DESIGN NAME: Click Click
PRIMARY FUNCTION: Ultraviolet light therapy apparatus
INSPIRATION: The aim is to demonstrate an innovative, intelligent and integrated medical device design. The motivation stems from concerns for patient health, the continuous development of medical technology, and a desire to improve treatment outcomes and the patient experience. Inspired by a modular approach. The background is distributed medical design
UNIQUE PROPERTIES / PROJECT DESCRIPTION: The phototherapy device has a modular design and can be switched between handheld or wearable. The light therapy instrument is combined according to the white spot area to match the shape of the white spot to reduce the treatment time cost. The device scanning module scans the white spot area and records the data to provide treatment reference for doctors. The charging base provides a printing function, printing stickers to avoid direct sunlight and improve the overall treatment effect.
OPERATION / FLOW / INTERACTION: During the treatment process, users make online consultations with doctors through the App and receive personalized treatment plans. The device is equipped with a scanning module to regularly scan the white spot area and record the data to provide a more comprehensive treatment reference. The keyframe may be a specific point in time during the treatment, recording the treatment effect or the change in white spot area. Through intelligent integration, the device can make treatment adjustment according to dynamic information such as scan data and user feedback, and improve the personalized treatment effect.
PROJECT DURATION AND LOCATION: The project began in April 2023 in Tianjin, China and will be completed in December 2023 in Tianjin, China
FITS BEST INTO CATEGORY: Medical Devices and Medical Equipment Design
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PRODUCTION / REALIZATION TECHNOLOGY: The phototherapy instrument adopts modular design, uses UVB, UVA and other light sources, and can combine modules according to the white spot area to improve the treatment accuracy. Equipped with scanning module to record data, charging base integrated printing function. It integrates with the App online consultation community to provide convenient consultation, personalized treatment plan, remote monitoring and other services to achieve distributed medical collaboration. Medical grade materials and advanced technology are considered in production to ensure that the equipment is safe, reliable and in line with medical device standards.
SPECIFICATIONS / TECHNICAL PROPERTIES: 55mm*105mm*40mm
TAGS: Medical product, Ultraviolet light therapy apparatus, leukoderma, modularization, telemedicine
RESEARCH ABSTRACT: The design of the phototherapy instrument belongs to the application research, aiming to solve the practical problem of vitiligo treatment through distributed design medical method. The research goal is to improve the personalized and accurate treatment, reduce the cost of treatment time, and realize the interaction between patients and doctors through modular design, scanning module data recording, App online consultation and other means. Through the collection and intelligent analysis of data, the research is expected to provide more accurate treatment results, improve the quality of doctor-patient interaction, and is expected to have a positive impact on both business and society, providing more advanced and personalized treatment for vitiligo patients.
CHALLENGE: During the development of the UV phototherapy project, the team faced internal challenges such as technical complexity, data security and privacy, and medical compliance. External challenges include legal compliance, production feasibility, access to information, and social acceptance. The collaboration of interdisciplinary teams is key to overcoming these barriers, ensuring that projects comply with medical regulations, secure data, improve productivity, and promote social outreach and acceptance education.
ADDED DATE: 2024-02-28 11:07:31
TEAM MEMBERS (2) : Design leader: Linlin Liu, Zebin Qiao and designer: Yiwei Yu, Zhiliang Zhu, Zhuoning He, Yayan Gao, Yining Wang, Weifeng Mao
IMAGE CREDITS: Image #1: ZeBinQiao, 2023
Image #2: ZeBinQiao, 2023
Image #3: ZeBinQiao, 2023
Image #4: ZeBinQiao, 2023
Image #5: ZeBinQiao, 2023
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