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Dr.Kaan Yücel http://fhs121.org Introduction to systematic anatomy
Dr.Kaan Yücel http://fhs121.org Introduction to systematic anatomy

... vessels make up the blood transportation network. This network is called the cardiovascular system. The heart pumps blood throughout the body. The blood vessels are a closed network of tubes. They transport the blood. There are three types of blood vessels. Arteries transport blood away from the hea ...
Dr.Kaan Yücel http://fhs121.org Introduction to systematic anatomy
Dr.Kaan Yücel http://fhs121.org Introduction to systematic anatomy

... vessels make up the blood transportation network. This network is called the cardiovascular system. The heart pumps blood throughout the body. The blood vessels are a closed network of tubes. They transport the blood. There are three types of blood vessels. Arteries transport blood away from the hea ...
INTRODUCTION TO SYSTEMIC ANATOMY
INTRODUCTION TO SYSTEMIC ANATOMY

... vessels make up the blood transportation network. This network is called the cardiovascular system. The heart pumps blood throughout the body. The blood vessels are a closed network of tubes. They transport the blood. There are three types of blood vessels. Arteries transport blood away from the hea ...
Document
Document

... Page | 10 ...
Dr.Kaan Yücel http://fhs121.org Introduction to systematic anatomy
Dr.Kaan Yücel http://fhs121.org Introduction to systematic anatomy

... vessels make up the blood transportation network. This network is called the cardiovascular system. The heart pumps blood throughout the body. The blood vessels are a closed network of tubes. They transport the blood. There are three types of blood vessels. Arteries transport blood away from the hea ...
The maternal muscle determinant in the ascidian egg
The maternal muscle determinant in the ascidian egg

... encodes a zinc-finger transcription factor that positively regulates the expression of target genes. macho-1-binding cis-elements have been identified in musclespecific zygotic genes. Maternally localized macho-1 appears to have originated in the ascidian lineage, but it activates a muscle-forming d ...
Comprehensive Boards I
Comprehensive Boards I

... The peripheral vasculature under the least control of the sympathetic nervous system are the capillaries Which substance has the greatest permeability across a lipid bilayer of the cell membrane? Water In the sarcomere structure of skeletal muscle, the H-band contains myosin fibrils During the middl ...
Therapies for sarcopenia and regeneration of old skeletal muscles
Therapies for sarcopenia and regeneration of old skeletal muscles

... fidelity of the normal tissue in vivo.”16 One specific example is that the behavior of satellite cells is heavily influenced by adjacent cells such as fibroblasts with crucial dynamic interactions between these cells types in vivo,25 yet fibroblasts are absent from most in vitro experiments using sa ...
Cell
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... LaBarge and Blau, 2002; Sherwood et al., 2004). However, these experiments have all used bone marrow transplantation, which is highly invasive, and associated ...
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... The _______________ opposes the actions of the deltoid, biceps brachii, and triceps to prevent upward subluxation of the humerus.  Teres minor ...
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CYCLING PERFORMANCE TIPS -- Compiled from Various Sources
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... oxygen difference (the oxygen content of blood leaving the heart minus that returning to the heart and thus the amount being extracted by the working skeletal muscles) and the maximal cardiac output (the maximal heart rate times the volume of blood pumped per beat). This is called the Fick equation. ...
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Unit 2 review sheets
Unit 2 review sheets

... arrive (spatial summation) thus making the neuron closer to threshold and more likely to fire an action potential. For a somatic motor neuron, this means the skeletal muscle it innervates will also be receiving more end plate potentials and thus contracting more. o Reduces the effectiveness of the s ...
Training for Endurance and Strength: Lessons from Cell Signaling
Training for Endurance and Strength: Lessons from Cell Signaling

... training include increases in wet mass (6), fiber crosssectional area (51), protein content (56), RNA content (56), and the capacity to generate force (12,28). In contrast, decreasing the intensity and increasing the duration of exercise results in different adaptations within the muscle. This type ...
Diversity In Dentition
Diversity In Dentition

... Cows belong to a family of animals known as ruminants. Ruminants are animals with cloven hooves that chew their cud. Other examples of ruminants are sheep, deer, goats, giraffes and antelopes. Cows have 32 teeth (24 molars, 6 incisors and 2 canines), but instead of top front teeth, they have a denta ...
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skeletal ms
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... •During contraction, heat production in the ms is about 100-1000 times during rest. •40-50% of the energy liberated is converted into work. •50-60% of the energy is liberated as heat at the onset of and during contraction of the muscle → so heat production occurs in two phases: 1) Initial heat: incl ...
Quadriceps-Strains-Constusions-Handout
Quadriceps-Strains-Constusions-Handout

... contraction of hip flexion/knee extension e.g. deceleration • Excessive passive stretching • Activation of maximally stretched muscle e.g. kicking • Muscle fatigue may play a role • Rupture most often at musculotendinous junction • Rectus femoris most commonly strained ...
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3 slides

... function together (e.g. skin) Organ System: Two or more organs that work together to perform a specific function (e.g. digestive system) ...
Reconciling genetics and lineage
Reconciling genetics and lineage

... programs can be uncoupled in both mutants. A closer examination of Myf5:Myod double mutants, however, reveals another mystery. Temporal myogenesis is also uncoupled. In other words, some embryonic but not fetal muscles are made in these Myf5:Myod double mutants. This is another peculiar phenotype. I ...
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Myocyte



A myocyte (also known as a muscle cell) is the type of cell found in muscle tissue. Myocytes are long, tubular cells that develop from myoblasts to form muscles in a process known as myogenesis. There are various specialized forms of myocytes: cardiac, skeletal, and smooth muscle cells, with various properties. The striated cells of cardiac and skeletal muscles are referred to as muscle fibers. Cardiomyocytes are the muscle fibres that form the chambers of the heart, and have a single central nucleus. Skeletal muscle fibers help support and move the body and tend to have peripheral nuclei. Smooth muscle cells control involuntary movements such as the peristalsis contractions in the stomach.
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