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| 1 | Identifying human body states by using a flexible integrated sensor显示文摘Flexible sensors are required to be lightweight,compatible with the skin,sufficiently sensitive,and easily integrated to extract various kinds of body vital signs during continuous healthcare monitoring in daily life.For this,a simple and low-cost flexible temperature and force sensor that uses only two carbon fiber beams as the sensing layer is reported in this work.This simple,flexible sensor can not only monitor skin temperature changes in real time but can also extract most pulse waves,including venous waves,from most parts of the human body.A pulse diagnostic glove containing three such flexible sensors was designed to simulate pulse diagnostic methods used in traditional Chinese medicine.Wearable equipment was also designed in which four flexible sensors were fixed onto different body parts(neck,chest,armpit,and fingertip)to simultaneously monitor body temperature,carotid pulse,fingertip artery pulse,and respiratory rate.Four important physiological indicators—body temperature(BT),blood pressure(BP),heart rate(HR),and respiratory rate(RR)—were extracted by the wearable equipment and analyzed to identify exercise,excited,tired,angry,and frightened body states. | Ying Jin Guoning Chen Kete Lao Songhui Li Yong Lu Yufeng Gan Zhundong Li Jiajia Hu Jingcheng Huang Jinxiu Wen Honggui Deng Min Yang Zhiming Chen Xiaoyan Hu Baowen Liang Jianyi Luo | 2020 | npj Flexible Electronics2020,4,1: | 2 |
| 2 | An analysis of black liquor fallin8 film evaporation显示文摘 | Fang Chan Zhiming Gan | 2004 | International Journal of Heat and Mass Transfer2004,47,89: | 1 |
| 3 | Characterization of a Tn MAVS protein from Tetraodon nigroviridis显示文摘 | Zhiming Xiang Lin Qi Weijian Chen Chuanfu Dong Zhaoyu Liu Dong Liu Mengli Huang Wei Li Gan Yang Shaoping Weng Jianguo He | 2011 | Developmental and Comparative Immunology2011,,11: | 1 |
| 4 | Fluorescent digital image correlation techniques in experimental mechanics显示文摘White light has often been used for surface illumination to acquire images for digital image correlation(DIC) analysis. In recent years, fluorescent imaging technique has been introduced for illumination, surface deformation and topography measurements with applications on various materials including biomaterials(biofilms, etc.) at the microscale. Traditional imaging, with the use of white light, encounters technical issues such as specular reflection owing to moisture or smooth shiny surfaces(e.g., metallic or glass surfaces). As an alternative to white light, fluorescent imaging serves as a solution to resolve the issues of specular reflection.Fluorescent DIC techniques, especially the fluorescent stereo DIC, allow 3 D surface profilometry and deformation measurements at the microscale and submicron scale. Fluorescent stereo imaging under a microscope utilizes emission wavelengths that are different from illumination wavelengths to ensure clear images on any surface that might give reflections at certain angles when white light is used, allowing accurate metrology and deformation measurement. In addition microscopic fluorescent imaging provides nanoscale resolutions surpassing Abbe's diffraction limit. This paper provides a review of the recent advances in fluorescent DIC. | HU ZhenXing XU TingGe WANG XueMin XIE ZhiMing LUO HuiYang HE Yong GUO Lei LI YuanPing GAN RongZhu LU HongBing | 2018 | Science China(Technological Sciences)2018,61,1: | 1 |
| 5 | Application of photodynamic therapy in cancer: challenges and advancements显示文摘Although great achievements have been made in the past decades in medicine,cancer remains a worldwide public health issue.Surgery is usually accompanied by shortcomings such as residual lesions and poor treatment effects,and the successive appearance of other treatment methods,such as radiotherapy and chemotherapy,has not changed the postoperative recurrence rate,toxicity,and side effects.However,the advent of photodynamic therapy has greatly improved this situation.Photodynamic therapy is an emerging tumor diagnosis and treatment technology with good application prospects,photodynamic therapy uses a specific wavelength of light to excite a photosensitizer to generate reactive oxygen species,damage tumor blood vessels and promote tumor cell apoptosis,exerting an anti-tumor effect.Photodynamic therapy has become a new clinical anti-tumor therapy due to its clear efficacy,few side effects,and easy use in combination with other therapies.In this review,we summarized the main mechanism,current challenges,and advancements of photodynamic therapy. | ZIXUAN WANG HONGMEI PENG WEI SHI LU GAN LIPING ZHONG JIAN HE LINLIN XIE PAN WU YONGXIANG ZHAO ZHIMING DENG HONGLIANG TANG YONG HUANG | 2021 | BIOCELL2021,45,3: | 0 |