Showing posts with label Projector. Show all posts
Showing posts with label Projector. Show all posts

Saturday, December 3, 2011

Physical Principle Of Operation Of An Automatic Blood Pressure Monitor

!: Physical Principle Of Operation Of An Automatic Blood Pressure Monitor

Automatic blood pressure (bp) monitors are an integral part of any vital signs monitor used in hospitals, critical care units, emergency rooms, and even homes. The reason is quite simple - While an EKG can give the representation of the electric signals in the heart muscle, the oximeter can give the oxygen content of the blood in the body, only the bp monitor is actually capable of measuring the actual effectiveness of the heart pumping blood into the system.

The importance of blood pressure measurement

In other words, both the EKG and the oximeter could be showing normal values, yet, without the proper blood pressure sensor reading, the patient's body cells would still not be receiving an amount of oxygen sufficient for normal functioning. Which means, the life of a patient would be endangered without us knowing.

Manual blood pressure meter

Before we look into the workings of an automatic meter, let's investigate how a manual blood pressure monitor, or NIBP monitor, or high blood pressure bp monitor works. The meter consists of the bp cuff that is filled with air gradually and presses on the main artery in the upper arm. The basic physics of the pressure meter reflects the interplay between the air pressure in the cuff and the air pressure in the artery. There are two principal pressures, the systolic, and the diastolic in the artery. The systolic is the maximal pressure in the artery, and the diastolic is the minimal pressure.

The simple principle of operation is this: When the cuff air pressure is higher than the systolic pressure, the cuff continually squeezes the artery until the blood flow into the lower arm is stopped, and there is no pulsation audible in the stethoscope. When the cuff air pressure is less than the diastolic pressure, the artery pressure always maintains the artery at its full size. In between these two pressures, the expansion and contraction of the artery follows the varying bp in the artery, and the pulsation is audible in the stethoscope attached to the arm.

So, in manual bp monitors, as the manual blood pressure cuff the air pressure is gradually increased up to the diastolic pressure, we begin to hear pulsation, and by further increasing the cuff air pressure we come to the higher, systolic pressure point, where the pulsation disappears again.

How does an automatic blood pressure (bp) monitor work?

The action of an automatic digital bp monitor is quite analogous to the operation of the manual pressure meter with a couple of differences:
First, for speed, automatic digital bp monitor will measure the diastolic pressure and the systolic pressure already on the first pass, while increasing the air pressure in the cuff. Second, the air will be provided to the digital bp cuff by an electric pump instead of the manual pump. Third, the pulsation will not be observed by hearing but rather by the built in microphones or other sensor types.


Physical Principle Of Operation Of An Automatic Blood Pressure Monitor

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Wednesday, October 26, 2011

How to Hook Up Two Monitors to Your PC

!: How to Hook Up Two Monitors to Your PC

If you'd like to know the simplest way to hook up two monitors to your PC, you've come to the right place. Most often it's easier than you'd think. At least it is, when you have all the necessary pieces of hardware to make it work. This article walks you through what connectors you need, and what workarounds are available if you ever find yourself longing for more.

The Bare Minimum

If you have a laptop, chances are you already have the necessary ports to hook up a second monitor. All you need to do is to match the existing video-out to what's on the external display. If DVI is available on your external display you'll find it the simplest of things to convert whatever your laptop has to it. Converter cables are available at around in major online stores, such as Amazon.

All popular Linux distributions, all versions of OS X and Windows XP or later are capable of stretching, cloning or extending your desktop to multiple displays. Once you connect your display to the VGA, DVI or HDMI port on your laptop, it should power up and the OS of your choice should greet you with the preferences window. That's where you set the right resolution and refresh rate, in case it's not picked up by your OS instantly.

If, however, you're using a desktop computer, you need to double-check that it's got at least two signal outputs on the video card. Some VGAs have more than two connectors, but it seldom means that you can use them all for a separate display. Usually, you can use any two to feed two monitors, or one monitor and a TV.

AMD Eyefinity video cards come with six video outputs, of which you can use any number simultaneously, which, unfortunately, is unique to this model line.

What if There are Too Few Connectors

Desktop PCs tend to have at least two connectors. If not, you can add a second video card through a PCI-E slot. If it's an older computer with an AGP port, you still have possibilities, even though the motherboard does not facilitate multiple video cards.

The same solution provides itself when you want to use two additional external monitors on a laptop, which has only one port.

You can either use other laptops and computers to act as your virtual monitor, or can use a USB video card. Virtual monitors are great when you have a few old computers laying around without any purposeful use.

On a Windows PC you can use MaxiVista to route video data through your local network and make --up to four-- separate computers or laptops act as if they were monitors connected directly to your main system. The integration is rather tight but is limited to 2D applications, and require a small amount of CPU power to process the data stream.

Your second option, the USB video card, on the other hand allows you to fit any computer with external monitors regardless of available ports. Every computer worth its salt comes with at least one USB slot and a port for video-out. By using a USB VGA, you can make those two outputs the only two you'll ever need to drive external displays.

Always add the maximum number of monitors to the main system, if you can, and expand the workspace through virtual monitors and USB video cards later. This way you achieve the best support for hardware accelerated content, like games or CAD software.

MaxiVista costs in the range of , and each USB to VGA/DVI/HDMI adapter sets you back by about the same amount.

Conclusion

As with every multi-monitor setup, follow ergonomic and safety guidelines to ensure the best experience and minimize the risk of strain on the eyes and your back. Try to stick with displays from the same manufacturer, and same model whenever possible. It simplifies the setup process considerably, and gives you a consistent brightness, color representation and contrast throughout all your displays.

Most laptops will let you use the internal screen and one more. Most desktop PCs can already support two external monitors. If they don't, you can add more video cards, either through an internal port in case of the desktop PC, or through the USB port on laptops.


How to Hook Up Two Monitors to Your PC

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