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Skin coupling media characterization for fitnesstracker applications (1 B/S)

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Revision as of 10:58, 23 July 2023 by Cleitne (talk | contribs) (Short Description)
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Short Description

Ultrasound is a key technology in healthcare, and it is being explored for non-invasive, wearable, continuous monitoring of vital signs. However, its widespread adoption in this scenario is still hindered by the size, complexity, and power consumption of current devices. Moreover, such an application demands adaptability to human anatomy, which is hard to achieve with current transducer technology. In this work, we explore a new ultrasound prototype for wrist-worn applications, e.g. for monitoring vital signs.

Status: Available

Looking for 1 Bachelor or Semester student
Contact: Christoph Leitner,
Co-supervision by the Center of Project Based Learning: Marco Giordano (PBL)

Prerequisites

Creativity and solid research methodology (highly appreciated)
Additive manufacturing know-how and knowledge of CAD tools (e.g., SolidWorks)
Signal Processing


Character

30% Mechanical Design
30% Signal Processing
20% Literature Research
20% Data analyses and documentation

Professor

Luca Benini

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Detailed Task Description

According to the level of the student and the chosen thesis type (BT/ST/MT) the work will include some or all following tasks: 

Goals

Literature Research
  • Research of available coupling media
  • Evaluation of coupling media in terms of: acoustic properties (e.g., attenuation), 3d design and integration, farbication complexity, cost.
Testbench Design
  • Design of a coupling media testbench
  • Design of casts and fabrication of prototypes
  • Development of software for testing
  • Prototype integration into a wrist band
Testing
  • Ultrasound characterization of coupling media

Practical Details


Links

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