The state of impaired oxygen regimeis defined as:
- Anoxia.
- Hyperoxia.
- Hypoxemia
- Hypoxia
- Hypoxidosis.
What is “hypoxidation”?
- Reduced PO2 in arterial blood.
- Reduced oxygen content in arterial blood.
- Reduced oxygen demand that is not due to hypoxia.
- Reduced amount of oxyhaemoglobin.
- State of impaired oxygen regime.
What is “hypoxia”?
- Disrupted oxygen exchange.
- Oxygen toxicity.
- Oxygen deficiency.
- Reduced oxygen needs.
- Limited aerobic capacity.
What is the main functional aspect of hypoxia?
- Decreased oxygen reserves in the body.
- Adequate oxygen deficiency.
- Oxygen hyporesponsiveness.
- Hyperadaptation to oxygen insufficiency.
- Inadequate oxygen supply/oxygen demand.
Which is NOT a cause for the development of local hypoxia?
- Arterial spasm.
- Arterial hyperemia.
- Arterial compression.
- Arterial obstruction.
- Arterial occlusion.
What is the pathophysiological classification of hypoxia?
- Hypoxic, hemic, circulatory, O2 utilization, mixed.
- Compensated, uncompensated,subcompensated, overcompensated.
- Fulminant, acute, subacute, chronic.
- Local, organic, systemic, generalized.
- Pulmonary, cardiovascular, blood, mixed.
What could cause hypoxic hypoxia?
- Acute haemoglobin deficiency.
- Blocked cytochrome oxidase.
- Increased oxygen export by the lungs.
- Increased CO2 production.
- Insufficient pulmonary oxygen transfer.
Exogenic hypoxic hypoxia is a result of:
- Disturbance in respiratory lung function.
- Decreased pO2 in the inhaled air.
- Damaged respiratory center.
- Increased pO2 in the exhaled air.
- Disorders of the respiratory muscles.
Which index is primary decreased in exogenous hypoxic hypoxia
- Alveolar pO2.
- Inspiratory pO2.
- Arterial pO2.
- Oxyhemoglobin saturation.
- Alveolar oxygen transfer.
Which statement refers to exogenous hypoxic hypoxia?
- Respiratory system is seriously compromised.
- Respiratory system is intact.
- Must be accompanied by hypercapnia.
- Dramatically reduction of hemoglobin amount.
- There is a risk for atelectasis.
The main pathogenetic unit of hypoxic hypoxia is:
- Arterial hypoxemia.
- Arterial hypercapnia.
- Arterial hypoxia.
- Arerial hyperoxia
- Arterial disoxia.
Main mechanisms disturbing oxygen intake in endogenous hypoxic hypoxia are:
- General alveolar hypoventilation.
- Decreased ventilation/perfusion ratio.
- Impaired oxygen diffusion.
- Oxygen insufficiency in the inhaled air.
- 1, 2, 3.
- 1, 2, 3, 4.
Hemic (blood) hypoxia is generally devided into:
- Exogenous and endogenous.
- Congenital and acquired.
- Compensated and decompensated.
- Anemic and inactivity.
- Hypo- and hyperoxic.
Hemic (blood) hypoxia is characterized with:
- Arterial hypoxia.
- Reduced oxygen transporting capacity of the blood.
- Arterial hypercapnia.
- Impaired oxygen utilization from cells.
- Independently reduced tissue pO2.
Carboxyhemoglobinemia develops as a result of:
- CO poisoning.
- KCN poisoning.
- vit B12 deficiency.
- Sulfonamides overdose.
- NO deficiency.
Which of the following characteristics is not typical for CO?
- High haemoglobin affinity.
- Cytochromes inhibitionin tissues.
- Strong pyrogenic effect.
- Shifting oxyhaemoglobin dissociationcurveto the left.
- Carboxyhemoglobin formation.
Which statement refers to methemoglobin?
- It is irreversible compound.
- Iron is a third valence.
- It is formed in the presence of CO.
- Congenital form is hemoglobin F.
- Physiologic methemoglobinemi ais not significant for the body.
The main pathogenetic unit of hemic hypoxia is:
- Decreased pO2 inarterial blood.
- Decreased blood volume.
- Decreased oxygen capacity of blood.
- Reduced erythrocytes life.
- 1, 3, 4.
hat is the general effect from the development of circulatory hypoxia?
- Methemoglobin reductase block.
- Decreased ventilation/perfusion ratio.
- Effective hemoglobin deficiency.
- Direct mitochondrial decoupling.
- Tissue hypoperfusion.
Which of the following is NOT a cause for circulatory hypoxia development?
- Arterial hyperemia.
- Arterial spasm.
- Decreased blood flow to tissues in Right-Sided Heart Failure (RSHF).
- Blockage of arterial vessel by thrombus.
- Thromboembolic development.
Which statement refers to ischemic type circulatory hypoxia?
- There is oxygen substrate deficiency.
- Shortened blood/tissue contact time.
- Reduced cellular O2 utilization.
- Generalized edema development.
- General indicator is venous hyperoxia.
The main pathogenetic unit of circulatory hypoxia is:
- Reduced effective hemoglobin.
- Systolic cardiac dysfunction.
- Reduced effective circulatory volume.
- Decreased hematocrit.
- Blood depots depletion.
In which hypoxia type the processes of O2 intake, transport and deliveryto the cells are not disturbed?
- Circulatory hypoxia.
- Hypoxic hypoxia.
- Hemic hypoxia of anemic type.
- O2 utilization hypoxia.
- Hemic hypoxia of inactivity type.
Basic mechanisms for development of O2 utilization hypoxia are:
- Increased mitochondrial oxygen reduction.
- Decreased mitochondrial oxygen reduction.
- Reduced efficiency of the oxygen energy production.
- Insufficient functional energy provision.
- 2, 3.
- 1, 2, 4.
Toxic suppression of transelectronases leads to:
- Decoupling of oxidative phosphorylation.
- Mitochondrial lysis.
- Non-utilization of the delivered oxygen.
- Tissue oxygen redistribution.
- Reverse oxygen transport.
Tissue hypoxia is the final result of:
- Reduced physical activity.
- Absolute starvation.
- Each metabolic abnormality.
- Severe and/ or progressive systemic hypoxia
- Progressive,oxygen-dependent enzyme dysfunctions
Which of the following pulmonary reactions has no adaptive function?
- Alveolar hyperventilation.
- Absolute starvation.
- Each metabolic abnormality.
- Severe and/ or progressive systemic hypoxia
- Euler-Liljestrand reflex.
What is the aim of lung adaptations?
- Easier CO2 export.
- Increasing pCO2 above 44 mmHg.
- Increasing arterial pO2
- Increasing pulmonary arteries pressure.
- Increased converting enzyme formation.
What is the aim of cardio-circulatory adaptations:
- Increasing alveolar ventilation.
- Improved tissue perfusion.
- Increased oxygen transporting capacity of the blood.
- Alteration in tissue enzymes activity.
- They are not essential.
Increased oxygen transporting capacity of the blood is a result of:
- Increased blood pressure.
- Increased tissues vascularization.
- Compensatory heart hypertrophy.
- Compensatory diminished erithrolysis.
- Compensatory erythropoesis.
Which are tissue-cellular adaptations caused by reduced oxygen delivery to cells?
- Increasing oxygen transport.
- Improvement of tissue perfusion.
- Increasing utilization of supplied oxygen.
- Improving oxygen delivery to vital organs.
- Inhibition of key cell enzymes.