Delighted to share my first first-author research article got published in Nature Biotenology today! @XugroupUCSD
Monitoring deep tissue physiology on mobile subjects is challenging, but we have made it possible!
This article in @natrevbioeng offers a comprehensive overview of recent advances in wearable ultrasound technology across academia and industry. We did our best to cover the full landscape and are deeply grateful to the researchers whose work we reviewed. In the final section, we also share our thoughts on key challenges and promising future directions. Many thanks to @SaiZhou_, @ParkingTom, @MuyangLin95, and Xinyi Yang for their efforts in polishing the manuscript! We greatly appreciate the support of @UCSDJacobs, @UCSD, @NIBIBgov, NHLBI, and @NIH!
https://t.co/35WeJqizBj
It’s been a fantastic collaboration with @JWangnano’s team. His wisdom and insight are always deeply inspiring. I can only hope to have his energy when I reach his age.
https://t.co/cz4286MPQu
We're hiring! Persperity Health, Inc – the startup driving the commercialization of our wearable sensor technology – is seeking a Biomedical Engineer to join the team to accelerate the biosensor development. Please help RT. Thanks! Apply here:
https://t.co/tVIcjMO9ep
In this @natBME paper, we validated a wearable ultrasound blood pressure sensor in over 100 patients across diverse clinical and at-home scenarios. The results demonstrate that the sensor achieves high accuracy, meeting the error threshold defined by the @US_FDA. This project, initiated in 2019, was led by @SaiZhou_, @ParkingTom, Katherine Longardner, and @MuyangLin95, with contributions from numerous collaborators, including Esra Tasali and Ted Karrison at the @UChicago, as well as Isac Thomas, @smarrb, Erik Kistler, @belalkh84, and @LitvanIrene at @UCSDJacobs, @UCSDHealth, and @UCSanDiego. The work was supported by the @wellcometrust, @NIH, and @NIBIBgov.
Researchers Develop Clinically Validated, Wearable Ultrasound Patch for Continuous Blood Pressure Monitoring https://t.co/KedOVvc85t
This @NatureElectron article presents a single-element-transducer-based wearable ultrasound system and its application in health monitoring and human-machine interface. Although the single-element structure is simple, the signals it captures contain rich information about deep tissues. Previously, we mainly used single-element-transducer signals for basic health monitoring, such as observing arterial pulses and changes in diaphragm thickness. Now, with artificial intelligence, we can extract complex information from these signals to enable precise human-machine interaction: our results show that the single-element-transducer signal can accurately predict the bending angles of all finger and wrist joints in one hand! The lead authors of this article are Xiaoxiang Gao, Xiangjun Chen, @MuyangLin95, and Wentong Yue. This work was in strong collaboration with Dr. Jinghong Li and @JWangnano. We are deeply grateful for the support provided by @NIH, @NIBIBgov, @UCSanDiego, @UCSDJacobs, and @UCSDHealth.
https://t.co/wez5Rc1cWd
Elsie Ross, Sheng Xu, Sean Perez, Muyang Lin, and Sai Zhou - Development of an Operator-Free Ultrasound Patch for the Remote Monitoring of Arterial Flow Dynamics in Vascular Surgery Patients
Last day of the GRC @GordonConf In Vivo Ultrasound imaging.
Having fun and learning new ultrasond technologies.
The poster award is the ice on the cake!😄
#Micromachines MDPI
We have set up a Special Issue: Novel Micromachine Systems Enabled Tissue Characterization and Physiological Monitoring, welcome to contribute to this Issue:
https://t.co/2pdxDHhtDG
Special Issue Editor: Muyang Lin @MuyangLin95
Deadline: 10 December 2024
I am immensely honored to have been awarded the Materials Excellence Award, named after the esteemed material scientist, Dr. Gareth Thomas.
Hearty thanks to Prof. Marc Meyers, Ms. Zeeman-Thomas, and many more for organizing this wonderful symposium and award ceremony @BerkeleyMSE
Glad that our wireless ultrasound device is highlighted on March issue cover.
This wearable ultrasound patch can bring ultrasound scans to your daily life.😁
The March issue is live https://t.co/22mXAfzJUk
On our cover, Lin et al. engineer a soft, wireless ultrasound device to measure deep body signals in moving subjects, offering a hands-free solution for continuous health tracking at the point of care https://t.co/TnQjWPkrO6
The ability to do continuous, high-resolution ultrasound imaging of an organ in people on the go through a wearable patch is an important innovation
https://t.co/FMxNNQ4Mbp @NatureBiotech@heart_lung
Big shoutout to Dr. Kenny @heart_lung for spotlighting our research on the wireless ultrasond patch! Dive into his insightful analysis of wearable ultrasound technologies here: https://t.co/QErOpnQZc4
Hands-free ultrasound will revolutionize prognostics, diagnostics, and therapy.