2022年专业英语试题 .pdf
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1、专业英语考查说明1. 成绩主要由以下部分组成:平时考勤(10 分)+上课回答问题( 10 分)+作业(10 分)+平时随堂测试( 20 分)+三篇短英文文章翻译( 50 分) 。2.三篇短英文文章翻译:(1)Title: Research and Realization of Healthcare Monitoring System Based on ARM7 and uC/OS-II Abstract: The research and realization of a multiple physiological parameter monitoring system based on A
2、RM7 processor and uC/OS-II embedded operating system is proposed in this paper, which realizes real- time acquisition, display and transmit of the patient s physiological parameters such as blood pressure, pulse, ECG, blood oxygen saturation, temperature and so on. The monitoring system adopts the A
3、RM7 as a core, which achieve real-time processing through multi-task scheduling. Monitor system comprises Ethernet communication interface, it can be conveniently access to the local hospital LAN and connects to the Internet to realize remote diagnosis and monitoring. Keywords: ARM7; uC/OS-II; Ether
4、net; monitoring system 1 Introduction: Patients play the most important role in medical system. For their treatment and rehabilitation, medical institutions placed on all their efforts to them. 1-3 In order to prevent and cure diseases and find diseases earlier, it is very important to real-time con
5、trol some important health parameters such as blood pressure, pulse, ECG, blood oxygen saturation and body temperature. We developed a healthcare monitoring system based on ARM7 and uC/OS-II, which includes a number of key functions, such as human physiological parameters detection, display and anal
6、ysis, abnormal state alarm and network communication. It can easily access to the Internet in the every corner of the world to achieve remote diagnosis and monitoring through real-time remote two-way communication between users and medical institutions. 2 System hardware design: The structure of har
7、dware is shown in Figure 1. Six parameters module can get human ECG, noninvasive blood pressure, blood oxygen, pulse rate, respiration and body temperature parameters through lead port, light finger and cuff. Embedded processor, which 名师归纳总结 精品学习资料 - - - - - - - - - - - - - - -精心整理归纳 精选学习资料 - - - -
8、- - - - - - - - - - - 第 1 页,共 7 页 - - - - - - - - - adopts ARM7 as a core, connects to six parameters module through serial port. ARM7 central processor catches and processes the data from six parameters module through multi-task scheduling. LCD module can display all kinds of graphical and numerica
9、l signals. This system can also be controlled under an external keyboard to store and send data to the network, and signal detection alarm lines will make a warn when the detected data beyond alarm lines. The controlling and processing core of the system is composed by the S3C44b0X from SAMSUNG base
10、d on ARM7TDMI core. S3C44b0X is a 16/32 bit high-performance RISC microprocessor, whose main frequency speeds up to 66 MHz. It incorporates 8 KB cache, LCD controller, UART 2-way, 4-channel DMA, five road with PWM timer, RTC controller, 8 - 1 O-bit ADC, IIC bus interface, IIS bus interface, Synchron
11、ous SIO interfaces and IO mouth including eight external interrupt source inputs. There are eight memory bank and each bank are addressable 32 M bytes.Its four operating modes diminish system power consumption and high level of integration helps system miniaturization. To achieve 10M Monitor Etherne
12、t connectivity, Ethernet controller chip adopts RTL L8019AS. It supports full-duplex mode with double network bandwidth efficiency, compatibles to the NE2000, built-in 16 KB cache memory. 10M bandwidth of Ethernet controller is sufficient for the purpose of monitor s real-time data transmission rate
13、s. (2) Title: A Laser-induced fluorescence optical fiber detection system for micro fluidic chip Abstract: Based on optic fiber beam sensor, a miniaturized laser induced fluorescence optical fiber detection system using solid-state laser (473nm) as excitation source is developed. The advantage of th
14、e LIF-D system are simple structure, small size, low cost, high sensitivity and high anti-disturbing. And the photon count method is used to improve the sensitivity of the detection. Using Sodium fluorescein as the test sample, distinct fluorescence signal with good repeatability is showed in the ex
15、periment. The concentration detection limit is up to 3 1013mol/L. the linear dynamic range is from 106to 1013mol/L. It also shown that there was a nicer linear relation between the peak values of fluorescence signal to Sodium fluorescein concentration. Its correlation coefficient is 99.9%. By changi
16、ng detection cells this integrated detection system can be applied in micro flow analysis and for the normal biotechnology analysis of DNA. Keywords: Laser-induced fluorescence, optic fiber sensor, micro-fluidic chip, detection system 名师归纳总结 精品学习资料 - - - - - - - - - - - - - - -精心整理归纳 精选学习资料 - - - -
17、- - - - - - - - - - - 第 2 页,共 7 页 - - - - - - - - - 1 Introduction: Micro-fluidic chips, also called miniaturized total analysis system ( TAS), are one of the research hotspot in the area of analysis chemical and analysis instrument. Compared the conventional separation and analysis methods with the
18、 micro fluidic chips, micro-fluidic chips have the advantages of higher analysis efficiency, faster separation speed, smaller dimensions, smaller sample and reagent consumption, lower applied voltage and detection limits. Therefore, Micro fluidic chips have considerable potential in analysis of biol
19、ogical molecules, such as proteins and DNA. Although a variety of conventional detection schemes have been used in these micro fluidic devices, including optical methods which employ laser-induced fluorescence (LIF), absorbance, chemilluminescence, electrochemical methods, mass spectrometric measure
20、ments, etc. A laser-induced fluorescence (LIF) detection mechanism which micro-fluidic chips generally employ has more selectivity and the sensitivity of the device. Traditionally, micro-fluidic chip is performed under a high magnification microscope equipped with a laser and an optical detector. De
21、spite it has reported that this scheme enables an excellent detect limit to be achieved (109Mol/L), it is difficult to microminiaturize and to integrate system due to the large volume of conventional lasers and optical components. It is also difficult to achieve a precise alignment of the various op
22、tical components because it is tine-consuming and complicated. The detection sensitivity of output signal is not enough high to obtain higher detection limit. Hence it is necessary to utilize optical fiber technology to fabricate a miniaturized optical detection system that is capable of executing t
23、he high-throughput analysis of bio-molecular such as protein and DNA. It is major challenge to integrate optical components onto the chip and microminiaturize the ultimate system size in the development of micro-fabricated optical detection devices. The traditional LIF detection system is bulky, so
24、an alternate strategy is developed to simplify the sophisticated optical system structure. Using optical fiber sensor in the optical detection system offered a promising approach for reducing the optical system size. Collins, et al, constructed a simple absorbance setup by directly orienting the red
25、 LED source above the separation micro channel. Compared with the conventional absorption system, in the micro fluidic system the collimation optics and filters for incidence of light were moved, while the background noise from stray light increased. Since optical fiber transmits light with minimal
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