Concept explainers
A 35-N hand and forearm are held at a 45° angle to the vertically oriented humerus. The CG of the forearm and hand is located at a distance of 15 cm from the joint center at the elbow, and the elbow flexor muscles attach at an average distance of 3 cm from the joint center. (Assume that the muscles attach at an angle of 45° to the bones.)
a. How much force must be exerted by the forearm flexors to maintain this position?
b. How much force must the forearm flexors exert if a 50-N weight is held in the hand at a distance along the arm of 25 cm? (Answers: a. 175 N; b. 591.7 N)
a)
To determine: The force exerted by the forearm.
Answer to Problem 3AP
The force exerted by the forearm is
Explanation of Solution
Calculation:
Consider torque acts on the counter clockwise direction for forearm of the hand will be taken as positive and the torque acts on the clockwise direction for joint center of the elbow will be taken as negative.
Express the magnitude of the net torque acts on the joints.
Here,
Rewrite the equation (I) for the net forces acts on the joints of the hand.
Here,
Substitute
Therefore, the force exerted by the forearm is
b)
To determine: The force on the forearm flexors exerts on the weight hold in the hand.
Answer to Problem 3AP
The force on the forearm flexors exerts on the weight hold in the hand is
Explanation of Solution
Calculation:
Rewrite the equation (I) for the net forces acts on the weight holds in the hand.
Here,
Substitute
Solve the relation for
Therefore, the force on the forearm flexors exerts on the weight hold in the hand is
Want to see more full solutions like this?
Chapter 13 Solutions
BASIC BIOMECHANICS
- The adjacent diagram displays the joint reaction force between the acetabulum and femoral head for the right leg during single leg stance. Also shown are the abductor muscle force (AMF), the weight of the body above the level of the stance hip (W) and their corresponding moment arms with respect to the joint centre (D and D1). If the right leg weighs 1/6 of total body weight, the ratio of D1 to D is 2.4, and AMF is angled at 30 degrees relative to the vertical, calculate the: Abductor muscle force (2 marks). Hip joint reaction force (2 marks). Express both answers as multiples of total body weightarrow_forwardThe flexors of the leg include all of the following except the: Question 29 options: biceps femoris rectus femoris semimenbranosus semitendinosus saritorius Question 30 The muscle fiber arrangement of the rectus femoris is: Question 30 options: bipennate and has greater potential for force bipennate and creates tension through a greater range fusiform and creates tension through a greater range fusiform and has greater potential for force.arrow_forwardA patient is completing a knee extension exercise. The patellar tendon inserts on the tibia 2.92 cm away from the knee joint axis of rotation. The foot is 40.38 cm away from the knee joint axis of rotation. What is the foots arc length through the exercise if the patellar tendon insertion moves through an arc length of 7.80 cm? Report you answer in meters.arrow_forward
- Maximal muscle force changes continuously throughout the elbow flexion according to the joint angle. True Falsearrow_forwardIdentify the joint actions caused by the concentric contractions of the following muscles. Check appropriate columns. You might have to check off more than one box per muscle:arrow_forwardAn isometric exercise is one in which the joint angle does not change during the application of muscle force. For instance, you can join your hands together, pushing down with one hand and pushing up with the other. In each arm, the muscles that provide the force are connected to the bones of the arm by tendons. If you increase the forces but keep the angles the same, the muscles will still contract. Explain how this is possible.arrow_forward
- Think of two functional activities that can improve the strength of flexor digitorum superficialis / flexor digitorum profundus. Provide a short description and justificationarrow_forwardTo do Left hip extension in the Sagittal plane, the (name the muscle) would have to lie (A –rWhere?) relative to the joint, and since it can only (PULL ), the fibers would have to run (PERPENDICULAR) to the (D ) axis to achieve the desired movement. choose from: A. Pick from: Anterior, Posterior, Medial, Lateral, Superior, Inferior B. Write in the word “PULL” C. Write “perpendicular” D. Pick from :Anterior - posterior, Superior-inferior or Medio - Lateralarrow_forwardExplain the answer biomechanicallyarrow_forward
- If an individual does training with only the right knee extensor muscles, it is common to see increase in strength in knee extension force for the right leg and an increase in strength in the knee extension force of the left leg (although the increase in force is typically not to the same extent as the force increase in the right leg) a.) True b.) Falsearrow_forwardDescribe the qualities of the muscle fiber arrangement and tendon attachments of biceps femoris. Discuss synergist(s) and antagonist(s) muscles and their attachment sites of biceps femoris. Describe when synergists and antagonists contract compared to the biceps femoris.arrow_forwardYou are trying to jump from a crouched position (knee fully flexed), 1) list all of the muscles at the knee and hip that would move you from this position to in the air. 2) using the principle of active insufficiency please also outline the timing of the muscle force for the knee and the hip (i.e. what muscles provide the most force early in the movement, when the knee and hip are both more flexed, and what muscles provide the most force later in the movement, when the hip and knee are both more extended)arrow_forward
- Human Physiology: From Cells to Systems (MindTap ...BiologyISBN:9781285866932Author:Lauralee SherwoodPublisher:Cengage Learning