《電子技術應用》
您所在的位置:首頁 > EDA與制造 > 業界動態 > Imec與CARDIS合作伙伴開發出獨特的光子醫療器械——用于篩查動脈硬度和診斷心血管疾病

Imec與CARDIS合作伙伴開發出獨特的光子醫療器械——用于篩查動脈硬度和診斷心血管疾病

2019-01-17
關鍵詞: 光子 醫療器械 IMEC

  比利時魯汶和根特,2019年1月5日 — 世界領先的納米電子和數字技術研究與創新中心imec、根特大學、Medtronic和其他CARDIS項目合作伙伴共同開發了一款基于硅光子學的原型醫療器械,用于篩查動脈硬度和診斷動脈狹窄、心力衰竭等心血管疾病。INSERM在法國巴黎的蓬皮杜歐洲醫院(Georges Pompidou European Hospital)針對100名患者成功完成了臨床可行性研究。

  Cardiovascular disease (CVD) is among the leading causes of death globally. Early identification of individuals at risk allows for early intervention to halt or reverse the pathological process. Assessment of arterial stiffness by measurement of aortic pulse wave velocity (aPWV) is included in the latest guidelines for CVD risk prediction and it is a key marker for hypertension. However, no tools are available today to easily screen a large number of patients for arterial stiffness at a GP’s office. As a consequence, many individuals remain undiagnosed.

  In the Horizon 2020 project CARDIS, imec, Medtronic, and 7 other partners, have developed a prototype mobile, low-cost, point-of-care screening device for CVD. The device aims for measurement in a fast, reproducible and reliable way with minimal physical contact with the patient and minimal skills from the operator. The operating principle of the device is Laser Doppler Vibrometry (LDV), in which a very low-power laser is directed towards the skin overlying an artery. The skin’s vibration amplitude and frequency, resulting from the heart beat, are extracted from the Doppler shift of the reflected beam. The device includes two rows of six beams, thereby scanning multiple points on the skin above the artery in parallel.

  At the heart of the system is a silicon photonics chip containing the optical functionality of the multi-beam LDV device. The CARDIS chip was designed by the Photonics Research Group, an imec laboratory at Ghent University, and prototyped through imec’s silicon photonics technology platform iSiPP50G, and has been implemented using advanced optical packaging approaches developed at the Tyndall National Institute in Ireland. The system has then been integrated into a handheld device and validated for human use by Medtronic.

  A clinical feasibility study at the Georges Pompidou European Hospital in Paris has collected a substantial clinical dataset, both from healthy subjects as well as from patients with cardiovascular conditions. The quality of the device readings was found to be very good and adequate measurement results could be obtained in all subjects. Also, the measurement data and variability within sessions were in line with data and variability acquired by reference techniques. A full dataset is now available and in-depth analysis will be performed both at INSERM and at the biomedical engineering department of Ghent University with the support of Medtronic. Moreover, further clinical feasibility studies are planned in the Academic Hospital of Maastricht (The Netherlands).

  “The CARDIS device was well accepted by all patients, and it was considered useful and well tolerated,” states Dr. Pierre Boutouyrie, the cardiologist in charge of the feasibility study. “Feasibility of signal acquisition is excellent since a useful signal was acquired in 100% of the patients. Tolerance was excellent too, the time to get useful signals was less than 10 min, and patients barely noticed that a measurement was performed.”

  Roel Baets, head of the Photonics Research Group (imec/UGent), concludes: “Silicon photonics is a powerful technology that combines the unique sensing capabilities of photonics with the low-cost and miniaturization capabilities of silicon semiconductor technology. It’s exciting to know that our silicon photonic chip and prototype medical device hold the promise to change the lives of so many patients with cardiovascular diseases.”

  In a next step, a small series of the device will be produced to perform a clinical feasibility study on a larger group of patients and over a longer period of time. If this feasibility study demonstrates the ability of the technology to detect cardiovascular diseases at an early stage, high volume production can be initiated. One of the benefits of the silicon photonics technology is that at high volumes, the chip can be produced at low cost.

5c3e8d039361d-thumb.png

本站內容除特別聲明的原創文章之外,轉載內容只為傳遞更多信息,并不代表本網站贊同其觀點。轉載的所有的文章、圖片、音/視頻文件等資料的版權歸版權所有權人所有。本站采用的非本站原創文章及圖片等內容無法一一聯系確認版權者。如涉及作品內容、版權和其它問題,請及時通過電子郵件或電話通知我們,以便迅速采取適當措施,避免給雙方造成不必要的經濟損失。聯系電話:010-82306118;郵箱:aet@chinaaet.com。
主站蜘蛛池模板: 天堂岛在线免费看电影| 日韩一卡2卡3卡4卡| 免费jjzz在在线播放国产| 草草影院ccyy国产日本欧美| 国产极品白嫩美女在线观看看| 91精品福利一区二区三区野战| 女人张开腿让男桶喷水高潮| 中文亚洲日韩欧美| 触手强制h受孕本子里番| 国产精品一区二区三区久久| 99re这里只有热视频| 好多水好硬好紧好爽视频| 两个人看的日本高清电影| 无码精品国产va在线观看dvd| 久久综合久久久久88| 校花被扒开尿口折磨憋尿| 亚洲性色成人av天堂| 污污的视频在线播放| 伊人中文字幕在线观看| 精品一区精品二区制服| 午夜理论影院第九电影院| 老司机精品视频免费| 国产一级毛片视频| 观看国产色欲色欲色欲www| 国产午夜福利内射青草| 高清在线精品一区二区| 国产在线精品一区二区不卡麻豆| 黄色免费短视频| 国产欧美精品区一区二区三区| 北岛玲日韩精品一区二区三区| 国产精品林美惠子在线观看| 91xav在线| 国产色综合一区二区三区| 91香蕉成人免费网站| 国产高清在线观看| 97sese电影| 国产高清自产拍av在线| 91最新高端约会系列178| 国内大量揄拍人妻精品視頻| 97日日碰曰曰摸日日澡| 在线a亚洲视频播放在线观看|