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英國(guó)公司提供利用計(jì)算機(jī)進(jìn)行醫(yī)療診斷和治療的醫(yī)療技術(shù)
時(shí)間:2012-09-18 00:00:00 來源:本站原創(chuàng) 字號(hào):[ ]

英國(guó)公司提供利用計(jì)算機(jī)進(jìn)行醫(yī)療診斷和治療的醫(yī)療技術(shù)

    英國(guó)一家公司研發(fā)了一款利用計(jì)算機(jī)進(jìn)行醫(yī)療診斷和治療的醫(yī)療技術(shù)。此系統(tǒng)可以鑒定相關(guān)疾病。例如,系統(tǒng)能夠識(shí)別出人體內(nèi)30個(gè)器官,每個(gè)器官1015個(gè)左右的典型醫(yī)學(xué)指癥??梢杂糜谠\斷疾病,并有助于進(jìn)一步理解糖尿病,心血管疾病,偏頭痛,發(fā)展性失讀癥,倒退型孤獨(dú)癥兒和睡眠呼吸暫停。

 系統(tǒng)通過分析蛋白質(zhì)吸收和發(fā)出的光線進(jìn)行判斷?;诎仓迷谥参镄陨窠?jīng)系統(tǒng)的傳感器的變化,并結(jié)合了生理學(xué)的數(shù)學(xué)模型。

 內(nèi)置傳感器在生物化學(xué)中是不可缺少的。根據(jù)積累效應(yīng),多傳感器會(huì)影響植物性神經(jīng)系統(tǒng)的功能,視覺對(duì)顏色的認(rèn)知和對(duì)比認(rèn)知的改變對(duì)應(yīng)著具體病癥,且與用藥、植物性神經(jīng)系統(tǒng)的功能以及病理學(xué)癥候有關(guān),聯(lián)系到不同基因性狀(蛋白質(zhì))的表達(dá),以及其程度(不同基因連接著不同的蛋白質(zhì)和變異)。相應(yīng)的對(duì)顏色認(rèn)知的測(cè)試也能夠與病理癥候相聯(lián)系作為一種診斷的原理,例如,診斷所有常見的疾病。

 此系統(tǒng)可以從病狀發(fā)生前的表現(xiàn)來診斷疾病的進(jìn)展。比起傳統(tǒng)的疾病診測(cè)方法,此系統(tǒng)可以做到早診斷、更全面、更快速、花費(fèi)更低廉??梢源婊蚝Y檢使用,且成本更低。

 創(chuàng)新方面:

-低成本的方法來診斷和治療特定的疾病

-更快速的治療過程

-非入侵式方式

-更加全面的診斷結(jié)果

-可以根據(jù)病發(fā)前癥狀進(jìn)行診斷

 英文原文:

A cognitive computer-based medical technology with diagnostic and therapeutic scope

(12 GB 43O3 3PRC)

 A UK company has developed a cognitive computer-based medical technology with diagnostic and therapeutic scope. The system is able to identify the emergence of diseases i.e. typically 10-15 medical indications in each of 30 organs. The system enables to diagnose and contribute to an improved understanding of diabetes, cardiovascular conditions, migraine, developmental dyslexia, regressive autism, and sleep apnoea.

It focuses upon the light which is absorbed and emitted by proteins. The system is based upon the influence of sensory input upon the autonomic nervous system and incorporates a mathematical model of physiological systems.

Sensory input is essentially a biochemical process. Accordingly the cumulative effect of multi-sensory input influences the function of the autonomic nervous system. Altered visual perception, of colour and of visual contrast, is associated with specific disease states and the use of drugs i.e. the function of the autonomic nervous system and the onset of pathologies. This involves the level of protein expression (genotype) and the rate at which proteins react (phenotype) - each pathology being linked to different proteins and altered reaction conditions. Accordingly a cognitive test of colour perception can be linked to the onset of pathologies and used as a diagnostic principle i.e. for the diagnosis of all common pathologies.

The system appears to enable to diagnose the progression of disease from its earliest presymptomatic origins. It may be able to diagnose earlier, more comprehensively, better, quicker and at significantly less cost than orthodox medical tests. It offers a parallel and cost-effective alternative to genetic screening.

Innovative Aspects:

- Cost effective method to diagnose and treat certain diseases

- Faster diagnostic process

- Non-invasive

- More comprehensive diagnostic outcomes

- Can diagnose from the presymptomatic level

 

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