Medical Design Briefs - January 2025 - 36

Extend The Life of Tools and
Wear Surfaces Up to 1000%.
ab
Inkjet printing
Pattern adhesion layer
Pattern sacrificial layer
Deposite nano Au
Develop in water Pattern PEDOT; PSS
SEBS
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Pattern insulation layerPattern iongel
Improve and renew Micro-Electronic Tools, Surgical Instruments and MicroLaboratory
Instruments with the Hunter Carbitron 300. This simple easy-touse
process applies tungsten-carbide to tools and wear surfaces extending
the life up to 1000%.
The Carbitron 300 system, consisting of an adjustable power supply and
vibrating hand-tool is a heavy-duty unit incorporating the features of units
selling for 5 - 10 times its low price.
Used for Tissue Forceps, Needle Holders, Micro Needle Holders, Micro Pliers etc.
Hunter Products, Inc.
908-526-8440
www.hunterproducts.com
E-mail: hunter@hunterproducts.com
d
Electrolyte
Electrode
NON-CYTOTOXIC EPOXY
for MEDICAL DEVICES
Adhesive System
EP62-1HTMed
HIGH TENSILE STRENGTH
of 10,000-11,000 PSI
SERVICEABLE FROM
-60°F TO +450°F
RESISTANT TO:
→ REPEATED STERILIZATION
→ AUTOCLAVING
→ ETHYLENE OXIDE AND STERRAD®
®
Adhesive System
EP62-1HTMed
interconnect
Channel
TAP
(adhesive layer)
Insulation
Substrate
Bluetooth
Microcontroller
Readout layer
Multiplexer
Contact pad
(adhesive silver)
BLE 5
module
Cortex M4
CPU
256 kb
RAM
f
1 MB flash
Embedded AI
ADC
Filters
Current Monitor Module
e
MCU
EMG signal
DAC1
DAC2
DAC3
ISOECT
sensor
Potential Output Control Module
gh ij
-600
-600
-450
-300
-300
12.50
12.50
0.00
0.00.4 0.80.0
-0.4
-0.8
-0.002 -0.500 -0.525
-0.472
0.00
37.50
50.00
25.00
37.50
25.00
Scalable manufacturing of the soft microelectronics, based on stretchable organic
electrochemical transistors.
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bc
The wearable in-sensor computing platform for health monitoring.
" We built a wearable in-sensor computing platform using
unconventional soft microelectronics technology, providing
hardware solutions long sought by emerging fields such as human-machine
interfacing, digital health, and AI medicine, "
says Zhang.
The research team believes their work will push the
boundaries of wearables and edge-AI for health. Their next
steps include refining the platform and exploring its potential
applications in various healthcare settings.
" This groundbreaking work not only showcases the innovative
capabilities of the HKU team but also opens new opportunities
for wearable technology. The team's dedication
to improving the quality of life through advanced health
technology is evident in this remarkable achievement, "
says Zhang.
Reference
1. D. Liu et al., " A wearable in-sensor computing platform based on stretchable
organic electrochemical transistors, " Nature Electronics, Oct. 2, 2024, https://
www.nature.com/articles/s41928-024-01250-9.
Hackensack, NJ 07601, USA ∙ +1.201.343.8983 ∙ main@masterbond.com
Hackensack, NJ 07601, USA ∙ +1.201.343.8983 ∙ main@masterbond.com
www.masterbond.com
36
For more information, contact Prof. Shiming Zhang at
szhang@eee.hku.hk or visit www.hku.hk.
www.medicaldesignbriefs.com
Medical Design Briefs, January 2025
http://info.hotims.com/87800-740 http://info.hotims.com/87800-741 https://www.nature.com/articles/s41928-024-01250-9 https://www.nature.com/articles/s41928-024-01250-9 http://www.hku.hk http://www.medicaldesignbriefs.com

Medical Design Briefs - January 2025

Table of Contents for the Digital Edition of Medical Design Briefs - January 2025

Medical Design Briefs - January 2025 - CV1a
Medical Design Briefs - January 2025 - CV1b
Medical Design Briefs - January 2025 - COV1
Medical Design Briefs - January 2025 - COV2
Medical Design Briefs - January 2025 - 1
Medical Design Briefs - January 2025 - 2
Medical Design Briefs - January 2025 - 3
Medical Design Briefs - January 2025 - 4
Medical Design Briefs - January 2025 - 5
Medical Design Briefs - January 2025 - 6
Medical Design Briefs - January 2025 - 7
Medical Design Briefs - January 2025 - 8
Medical Design Briefs - January 2025 - 9
Medical Design Briefs - January 2025 - 10
Medical Design Briefs - January 2025 - 11
Medical Design Briefs - January 2025 - 12
Medical Design Briefs - January 2025 - 13
Medical Design Briefs - January 2025 - 14
Medical Design Briefs - January 2025 - 15
Medical Design Briefs - January 2025 - 16
Medical Design Briefs - January 2025 - 17
Medical Design Briefs - January 2025 - 18
Medical Design Briefs - January 2025 - 19
Medical Design Briefs - January 2025 - 20
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Medical Design Briefs - January 2025 - 28
Medical Design Briefs - January 2025 - 29
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Medical Design Briefs - January 2025 - 33
Medical Design Briefs - January 2025 - 34
Medical Design Briefs - January 2025 - 35
Medical Design Briefs - January 2025 - 36
Medical Design Briefs - January 2025 - COV3
Medical Design Briefs - January 2025 - COV4
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https://www.nxtbook.com/smg/techbriefs/22MDB06
https://www.nxtbook.com/smg/techbriefs/22MDB04
https://www.nxtbook.com/smg/techbriefs/techleaders21
https://www.nxtbook.com/smg/techbriefs/22MDB03
https://www.nxtbook.com/smg/techbriefs/22MDB02
https://www.nxtbook.com/smg/techbriefs/22MDB01
https://www.nxtbook.com/smg/techbriefs/21MDB12
https://www.nxtbook.com/smg/techbriefs/21MDB11
https://www.nxtbook.com/smg/techbriefs/21MDB10
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