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.
Cartes-fiches
267
Utilisateurs
4
Langue
Anglais
Catégorie
Médecine
Niveau
Université
Créé / Mis à jour
10.07.2019 / 26.06.2022

Cartes-fiches

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.

What are link segment models made up of?

Linked segment models are made up of body segments.

What are the two main assumptions that are usually adopted for a link segment model?

Two main assumptions usually adopted for a link segment model are that the body segments are rigid and the joints are frictionless.

What is measured and what is calculated in inverse dynamics?

In inverse dynamics the motion is measured and the resultant force iscalculated.

Name the three types of forces that act on a body segment.

The three types of forces that act on a body segment are external, internal and inertial.

Under what circumstances is it justifiable to treat a link segment model as quasi-static?

It is justifiable to treat a link segment model as quasi-static only when theaccelerations are small.

Estimate the length of your upper and lower limbs using your height and the data in Figure 9. How do these estimates compare with the actual length of your upper and lower limbs?

The results of this SAQ are dependent on your own dimensions. As an exampleI will use the following dimensions, height = 193 cm, measured upper limblength = 75 cm, and measured lower limb length = 100 cm.Length of upper limb is calculated as follows using the ratios given in Figure 9:LUPPER = (0.186 + 0.146 + 0.108) H = 0.440 × 193 = 85 cmLength of lower limb is calculated as follows:LLOWER = (0.186 + 0.146 + 0.108) H = 0.530 × 193 = 102 cmIf the calculated limb lengths are compared to measured limb lengths it can be seen that the calculated lower limb lengths are reasonable estimates. However, the calculated upper limb length is 10 cm out. This illustrates the diversity of human dimensions and why standardised data sets should only be used when actual measurements are not available.

Calculate the mass of the thigh and the position of its centre of mass relative to its proximal and distal ends, given that the totalbody mass of the subject is 80 kg and direct measurements of the thigh yielded a segment length of 390 mm.

To calculate the mass of the thigh, mTHIGH, the ratio reported in Table 1 is used:mTHIGH = 0.100mBODY = 0.100 × 80 = 8.0 kgTo calculate the position of the centre of mass of the thigh relative to itsproximal end, IPROXIMAL, the ratio, 0.433, reported in Table 2 is used:IPROXIMAL = 0.433ITHIGH = 0.433 × 390 = 169 mmTo calculate the position of the centre of mass of the thigh relative to itsproximal end, IDISTAL, the ratio, 0.567, reported in Table 2 is used: IDISTAL = 0.567ITHIGH = 0.567 × 390 = 221 mmThe mass of the thigh is 8.0 kg, and its centre of mass is located 169 mm distal to the greater trochanter and 221 mm proximal to the femoral condyles.Note that the centre of mass is closer to the proximal end than to the distal end. This is mainly due to the shape of the thigh which narrows towards its distal end so that more mass is distributed towards the proximal end. The position of the centre of mass is also dependent on the densities of the various tissues, such as bone, muscle and fat, and how they are distributed.

Calculate the moment of inertia of the lower leg and foot complex about its centre of mass, its proximal end and its distal end,given that the mass of the subject is 75 kg and the length of the lower leg and foot complex is 450 mm. Comment on the difference in radius of gyration about the proximal end and distal end.

Calculating the mass of the lower leg and foot complex, m, using the ratio,0.061, in Table 1:m = 0.061 × 75 = 4.575 kgCalculating the radius of gyration about the centre of mass, kCM, using the ratio 0.416, given in Table 2:kCM = 0.416L = 0.416 × 450 × 10-3 = 0.1872 = 0.19 mCalculating the moment of inertia about the centre of mass, ICM:ICM = mAkCM = 4.575 × 0.1872 × 0.1872 = 0.1603 = 0.16 kg m2Calculating the radius of gyration, kP, using the ratio 0.735, and moment ofinertia, IP, about the proximal end:kP = 0.735L = 0.735 × 450 × 10-3 = 0.33075 = 0.33 mIP = mkP = 4.575 × 0.33075 × 0.33075 = 0.50048 = 0.50 kg m2Calculating the radius of gyration, kD, using the ratio 0.572, and moment ofinertia, ID, about the distal end:kD = 0.572 × L = 0.572 × 450 × 10-3 = 0.2574 = 0.26 mID = mkD = 4.575 × 0.2574 × 0.2574 = 0.3031 = 0.30 kg m2The radius of gyration about the proximal end is larger than the radius ofgyration about the distal end because more mass is distributed further from the proximal end than the distal end.

When a distal segment moves relative to a proximal segment what happens to the insertion point and the line of action of a muscle that connects the two segments?

The insertion point of the muscle which connects the two segments does not change. However, the line of action of the muscle line changes as the two segments move relative to one another.

If the sign of the inter-segment force is positive does this mean that it is acting to pull the segments apart or push themtogether?

If the sign of the inter-segment force is positive then it means that it is acting to push the segments together.

Why is the joint force generally much larger than the intersegment force?

The joint force is generally much larger than the inter-segment force because it includes muscle forces.

Write down the definitions for the inter-segment force, the joint force, the muscle force, the bone-on-bone force and the ligament force.

The inter-segment force is the resultant of all the forces crossing the jointbetween two segments.The joint force is the force acting between two segments at the joint.The muscle force is the force produced by the muscles crossing the joint.The bone-on-bone force is the force acting between the bones that form a joint.The ligament force is the force carried by ligaments, joint capsules and muscles that are not contracting.

What is the relationship between the net external joint moment and the net internal joint moment?

The net external joint moment is equal and opposite to the net internal jointmoment.

If in the previous worked example the magnitude of the mass attached to the pulley system has doubled how would the quadriceps moment change in order to maintain static equilibrium?

If the mass was doubled then the quadriceps moment would need to bedoubled to maintain static equilibrium.

What are the interacting filaments in sarcomeres called?

The interacting filaments in the sarcomeres are called the actin and myosinfilaments or the thin and thick myofilaments.

At approximately what muscle length is the maximum developed tension achieved?

The maximum active muscle tension is produced when the muscle lengthis approximately equal to the resting length of the muscle.

What is the difference between a concentric and an eccentric muscle contraction?

In a concentric contraction the muscle is shortening and in an eccentriccontraction the muscle is lengthening.

Is the muscle force for a certain level of activation greater for concentric or eccentric contraction?

For a certain level of activation, a muscle will produce a greater forceduring an eccentric contraction than during a concentric contraction.

Calculate the physiological cross-sectional area for the gastrocnemius specimen in the previous worked example for pennation angles of 0° and 30° and comment on how the physiological cross-sectional area is related to pennation angle.

Thus, as the pennation angle increases the physiological cross-sectional area decreases according to the cosine function.

What is electromyography?

Electromyography is the study of the electrical signal associated with thecontractions of muscles.

Is there a relationship between EMG and muscle force?

There is a relationship between EMG and muscle force. However, it is onlypossible to characterise this relationship under controlled conditions.

What is the distribution problem?

The distribution problem is the problem of how the total muscle force isdistributed between all the muscles crossing a joint.

Name the three segments of the lower limb.

The three segments of the lower limb are the thigh, leg and foot.

Name the three major joints of the lower limb

The three major joints of the lower limb are the hip, knee and ankle.

State the two functions of the joints of the lower limb.

The two main functions of the joints of the lower limb are movement andweight bearing.

What type of joint is the hip joint?

The hip joint is a ball-and-socket type synovial joint.

What are the two functions of synovial fluid?

Synovial fluid lubricates the joint and provides nutrients to the articularcartilage.

Why is the hip joint intrinsically stable?

The hip joint is intrinsically stable due to its shape, its strong joint capsuleand the surrounding ligaments and muscles.

Étudier