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Oxyhemoglobin

195 Sentences | 10 Meanings

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Oxyhemoglobin is an important factor in determining a person's oxygen saturation levels.
The oxygen-carrying capacity of blood is dependent on the amount of oxyhemoglobin present.
Oxygen is transported from the lungs to the body's tissues by binding to oxyhemoglobin.
A lack of oxyhemoglobin can lead to a condition called anemia, which can cause fatigue, weakness, and other symptoms.
Oxyhemoglobin saturation refers to the percentage of hemoglobin molecules that have oxygen bound to them.
Doctors can measure the levels of oxyhemoglobin in a patient's blood to check for any issues.
Oxyhemoglobin has a bright red color, while deoxyhemoglobin is darker in color.
The concentration of oxyhemoglobin in the bloodstream can be measured using a pulse oximeter.
Carbon dioxide can affect the affinity of hemoglobin for oxygen and alter the formation of oxyhemoglobin.
Oxyhemoglobin levels can be affected by various diseases, such as anemia.
Oxyhemoglobin levels can be affected by certain medications, such as carbon monoxide poisoning.
The bright red color of arterial blood is due to the presence of oxyhemoglobin.
The oxygen affinity of oxyhemoglobin can be modulated by allosteric effectors such as carbon dioxide and hydrogen ions.
Pulse oximetry is a noninvasive method for measuring oxyhemoglobin saturation.
The presence of oxyhemoglobin is necessary for oxygen to be transported to body tissues.
When oxygen binds to the heme group of oxyhemoglobin, the molecule changes shape slightly.
The scientist discovered that certain mutations in the hemoglobin gene can affect the binding of oxygen to oxyhemoglobin.
Oxyhemoglobin levels can be affected by conditions such as anemia and carbon monoxide poisoning.
The amount of oxyhemoglobin in the blood is an important factor in measuring a person's health.
The medical student studied the process of oxygen binding to the heme group to form oxyhemoglobin.
The formation of oxyhemoglobin occurs when oxygen binds to the heme group of hemoglobin.
The rate of oxygen delivery to tissues is determined by the oxygen saturation of oxyhemoglobin in the blood.
Oxyhemoglobin levels can be measured with a pulse oximeter, a non-invasive medical device.
Oxyhemoglobin saturation can be influenced by genetic polymorphisms in the hemoglobin genes.
Oxyhemoglobin is formed when oxygen binds to hemoglobin in the lungs.
High altitude can cause a decrease in oxyhemoglobin levels due to the lower oxygen concentration in the air.
A decrease in the level of oxyhemoglobin can lead to hypoxia, or low oxygen levels in the body.
The oxygen-carrying capacity of blood is determined by the concentration of oxyhemoglobin.
Oxyhemoglobin saturation can be used as a biomarker for the diagnosis and monitoring of various diseases such as chronic obstructive pulmonary disease and pulmonary hypertension.
The oxygen dissociation curve of oxyhemoglobin can be shifted to the right or left by changes in pH or temperature.
Oxyhemoglobin levels can be measured through the use of a pulse oximeter, which measures the saturation of hemoglobin with oxygen.
The presence of methemoglobin in the blood, which cannot bind oxygen, can result in a decrease in oxyhemoglobin saturation.
The binding of oxygen to the iron atom in the heme group of hemoglobin results in the formation of oxyhemoglobin.
The lab technician measured the oxyhemoglobin concentration in the blood sample.
The athlete's high levels of oxyhemoglobin allowed them to perform at their best.
The doctor ordered a test to measure the patient's oxyhemoglobin saturation.
Oxygen delivery to the tissues depends on the concentration of oxyhemoglobin in the blood.
Oxyhemoglobin helps transport oxygen from the lungs to the rest of the body.
Carbon monoxide can bind with hemoglobin and prevent the formation of oxyhemoglobin.
Oxyhemoglobin binds to oxygen in the lungs and releases it in tissues.
Some medical conditions can interfere with the production of oxyhemoglobin.
Hemoglobin is a protein that binds with oxygen to form oxyhemoglobin.
The dissociation of oxyhemoglobin in the tissues leads to the release of oxygen for use by the cells.
Oxyhemoglobin levels can be affected by factors such as altitude, exercise, and smoking.
The presence of oxyhemoglobin in red blood cells is what gives them their bright red color.
Carbon monoxide can bind to the heme group of oxyhemoglobin and form carboxyhemoglobin.
Hemoglobinopathy is a group of genetic disorders that affect the production or function of hemoglobin and can lead to abnormal oxyhemoglobin formation.
Oxyhemoglobin is formed when oxygen binds to the heme group of hemoglobin.
The oxygen dissociation curve describes the relationship between the partial pressure of oxygen and the saturation of oxyhemoglobin.
A lack of sufficient oxyhemoglobin can lead to hypoxemia, which is a condition characterized by low oxygen levels in the blood.
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