IP Library › Granted Patent US 12,251,198
Granted Patent B2
US 12,251,198 · App. 17/611,181 · Granted Mar 18, 2025

Vasospasm monitoring device based on triboelectrification technology

Inventors: Pengcheng Jiao (Zhejiang, CN); Yang Yang (Zhejiang, CN); Xiaoxiao Cui (Zhejiang, CN)
Assignee: ZHEJIANG UNIVERSITY
A61B5/02007A61B5/05A61B5/076A61B5/6862H02N1/04
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Quick Facts
Patent No.
US 12,251,198
App. No.
17/611,181
Granted
Mar 18, 2025
Kind
B2
Abstract

A vasospasm monitoring device based on a triboelectrification technology includes a vascular stent. A plurality of hole-shaped structures are distributed on the vascular stent. A triboelectric film sleeve is inserted into each hole-shaped structures in a matched mode, and the triboelectric film sleeve includes an inner electrode, an inner triboelectric material layer, an outer triboelectric material layer, and an outer electrode. The inner triboelectric material layer and the outer triboelectric material layer can generate electricity by friction, and the inner electrode and the outer electrode are electrically connected to a bioelectric signal processing patch.

Claims (7)

1. A vasospasm monitoring device based on a triboelectrification technology, the vasospasm monitoring device comprising a vascular stent, wherein a plurality of hole-shaped structures are distributed on the vascular stent, a triboelectric film sleeve is configured to be inserted into each hole-shaped structure in a matched mode, and the triboelectric film sleeve comprises an inner electrode, an inner triboelectric material layer, an outer triboelectric material layer and an outer electrode which are sequentially arranged from inside to outside in a sleeved mode; the inner triboelectric material layer and the outer triboelectric material layer are able to generate electricity by friction, and the inner electrode and the outer electrode are electrically connected to a bioelectric signal processing patch.

2. The vasospasm monitoring device based on the triboelectrification technology according to claim 1 , wherein the inner triboelectric material layer is a triboelectric cathode material layer, and the outer triboelectric material layer is a triboelectric anode material layer; or, the inner triboelectric material layer is a triboelectric anode material layer, and the outer triboelectric material layer is a triboelectric cathode material layer.

3. The vasospasm monitoring device based on the triboelectrification technology according to claim 1 , wherein the triboelectric film sleeve further comprises a protective film wrapping the inner electrode, the inner triboelectric material layer, the outer triboelectric material layer, and the outer electrode; and the protective film makes the triboelectric film sleeve be insulated from an external environment.

4. The vasospasm monitoring device based on the triboelectrification technology according to claim 3 , wherein the protective film comprises an inner protective film wrapping an inner side of the inner electrode and an outer protective film wrapping an outer side of the outer electrode, the inner protective film and the outer protective film are connected at both ends in an axial direction, such that the inner electrode, the inner triboelectric material layer, the outer triboelectric material layer and the outer electrode are completely wrapped in the protective film.

5. The vasospasm monitoring device based on the triboelectrification technology according to claim 1 , wherein the inner electrode and the outer electrode are connected to the bioelectric signal processing patch through wires, and the wires are coated with insulating films.

6. The vasospasm monitoring device based on the triboelectrification technology according to claim 1 , wherein the bioelectric signal processing patch is wirelessly connected to an external signal acquisition terminal.

7. The vasospasm monitoring device based on the triboelectrification technology according to claim 6 , wherein a nanoscale wireless signal transmitting unit is arranged in the bioelectric signal processing patch, a wireless signal receiving unit is arranged in the external signal acquisition terminal, and the nanoscale wireless signal transmitting unit is wirelessly connected to the wireless signal receiving unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2021
From: JIAO, PENGCHENG; YANG, YANG; CUI, XIAOXIAO
To: ZHEJIANG UNIVERSITY
Reel/Frame 058158/0264 →
Priority Claims (1)
CN 202010589335.7 · Jun 24, 2020 · national
Continuity (1)
Related Publication 20220304581A1 · Sep 29, 2022
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