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Glossary: Breathing & Exchange of Gases | Biology for Grade 11 PDF Download

Breathing

  • Breathing (respiration): The process of exchange of O2 from the atmosphere with CO2 produced by the cells is called breathing, commonly known as respiration.

Respiratory Organs

  • Gills: Special vascularised structures called gills (branchial respiration) are used by most of the aquatic arthropods and molluscs.
  • Lungs: Vascularised bags called lungs (pulmonary respiration) are used by the terrestrial forms for the exchange of gases.
  • Sound Box: Larynx is a cartilaginous box which helps in sound production and hence called the sound box.

Mechanism of Breathing

  • Inspiration: Oxygen from fresh air taken by lungs and diffused into the blood.
  • Expiration: CO2 given up by venous blood in the lungs is sent out to exterior.
  • Diaphragm: A muscular, membranous partition separating the thoracic cavity from the abdominal cavity.
  • Spirometer: The volume of air involved in breathing movements can be estimated by using a spirometer which helps in clinical assessment of pulmonary functions.
  • Tidal volume (TV): Volume of air taken in/given out during normal respiration (500 mL.)
  • Inspiratory Reserve Volume (IRV): Additional volume of air inspired by a forcible inspiration. 2500mL to 3000mL.
  • Expiratory Reserve Volume (ERV): Additional volume of air, a person can expire by a forcible expiration.
  • Residual volume (RV): Volume of air remaining in the lungs even after a forcible expiration (1100 mL to 1200 mL)
  • Inspiratory capacity (IC) = (TV + IRV) Total volume of air a person can inspire after a normal expiration.
  • Expiratory Capacity:  Total Volume of air a parson can expire after a normal inspiration E.C. = TV + ERV
  • Functional Residual Capacity: Volume of air that will remain in lungs after a normal expiration (FRC) = (ERV + RV)
  • Vital Capacity (VC) = (ERV + TV + IRV) or the maximum volume of air a person can breathe out after a forced inspiration.
  • Total Lung Capacity: It includes RV, ERV, TV and IRV or vital capacity + residual volume.

Exchange of Gases

  • Partial Pressure: Pressure contributed by an individual gas in a mixture of gases is called partial pressure and is represented as pO2 for oxygen and pCO2 for carbon dioxide.

Transport of Gases

  • Haemoglobin: Haemoglobin is a red coloured iron containing pigment present in the RBCs. 
  • Oxyhaemoglobin: O2 can bind with haemoglobin in a reversible manner to form oxyhaemoglobin.
  • Oxygen dissociation curve: A sigmoid curve is obtained when percentage saturation of haemoglobin with O2 is plotted against the pO2 . This curve is called the Oxygen dissociation curve.
  • Carbamino haemoglobin: Compound formed in RBCs when CO2 combine with haemoglobin.

Regulation of Respiration

  • Respiratory rhythm centre: A specialised centre present in the medulla region of the brain called respiratory rhythm centre is primarily responsible for this regulation.
  • Pneumotaxic centre: Another centre present in the pons region of the brain called pneumotaxic centre can moderate the functions of the respiratory rhythm centre.

Disorders of Respiratory System

  • Asthma: Asthma is a difficulty in breathing causing wheezing due to inflammation of bronchi and bronchioles.
  • Emphysema: Emphysema is a chronic disorder in which alveolar walls are damaged due to which respiratory surface is decreased.
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FAQs on Glossary: Breathing & Exchange of Gases - Biology for Grade 11

1. What is the process of breathing?
Ans. Breathing is the process by which air is taken in and expelled from the lungs. It involves the inhalation of oxygen-rich air and the exhalation of carbon dioxide, a waste product of cellular respiration.
2. What are the main respiratory organs involved in breathing?
Ans. The main respiratory organs involved in breathing are the lungs. These are paired organs located in the chest cavity and are responsible for the exchange of gases between the air and the blood.
3. How does the mechanism of breathing work?
Ans. The mechanism of breathing involves the contraction and relaxation of the diaphragm and intercostal muscles. During inhalation, the diaphragm contracts and moves downward, while the intercostal muscles contract and lift the ribcage, expanding the chest cavity. This creates a negative pressure, causing air to rush into the lungs. During exhalation, the diaphragm and intercostal muscles relax, allowing the lungs to recoil and expel air.
4. What is the process of gas exchange in the respiratory system?
Ans. Gas exchange in the respiratory system occurs in the alveoli, which are tiny air sacs in the lungs. Oxygen from the inhaled air diffuses into the capillaries surrounding the alveoli, where it binds to hemoglobin in red blood cells. At the same time, carbon dioxide, a waste product of cellular respiration, diffuses from the capillaries into the alveoli to be exhaled.
5. How are gases transported in the body?
Ans. Gases are transported in the body through the circulatory system. Oxygen binds to hemoglobin in red blood cells and is transported to cells throughout the body. Carbon dioxide, on the other hand, is transported in the blood as bicarbonate ions or dissolved in plasma. This allows for the exchange of gases between the lungs and body tissues.
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