微型機械人15分鐘測腸惡菌

肚屙都會死人?難辨梭菌感染是最常見的醫院腸道疾病,香港有逾一成住院兩星期的病人中招。受感染的病人會腹瀉及大便出血,死亡率高達兩成六。及早診治是關鍵,中文大學研發出一款醫學檢測的微型機械人,利用孢子合成技術主動偵測病人大便的毒素,最快十五分鐘有診斷結果,較目前檢測技術要等一至兩天快捷及準確。

Date: 
Thursday, February 14, 2019
Media: 
Oriental Daily News

中大團隊申創科撥款 開發自動化平台增效率

微型機械人在手術、治療、診斷和檢測等醫療應用上有巨大潛力,是現今科學界其中一個重要發展方向。中文大學團隊近日成功研發出一款醫學檢測微型機械人,其構造獨特,可進行主動偵測,最快15分鐘便可準確檢測難辨梭菌釋出的毒素,有望取代需時一兩天的傳統檢測方法。團隊正申請創新及科技基金撥款,開發微型機械人自動化檢測平台,以提升臨床化驗的效率和準確度。

Date: 
Thursday, February 14, 2019
Media: 
Wen Wei Po

中大研發醫學微型機械人 最快15分鐘測出梭菌毒素

中大工程學院及醫學院研究團隊,研發一款醫學檢測微型機械人,最快15分鐘可檢測出難辨梭菌釋出的毒素,較原來檢測需時兩至三日為快。中大消化疾病研究所主任沈祖堯表示,難辨梭菌可透過接觸患者排泄物傳播,病毒會引致腹瀉、發燒、大便出血,少數會引發敗血症,導致患者死亡,相信新技術可以縮短診斷時間,可更早對症下藥。

Date: 
Thursday, February 14, 2019
Media: 
Sing Pao

CUHK Develops Medical Micro-robots for Diagnosis Able to Detect Clostridium Difficile Bacterial Toxins in 15 Minutes

Date: 
2019-02-13
Thumbnail: 
Body: 
Microrobots have attracted much interest as an emerging medical tool which has great potential in surgery, therapy, imaging and diagnostics. A collaborative research team from the Faculty of Engineering and Faculty of Medicine has recently developed fungi spore-inspired microrobots to detect Clostridium difficile (C. difficile) bacterial toxins. The microrobots are active sensors capable of detecting toxins accurately within 15 minutes, based on a specific combination. The finding has been published in Science Advances, a scientific journal of the American Association for the Advancement of Science (AAAS). The team has also submitted a proposal to the Innovation and Technology Fund (ITF) on the development of a fully-automated, microrobots-based, quick diagnostics platform that can improve the efficiency and accuracy of clinical tests.
Early discovery of C. difficile patients helps infection control
C. difficile infection is the most common hospital acquired enteric infection. The toxins secreted by C. difficile will cause diarrhea, fever and hematochezia. In some cases, patients may develop life-threatening peritonitis and sepsis. The infection most commonly affects people who have recently been treated with antibiotics, while other major risk factors include old age, chronic illness and inflammatory bowel disease. 
Studies conducted by Faculty of Medicine at CUHK suggest an increasing trend in the incidence of C. difficile infection which has placed a huge burden on the public health system in Hong Kong. The incidence of infection increased from 15.4 cases per 100,000 persons in 2006 to 36.3 cases per 100,000 persons in 2014. Over 10% of patients who have been hospitalised for two weeks are infected with C. difficile. 
Currently, the stool samples of hospitalised patients with diarrhea are being tested in the laboratory to determine the presence of C. difficile. The process normally requires 1 to 2 days. 
Professor Joseph SUNG, Mok Hing Yiu Professor of Medicine and Director of the Institute of Digestive Disease at CUHK, stated, “C. difficile spreads by contact with the excreta of infected persons or contaminated surfaces. Since the balance of healthy and pathogenic bacteria in the patient’s bowel has been damaged, it is hard to cure and easy to relapse. The development of a fast, accurate, simple and inexpensive test tool to shorten the diagnosis time allows doctors to give appropriate treatment and hospitals to carry out infection management measures in the earliest possible time, which can effectively prevent the spread of bacteria.” 
The research team led by Professor Li ZHANG, Associate Professor, Department of Mechanical and Automation Engineering at CUHK, has developed fluorescent magnetic spore-based microrobots (FMSMs) to shorten the detection time. Each of these devices carry functionalised carbon dots that emit fluorescence, the intensity of which will gradually decrease during “on-the-fly” reaction with C. difficile toxins. The FMSMs unique and intricate three-dimensional architecture enables easy spreading and swarming in diluted stool samples. Such a continuous and efficient movement acts as active searching, thus facilitating higher detection efficiency and sensitivity than static counterparts. This enables the reaction even if the sample has a low concentration of toxins. Also, when applying an external magnetic field, FMSMs can perform a controllable movement in the stool samples and be tracked with automation in an easy manner. 
Professor Zhang said, “In the experiment, all FMSMs placed into stool samples infected by C. difficile no longer emit fluorescence in just 15 minutes. This new motion-based detection technique provides a promising solution to the rapid clinical sensing to supplement, or potentially replace the current detection methods in clinic. This new technology eventually provides opportunities to develop a multiplex new quick-sensing system not only for C. difficile toxins, but also for many bioanalytical fields including food, chemicals and early diagnosis of other bacteria-infected diseases. Based on this novel microrobotic sensing probe, we will move forward to construct an automated microrobotic platform for practical diagnostic application that can be used in clinics and hospitals.”
CUHK committed to enhancing medical technology focusing in medical robotic 
In recent years, the Hong Kong Government has been committed to promoting innovation and technology (I&T). These extremely exciting developments include the establishment of I&T clusters on healthcare technologies, artificial intelligence, and robotic technologies. CUHK is a leading institute for these areas in Asia. The establishment of the Chow Yuk Ho Technology Centre for Innovative Medicine aims to facilitate interdisciplinary collaboration between the Faculty of Engineering and the Faculty of Medicine, and to develop innovative technologies for clinical applications. Recently, CUHK has deepened ties with three leading international institutes for transdisciplinary medical robotics research to reshape the future of diagnosis and treatment.
Professor Zhang has devoted himself to the development of micro- and nano-robots, especially for medical use. Currently, he is leading his research team to improve the performance and functions of these micro-devices by paying close attention to their structural design, material properties, and control system.
 
This article was originally published on CUHK Communications and Public Relations Office website.

The collaborative research team from the Faculty of Engineering and Faculty of Medicine at CUHK will move forward to construct an automated microrobotic platform for practical diagnostic application that would increase detection efficiency and accuracy. Professor Joseph SUNG (left), Mok Hing Yiu Professor of Medicine and Director of the Institute of Digestive Disease at CUHK, and Professor Li ZHANG (right), Associate Professor, Department of Mechanical and Automation Engineering at CUHK, are core members of the research team

The main components of the diagnostics platform are electromagnetic coils (inside black box) and the computer.

Microrobots under the microscope.

 

Filter: Dept: 
Faculty
MAE

European Innovation Academy_2018

Date: 
2018-07-08
Thumbnail: 
Body: 

Six students were sponsored for the entrepreneurship program held in Turin, Italy during 8 July to 27 July 2018.   University students from around the world were mentored by professors and industrial leaders for three weeks to realize their innovative ideas through real product design and marketing plans. 

 

Filter: Dept: 
ELITE

Summer Experiential Programme in Beijing 2018 (Yao Class)

Date: 
2018-07-02
Thumbnail: 
Body: 

The Faculty of Engineering nominated 20 students to join the Summer Experiential Program in Beijing with Yao Class during 02 July – 20 July 2018.  Tsinghua University offered two summer courses titled “The Physics of Information” and “Computation Modeling for Environment and Ecology Management” for Yao Class students and welcomed CUHK engineering students to register for the courses.  

CUHK engineering students were deeply impressed by the academic excellence and self-motivated learning attitudes of Yao class students.   

 

Filter: Dept: 
ELITE

Globex 2018

Date: 
2018-06-29
Thumbnail: 
Body: 

GLOBEX is a collaboration between CUHK Engineering and the Peking University.   A group of 20 students were nominated to join the program which was held during 29 June – 29 July 2018.  Globex is a well-established academic program, and students are offered a wide list of courses to choose from.   The courses are taught by renowned professors worldwide and some courses are associated with field trips.  

Prior to the commencement of classes, students can opt to join a 3-day Beijing Tour to familiarize themselves with the city.  


 

Filter: Dept: 
ELITE

Exoskeleton Robotics in Stroke Rehabilitation

Exoskeleton robots are wearable devices that can be equipped in parallel to the user's limb to augment human performance, or to amplify residual joint movement of the impaired limb using powered actuators. These robots can be used to facilitate ADL of stroke patients as assistive devices, as well as therapeutic devices being used in combination with conventional physiotherapy. 

Date: 
Thursday, December 20, 2018
Media: 
SiliconIndia Healthcare December 2018 issue

中大委任黃定發為工程學院院長 任期五年1月4日生效

香港中文大學校董會通過委任黃定發為工程學院院長,1月4日起生效;黃定發並同時獲委任為卓敏計算機科學與工程學教授。

Date: 
Thursday, January 3, 2019
Media: 
HK01

兩名中大學者獲頒IEEE院士榮銜 包括VeriGuide開發者金國慶教授

香港中文大學今日(6日)宣布,工程學院教授曾漢奇及金國慶,獲工程學國際權威組織電機及電子工程師學會(IEEE)頒授2019年度院士榮銜,表揚他們分別在「非線性矽光子學及先進的波導光柵耦合器」及「機器學習在社交計算中理論和應用」研究的重大貢獻。
其中,金國慶為現任中大工程學院副院長(教育),他曾積極開發「維誠」(VeriGuide)防抄襲系統,宣揚學術誠信操守。
Date: 
Sunday, January 6, 2019
Media: 
HK01

Pages