Vivo Release Drug Delivery Mems Device

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In vivo release from a drug delivery MEMS device ...

    https://www.sciencedirect.com/science/article/pii/S0168365904003827
    A drug delivery microelectromechanical systems (MEMS) device was designed to release complex profiles of multiple substances in order to maximize the effectiveness of drug therapies. The device is based on micro-reservoirs etched into a silicon substrate that contain individual doses of drug.Author: Yawen Li, Rebecca S. Shawgo, Betty Mae Tyler, Paul T. Henderson, John S. Vogel, Aron Rosenberg, Phil...

In vivo release from a drug delivery MEMS device

    https://superfund.berkeley.edu/pdf/177.pdf
    A drug delivery microelectromechanical systems (MEMS) device was designed to release complex profiles of multiple substances in order to maximize the effectiveness of drug therapies. The device is based on micro-reservoirs etched into a silicon substrate that contain individual doses of drug.

In vivo release from a drug delivery MEMS device.

    https://www.ncbi.nlm.nih.gov/pubmed/15544869
    Nov 24, 2004 · A drug delivery microelectromechanical systems (MEMS) device was designed to release complex profiles of multiple substances in order to maximize the effectiveness of drug therapies. The device is based on micro-reservoirs etched into a silicon substrate that …Author: Yawen Li, Rebecca S. Shawgo, Betty Mae Tyler, Paul T. Henderson, John S. Vogel, Aron Rosenberg, Phil...

In vivo release from a drug delivery MEMS device Request PDF

    https://www.researchgate.net/publication/8181882_In_vivo_release_from_a_drug_delivery_MEMS_device
    A drug delivery microelectromechanical systems (MEMS) device was designed to release complex profiles of multiple substances in order to maximize the effectiveness of drug therapies.

CiteSeerX — In vivo release from a drug delivery MEMS device

    http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.61.4820
    CiteSeerX - Document Details (Isaac Councill, Lee Giles, Pradeep Teregowda): A drug delivery microelectromechanical systems (MEMS) device was designed to release complex profiles of multiple substances in order to maximize the effectiveness of drug therapies. The device is based on micro-reservoirs etched into a silicon substrate that contain individual doses of drug.

MEMS devices for drug delivery - ScienceDirect

    https://www.sciencedirect.com/science/article/pii/S0169409X17302429
    Liu, et al. devised a refillable MEMS drug delivery device which consisted of electrodes for actuation, a drug reservoir, and a cannula . Metal electrodes for the actuation were fabricated on a silicon wafer while the 10-mm-long, 10-mm-wide, and 2-mm-thick drug reservoir was fabricated using an SU-8 photoresist.Author: Hyunjoo J. Lee, Nakwon Choi, Nakwon Choi, Eui-Sung Yoon, Il-Joo Cho, Il-Joo Cho

(PDF) In vivo release from a drug delivery MEMS device ...

    https://www.academia.edu/13462662/In_vivo_release_from_a_drug_delivery_MEMS_device
    In vivo release from a drug delivery MEMS device

In vivo release from a drug delivery MEMS device ...

    https://www.semanticscholar.org/paper/In-vivo-release-from-a-drug-delivery-MEMS-device.-Li-Shawgo/72c4d7095404aab0bb572786f14e27b34ed448db
    A drug delivery microelectromechanical systems (MEMS) device was designed to release complex profiles of multiple substances in order to maximize the effectiveness of drug therapies. The device is based on micro-reservoirs etched into a silicon substrate that contain individual doses of drug. Each dose is released by the electrochemical dissolution of the gold membrane that covers the ...

In vivo delivery of BCNU from a MEMS device to a tumor ...

    https://www.researchgate.net/publication/7597063_In_vivo_delivery_of_BCNU_from_a_MEMS_device_to_a_tumor_model
    In vivo delivery of BCNU from a MEMS device to a tumor model ... and rapid release of drug in vivo. BCNU delivered from the MEMS device showed dose-dependent inhibiting effect on the tumor growth ...

Intracranial MEMS-Based Temozolomide Delivery in a 9L Rat ...

    https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4404638/
    MEMS based devices offer the exquisite advantage of being able to actively control the function of a device via minute electrical signals. Such communication offers the ability to control drug release rate and when drug release begins, allowing for the creation of complex temporal profiles of single or multiple therapeutics (21–28).Author: Byron C. Masi, Betty M. Tyler, Hansen Bow, Robert T. Wicks, Yuan Xue, Henry Brem, Robert Langer, Mic...

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