SAQMG2

SAQMG2

SAQMG2


J. R.
This flashcard set covers advanced medical topics at the university level, focusing on the biomechanics of the human body, particularly the interaction between muscles, bones, joints, and ligaments. It delves into the mechanics of motion, the impact of weight and stress on various body segments, and the role of cartilage and skin in overall body function. The set is invaluable for medical students and professionals seeking to understand the intricate details of human anatomy and physiology, especially in relation to movement and structural integrity.
Flashcards
267
Students
4
Language
English
Category
Medical
Level
University
Created / Updated
10.07.2019 / 26.06.2022

Flashcards

Why is the scapulothoracic articulation not a joint in the truest sense?

The scapulothoracic articulation is not a joint in the truest sense - there are no direct bony or ligamentous connections.

If in the above examination of the mechanics of anterior dislocation of the glenohumeral articulation, the magnitude of the applied force was 100 N, what must the magnitude of the resistance force be if it is to prevent a dislocation?

The resistance force must be 10 times the magnitude of the applied force, that is 1000N.

Complete the maximum ranges of motion of the elbow.

Flexion-extensionExtension: 0°Flexion: 140°Range: 140°Pronation-SupinationPronation: 70°Supination: 80°Range: 150°

By sketching a diagram of the arm decide which ligament will prevent an elbow dislocating in a fall to the side with the arm straight so that it breaks the fall.

Lateral collateral ligament (ligament at the elbow)

Could the problem be solved without first deducing the direction of the elbow joint force?

Yes, the elbow joint force could be assumed to have both horizontal and vertical components. Summing the horizontal force components would then give a result of zero for the horizontal elbow joint component and summing the vertical forces would give a negative result if the vertical component as defined as acting upwards.

Express the flexor muscle force and the elbow joint force found in the worked example as ratios of the subject’s total body weight.

Total body weight = 9.8 × 85 = 833 N.The flexor muscle force is 820 N, therefore it is equal to 0.98 of total body weight.The elbow joint force is 760 N, therefore it is equal to 0.91 of total body weight.

Comment on the effect on the joint force if the flexor muscle joint force was not acting vertically.

If the flexor muscle force did not act vertically then the elbow joint force would need to have an equal but opposite horizontal component to maintain static equilibrium.

List the bones that form the proximal and distal rows of the wrist.

The bones that form the proximal row of the wrist are the triquetrum, lunate and scaphoid and those that form the distal row are the hamate, capitate, trapezoid and trapezium.

How is the lever arm of the flexor carpi ulnaris muscle increased?

The lever arm of the flexor carpi ulnaris muscle is increased by the pisiform bone.

What are the principal motions of the wrist joint?

The principal motions of the wrist joint are flexion-extension and adbuction-adduction.

At which articulation does most wrist extension occur?

Most wrist extension occurs at the radiocarpal joint.

What is the most functional position for an immobilised wrist joint?

The most functional position for an immobilised wrist joint is around 15 degrees of extension.

How does the maximum amount of flexion at the metacarpophalangeal joint vary from finger to finger?

The maximum amount of flexion at the metacarpophalangeal joints generally decreases from the fifth to the second joint. At the fifth joint (little finger) it is around 95 to 100 degrees and at the second joint (index finger) it is about 70 degrees.

Name the five regions of the spine.

The five regions of the spine are the cervical, thoracic, lumbar, sacrum and coccyx.

Try to estimate the amount of range of rotation in your lumbar and thoracic spine. First of all stand up in front of a wall with your arms folded and twist gently from side to side whilst keeping your arms fixed relative to your chest. Note, how the angle between your folded arms and the wall changes. Does this give a true representation of the range of rotation in your lumbar and thoracic spine?

No. When standing and gently twisting from side to side motion also occurs in the lower limbs. Do the same again but this time sitting down. This should giveyou a better estimate of the range of rotation in your lumbar and thoracic spine.

As the moment arm of the upper body weight increases does the loading on the spine increase or decrease?

The loading on the spine increases as the moment arm of the upper body weight increases.

Do tendons connect muscles to bone, or bone to bone?

Tendons connect muscles to bone.

What type of forces must tendons and ligaments withstand?

Tendons and ligaments must withstand very high tensile forces.

What are tendon and ligament cells called?

Tendon and ligament cells are called fibroblasts.

What percentage of dry weight does collagen account for?

Collagen accounts for at least 75% of the dry weight.

How does the arrangement of collagen fibres differ between tendons and ligaments?

Collagen fibres are arranged completely in parallel in tendons whilst in ligaments they are partially branched and interwoven.

What functions does the ground substance perform?

The ground substance functions to stabilise the collagenous structure and provides lubrication and spacing for the sliding of collagen fibrils.

What is the loose connective tissue which binds together the bundles of collagen fibres in a tendon called?

In tendons, the loose connective tissue that binds together the bundles of collagen fibres is called paratenon.

What type of cartilage is present at bone insertion sites?

Fibrocartilage is present at bone insertion sites.

Name the three regions of a typical tensile stress-strain curve fortendons and ligaments.

The three regions of a typical tensile stress-strain curve for tendons and ligaments are the toe region, linear region, and failure region.

Do tendons or ligaments have the greatest tensile strain?

Ligaments have a greater ultimate tensile strain than tendons.

What is strain rate sensitivity?

Strain rate sensitivity is the sensitivity of mechanical properties to the rate of application of strain.

By referring to Table 1, estimate the maximum levels of normalphysiological stress and strain.

The maximum levels of normal physiological stress and strain will be up to around 27 MPa and 3% in tendons, and 33 MPa and 5% to 15% in ligaments.

Approximately how far can the anterior cruciate ligament beelongated before rupturing completely?

The anterior cruciate can be elongated by approximately 7 mm before rupturing completely.

Is bone tissue more or less sensitive to strain rate than tendon orligament tissue?

Bone tissue is more strain rate sensitive than tendon or ligament tissue.

Using Figure 12 estimate how many times greater the stress is in the contracted ligament compared to the normal ligament when both are elongated to 20.5 mm.

The stress in the contracted ligament is 11 times greater than that in the normal ligament when both are elongated to 20.5 mm. From diagram, 33 mm divided by 3 mm equals 11.

After a period of immobilisation, does the ligament tissue or its insertion sites recover quickest?

After a period of immobilisation, the ligament tissue recovers quicker thanits insertion sites.

How does the diameter of collagen fibres change with maturation?

The diameter of collagen fibres increases with maturation.

How does the collagen content of tendons and ligaments change with ageing?

The collagen content of tendons and ligaments decreases with ageing.

What are bone cells called?

Bone cells are called osteocytes.

Which component of bone gives it its characteristic hardness andrigidity?

The inorganic component, which consists mainly of crystals of calciumphosphate, gives bone its characteristic hardness and rigidity.

Which type of bone tissue contains haversian canals and why are they needed?

Compact bone tissue contains haversian canals. These contain blood vesselswhich are needed to supply the bone tissue with nutrients.

What happens to a material under a tensile load?

When a material is under a tensile load it will elongate.

What is the definition of strain?

Strain is defined as the change in length divided by the original length.

What are the SI units of stress?

The SI units of stress are newtons per metre squared (N m-2).

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