Oxyhemoglobin binds oxygen in red blood cells, transporting it throughout the body.
氧合血红蛋白在红细胞中结合氧气,将氧气运输到全身各部位。
The partial pressure of oxygen in
oxyhemoglobin at sea level is approximately 160 mmHg.
海平面上氧合血红蛋白中的氧气分压大约为160毫米汞柱。
Anaemia results from a low level of
oxyhemoglobin, leading to fatigue and weakness.
贫血是由于氧合血红蛋白水平低导致的,表现为疲劳和虚弱。
During exercise,
oxyhemoglobin levels increase to meet the body's oxygen demands.
运动时,氧合血红蛋白浓度会提高以满足身体对氧气的需求。
Oxyhemoglobin saturation, or the percentage of oxygen bound, is monitored in patients with respiratory disorders.
对于呼吸系统疾病患者,监测氧合血红蛋白的饱和度(即结合氧气的比例)是很重要的。
The
oxyhemoglobin curve shows the relationship between oxygen content and arterial blood pH.
氧合血红蛋白曲线描绘了氧气含量与动脉血液pH值之间的关系。
In emergency situations, administering oxygen to the patient in the form of
oxyhemoglobin can be life-saving.
在紧急情况下,通过给予氧合血红蛋白形式的氧气可以挽救生命。
Pulmonary disorders can affect
oxyhemoglobin levels, leading to difficulty in breathing.
肺部疾病可能会影响氧合血红蛋白的水平,导致呼吸困难。
The process of oxygenation involves converting hemoglobin to
oxyhemoglobin.
这个过程是指将血红蛋白转化为氧合血红蛋白。
Oxyhemoglobin plays a crucial role in maintaining cellular respiration and energy production.
氧合血红蛋白在维持细胞呼吸和能量产生中起着关键作用。
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