跟读练习: Respiratory System 5, Podcast on breathing - 通过视频学习英语口语
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Now ventilation describes the process whereby air is sucked into the lungs and blown out of the lungs.
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Ventilation is the physical transfer of air in and out of the lungs.
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This is the process we would normally simply refer to as breathing.
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And it's one of the fundamental things that we need to understand, this mechanism of ventilation.
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because if we understand the mechanism of ventilation we're in a position to do something about it
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when that mechanism goes wrong and you will come across many situations in your clinical life where there's problems of ventilation.
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So you might come across patients with chest injuries of various types such as a pneumothorax
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or a haemothorax or a pulmonary contusion and you'll certainly come across people with airways diseases such as chronic bronchitis,
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emphysema, chronic asthma, acute asthma, pneumonia, various other pulmonary infections.
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So this is something you're going to come across almost on a daily basis
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and of course it fits in quite nicely with our priorities in clinical care which are airway, breathing and circulation.
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So the patent airway
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and the ability to ventilate the lungs is always right at the top of our priority of clinical interventions.
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Now first of all we need to think a little bit about the anatomy.
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So we have the chest wall, now there's 12 pairs of ribs in the chest wall,
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12 ribs on either side connected by the sternum at the front
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and the ribs are connected to the sternum via the costal cartilage and in between the ribs we have the intercostal muscles.
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So costal means to do with ribs So the intercostal muscles are the muscles between the ribs.
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And at the bottom of the thoracic cavity, separating the thoracic cavity from the abdominal cavity below,
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we have the diaphragm which is a domed sheet of muscle.
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Now the first thing we need to do is to breathe in the process of inspiration.
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So if you put your hands on your front of your chest
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and take a deep breath in I think you can probably see that your hands move up and out.
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So to facilitate the process of inspiration the external intercostal muscles contract
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and that has the effect of pulling the rib cage
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that is the chest wall or the thoracic wall up
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and out and at the same time if you put your hand on your tummy and you take a breath in
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if you take a deep breath in with your hand on your tummy i think you can probably see
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that your hand moves up the way so during inspiration the chest wall moves up and out and the abdomen moves outwards.
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Now the reason that the abdomen is moving outwards is that the diaphragm is moving down.
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So to facilitate inspiration the diaphragm flattens and in doing
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so moves down and that's going to press on the contents of the abdominal cavity
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and that's what makes your tummy go out when you take a breath in.
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So we have a situation where the ribs
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and intercostal muscles have pulled the chest wall up and out and the diaphragm is flattened.
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Now these two measures are going to increase the volume in the chest, they're going to increase intrathoracic volume.
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So the volume in the chest is now greater.
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Now if the volume in the chest is greater let me ask you what is
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that going to do to the pressure inside the chest, what is that going to do to intrathoracic pressure?
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Well if the volume is greater the pressure is going to be reduced
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because now the air molecules that were in the chest have got a greater volume to move around in.
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So as the ribs go up and out the diaphragm goes down the volume increases but the pressure decreases
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And what this means is the pressure inside the lungs
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which of course are located inside the thoracic cavity is now lower than the atmospheric pressure
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and as a result of this air is going to be
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sucked in from the external atmosphere where the air pressure is relatively high into the lungs where the pressure is lower
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as a result of the expansion of the thoracic cavity.
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So air is actually sucked into the lungs.
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We are negative pressure ventilators.
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We ventilate the lungs because we generate a negative pressure in the lungs and the air is sucked in.
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That's good because
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that means fresh air comes in with plenty of oxygen ready
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to be absorbed into the blood in the process of gaseous exchange.
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and of course we depend on this constant supply of oxygen to support all of our energy generating processes throughout the body.
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So oxygen from that inhaled air will go into the blood from the air in the lungs
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and in the same way carbon dioxide generated by metabolic processes
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throughout the body will diffuse from the blood into the air in the lungs.
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So this means that the air that we inhaled
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that was high in oxygen and low in carbon dioxide is now lower in oxygen but higher in carbon dioxide.
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So we need to breathe it out again so the air can be refreshed again.
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Now this process of expiration or breathing out is actually facilitated in two ways.
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The first is that the lungs themselves are very elastic so
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if you blow a lung up just like a balloon it will contract all on its own because it has elastic walls.
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The small air sacs called the alveoli have elastic tissues in their walls
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and they will naturally contract down again
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and as the alveoli contract down that's going to decrease the volume of the air inside these alveolar air sacs.
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If you decrease the volume that will increase the pressure causing the air to be blown out.
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So it happens on the scale of the small elastic air sacs
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but it also happens on the scale of the entire thoracic cavity
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because when you breathe out your chest wall will move down and in.
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The intercostal muscles will relax and the chest wall will naturally fall down
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and in and at the same time as this the diaphragm will go up.
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Now when the diaphragm goes up it's relaxing so relaxation causes the diaphragm to dome up the way.
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It's the contraction of the diaphragm that causes it to flatten
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and move down during the process of inspiration but now we're breathing out
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so all the diaphragm has to do is relax and it will assume it's upward projecting domed position.
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So the chest wall goes down and in and the diaphragm goes up
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and the combination of these two movements is going to decrease the volume in the thoracic cavity.
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So now we have more air molecules in a given space so that's going to increase the pressure.
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So to breathe out, chest wall down and in, diaphragm up, therefore the volume is going to be decreased,
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therefore the pressure is going to be increased.
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And this has the effect of increasing the pressure inside the lungs in the thoracic cavity.
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It increases the pressure above the atmospheric pressure
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and as a result of this the air is going to be blown out of the chest.
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So we We inspire by generating negative intrathoracic pressures
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and we expire by generating positive intrathoracic pressures facilitated by the movement of the chest wall and the movement of the diaphragm.
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That is the basic mechanism of how air gets in and out of the lungs.
背景介绍
在这段视频中,讲者深入探讨了呼吸系统,特别是通气的机制。通气是空气进出肺部的过程,是我们通常所说的呼吸。理解这一机制对我们日常的临床护理工作至关重要,因为在许多情况下,患者可能会出现通气的问题,如气胸、血胸及慢性支气管炎等肺部疾病。对呼吸机制的理解让我们能够在患者出现问题时及时采取措施。
日常交流的五个常用短语
- 通气(Ventilation):空气进出肺部的过程。
- 吸气(Inspiration):吸入空气的过程。
- 胸壁(Chest Wall):包括肋骨、肌肉等结构。
- 膈肌(Diaphragm):分隔胸腔与腹腔的重要肌肉。
- 内胸压力(Intrathoracic Pressure):胸腔内部的气压。
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跟读法 (Shadowing) 是一种有科学依据的语言学习技巧,最初开发用于专业口译员的培训,并由多语言者Alexander Arguelles博士普及。这个方法简单而强大:您在听英语母语原声的同时立即大声重复——就像是一个延迟1-2秒紧跟说话者的影子。与被动听力或语法练习不同,跟读法强迫您的大脑和口腔肌肉同时处理并模仿真实的讲话模式。研究表明它能显着提高发音准确性,语调,节奏,连读,听力理解和口语流利度——使其成为雅思口语备考和真实英语交流最有效的方法之一。