RU2015134856A - Способы формирования биосовместимых перезаряжаемых элементов питания для биомедицинских устройств - Google Patents

Способы формирования биосовместимых перезаряжаемых элементов питания для биомедицинских устройств Download PDF

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RU2015134856A
RU2015134856A RU2015134856A RU2015134856A RU2015134856A RU 2015134856 A RU2015134856 A RU 2015134856A RU 2015134856 A RU2015134856 A RU 2015134856A RU 2015134856 A RU2015134856 A RU 2015134856A RU 2015134856 A RU2015134856 A RU 2015134856A
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cathode
cavity
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chemicals
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Фредерик А. ФЛИТШ
Шивкумар МАХАДЕВАН
Дэниел Б. ОТТС
Рэндалл Б. ПЬЮ
Джеймс Дэниел РАЙЕЛЛ
Адам ТОНЕР
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Джонсон Энд Джонсон Вижн Кэа, Инк.
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    • A61N1/05Electrodes for implantation or insertion into the body, e.g. heart electrode
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D11/00Producing optical elements, e.g. lenses or prisms
    • B29D11/00009Production of simple or compound lenses
    • B29D11/00038Production of contact lenses
    • B29D11/00048Production of contact lenses composed of parts with dissimilar composition
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D11/00Producing optical elements, e.g. lenses or prisms
    • B29D11/0074Production of other optical elements not provided for in B29D11/00009- B29D11/0073
    • B29D11/00807Producing lenses combined with electronics, e.g. chips
    • B29D11/00817Producing electro-active lenses or lenses with energy receptors, e.g. batteries or antennas
    • GPHYSICS
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    • G02C11/00Non-optical adjuncts; Attachment thereof
    • G02C11/10Electronic devices other than hearing aids
    • GPHYSICS
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    • G02C7/04Contact lenses for the eyes
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    • H01M10/0564Accumulators with non-aqueous electrolyte characterised by the materials used as electrolytes, e.g. mixed inorganic/organic electrolytes the electrolyte being constituted of organic materials only
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    • GPHYSICS
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    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/08Auxiliary lenses; Arrangements for varying focal length
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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Claims (67)

1. Способ формирования биосовместимого элемента питания, включающий:
получение первой пленки подложки из первого изолирующего материала;
вырезание полости в первой пленке подложки с образованием слоя катодной прокладки, причем край полости образует боковую стенку полости;
получение анодной пленки, содержащей анодные химические вещества;
прикрепление первой поверхности слоя катодной прокладки к первой поверхности анодной пленки;
осаждение сепаратора в биосовместимый элемент питания через полость в слое катодной прокладки, при этом сепаратор содержит смесь полимеризуемого материала, смешанного с вкраплениями неполимеризуемого материала;
полимеризацию полимеризуемого материала;
погружение пленки подложки с осажденным сепаратором в растворитель, причем растворитель растворяет вкрапления неполимеризуемого материала и не растворяет полимер, при этом при растворении вкраплений неполимеризуемого материала создаются пустоты в сепараторе;
получение катодной суспензии, содержащей катодные химические вещества; и
помещение катодной суспензии в полость в слое катодной прокладки, причем боковая стенка полости в слое катодной прокладки и поверхность осажденного сепаратора удерживают катодную суспензию.
2. Способ по п. 1, дополнительно включающий добавление электролита к катодной суспензии в полости.
3. Способ по п. 2, причем электролит содержит гексафторфосфат лития.
4. Способ по п. 1, причем катодные химические вещества содержат соль лития.
5. Способ по п. 4, причем соль лития включает фосфат железа-лития.
6. Способ по п. 1, причем катодные химические вещества содержат один или более из свинца, никеля, лития, кобальта, цинка, натрия, ванадия, серебра или кремния.
7. Способ по п. 1, причем катодные химические вещества содержат натриевую соль карбоксиметилцеллюлозы.
8. Способ по п. 1, причем катодные химические вещества содержат один или более из синтетического графита, бутадиенстирольного каучука и углеродной сажи.
9. Способ по п. 1, причем анодные химические вещества содержат атомы интеркалированного металла.
10. Способ по п. 9, причем атомы интеркалированного металла включают атомы интеркалированного лития.
11. Способ по п. 1, дополнительно включающий:
получение второй пленки оболочки, содержащей пакет пленок, при этом слой пленки пакета пленок представляет собой металлический влагонепроницаемый барьер; и
прикрепление второй пленки оболочки к по меньшей мере части анодной пленки.
12. Способ по п. 1, причем полимеризуемый материал содержит:
гидроксиэтилметакрилат (ГЭМА);
этиленгликольдиметилакрилат (ЭГДМА); и
поливинилпирролидон (ПВП).
13. Способ по п. 1, дополнительно включающий подключение биосовместимого элемента питания к электроактивному элементу внутри биомедицинского устройства.
14. Способ по п. 13, дополнительно включающий подключение биосовместимого элемента питания к упомянутому электроактивному элементу внутри упомянутого биомедицинского устройства.
15. Способ по п. 14, причем биомедицинское устройство представляет собой офтальмологическое устройство.
16. Способ по п. 15, причем биомедицинское устройство представляет собой контактную линзу.
17. Способ формирования биосовместимого элемента питания, включающий:
получение первой пленки подложки из первого изолирующего
материала;
получение второй пленки подложки из второго изолирующего материала;
вырезание первой полости во второй пленке подложки с образованием слоя разделительной прокладки;
вырезание второй полости в первой пленке подложки с образованием слоя катодной прокладки, причем край второй полости образует боковую стенку полости;
ламинирование первой поверхности слоя разделительной прокладки к первой поверхности слоя катодной прокладки;
помещение сепаратора в биосовместимый элемент питания через первую полость;
получение анодной пленки, содержащей анодные химические вещества, при этом анодные химические вещества содержат атомы интеркалированного металла;
прикрепление второй поверхности слоя разделительной прокладки к первой поверхности анодной пленки;
получение катодной суспензии, содержащей катодные химические вещества; и
помещение катодной суспензии во вторую полость, при этом боковая стенка второй полости и поверхность сепаратора образуют третью полость для размещения катодной суспензии.
18. Способ по п. 17, дополнительно включающий:
получение катодной контактной пленки; и
прикрепление второй поверхности слоя катодной прокладки к по меньшей мере части первой поверхности катодной контактной пленки.
19. Способ по п. 18, дополнительно включающий:
получение первой пленки оболочки, содержащей пакет пленок, в котором один слой представляет собой металлический влагонепроницаемый барьер; и
прикрепление первой пленки оболочки к по меньшей мере части катодной контактной пленки.
20. Способ по п. 19, дополнительно включающий:
прикрепление биосовместимого элемента питания к части биомедицинского устройства.
21. Способ по п. 17, причем биосовместимый элемент питания вводят в вставку в биомедицинское устройство, при этом указанный биосовместимый элемент питания герметизируют внутри указанной вставки.
22. Способ по п. 21, причем биомедицинское устройство представляет собой контактную линзу.
23. Способ по п. 17, причем катодные химические вещества содержат соль лития.
24. Способ по п. 23, причем катодные химические элементы содержат фосфат железа-лития.
25. Способ по п. 17, причем анодные химические вещества содержат атомы интеркалированного лития.
26. Способ по п. 17, причем анодные химические вещества содержат атомы интеркалированного натрия.
27. Способ по п. 26, причем катодные химические вещества содержат один или более из свинца, никеля, лития, кобальта, цинка, натрия, ванадия, серебра или кремния.
28. Способ по п. 27, причем катодные химические вещества содержат фосфат железа-лития.
29. Способ по п. 28, причем катодные химические вещества содержат натриевую соль карбоксиметилцеллюлозы.
30. Способ по п. 29, причем катодные химические вещества содержат один или более из синтетического графита и углеродной сажи.
31. Способ по п. 30, причем катодные химические вещества содержат один или более из бутадиенстирольного каучука.
32. Способ по п. 17, дополнительно включающий добавление электролита к катодной суспензии, причем электролит содержит гексафторфосфат лития.
33. Способ по п. 32, дополнительно включающий подключение биосовместимого элемента питания к электроактивному элементу внутри биомедицинского устройства.
34. Способ по п. 33, дополнительно включающий подключение биосовместимого элемента питания к упомянутому электроактивному элементу внутри упомянутого биомедицинского устройства.
35. Способ по п. 34, причем биомедицинское устройство
представляет собой офтальмологическое устройство.
36. Способ по п. 35, причем биомедицинское устройство представляет собой контактную линзу.
RU2015134856A 2014-08-21 2015-08-18 Способы формирования биосовместимых перезаряжаемых элементов питания для биомедицинских устройств RU2675797C2 (ru)

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US201462040178P 2014-08-21 2014-08-21
US62/040,178 2014-08-21
US14/746,231 2015-06-22
US14/746,231 US10381687B2 (en) 2014-08-21 2015-06-22 Methods of forming biocompatible rechargable energization elements for biomedical devices

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TW201614904A (en) 2016-04-16
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CN105428690A (zh) 2016-03-23
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