmuscle) is one of the three types ofvertebrate muscle tissue, the…02 · Main conceptThey are part of the musculoskeletalsystem, and typically are attached bytendons to the bones of a…03 · Related processThe skeletal muscle cells (myocytes) aremuch longer than in the other types ofmuscle tissue, and are also…04 · Study connectionThe tissue of a skeletal muscle isstriated – having a striped appearancedue to the arrangement of the…Muscles and innervationRead the full text below the visual · all reading is on this website

The wording in this learning map is adapted from the attributed Wikipedia background section below (CC BY-SA 4.0).

Study foundation 01

What the underlying subject studies

Anatomy describes the three-dimensional organization of the human body. Start by placing the structure in a region, identifying boundaries and neighboring organs, and tracing its vascular supply and innervation. A drawing viewed from the front does not necessarily show the patient’s left and right in the same places as an axial scan.

Study foundation 02

How mechanisms and evidence connect

Link gross anatomy to histology and embryological origin when they help explain function. A nerve, muscle, vessel or organ cannot be understood from its name alone: its course, attachments and relationships provide the practical meaning. Anatomic variation and imaging orientation must always be considered.

Study foundation 03

How to develop a sound explanation

For revision, sketch a region from memory, label its principal structures, and compare your drawing with an approved anatomical atlas. A conceptual diagram is useful for relationships but cannot represent precise surgical anatomy or all anatomical variants.

References and verification (optional)

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