RU2013118108A - Катетерные устройства, содержащие группы из нескольких электродов, для почечной нейромодуляции и соответствующие системы и способы - Google Patents
Катетерные устройства, содержащие группы из нескольких электродов, для почечной нейромодуляции и соответствующие системы и способы Download PDFInfo
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Abstract
1. Катетерный аппарат, содержащий:- удлиненный, гибкий трубчатый элемент, проходящий вдоль продольной оси, где удлиненный трубчатый элемент имеет проксимальную часть, дистальную часть и центральную полость, и где трубчатый элемент включает:- участок изгиба на дистальной части, где участок изгиба содержит множество прорезей в стенке трубчатого элемента, и по существу располагается поперечно к продольной оси; и- участок ориентирования рядом с участком изгиба, и между участком изгиба и дистальным концом проксимальной части удлиненного трубчатого элемента, где участок ориентирования содержит множество прорезей в стенке трубчатого элемента, и по существу располоагается поперечно к продольной оси;- где трубчатый элемент избирательно трансформируется между:- первым состоянием, в котором участок изгиба в целом располагается прямо вдоль продольной оси; и- вторым состоянием, в котором участок изгиба имеет в целом спиральную структуру, а участок ориентирования имеет коленчатую форму, так что дистальный конец проксимальной части трубчатого элемента направляется через внутреннюю часть спирали;- множество элементов, доставляющих энергию, закрепленных на участке изгиба, и включающих по меньшей мере первый элемент, доставляющий энергию, и второй элемент, доставляющий энергию, в котором, когда трубчатый элемент находится во втором состоянии, первый и второй элементы, доставляющие энергию, аксиально и радиально отделены друг от друга вокруг продольной оси; и- контрольный элемент, функционально связанный с трубчатым элементом для контроля перемещения гибкого трубчатого элемента между первым состоянием и вторым состоя
Claims (33)
1. Катетерный аппарат, содержащий:
- удлиненный, гибкий трубчатый элемент, проходящий вдоль продольной оси, где удлиненный трубчатый элемент имеет проксимальную часть, дистальную часть и центральную полость, и где трубчатый элемент включает:
- участок изгиба на дистальной части, где участок изгиба содержит множество прорезей в стенке трубчатого элемента, и по существу располагается поперечно к продольной оси; и
- участок ориентирования рядом с участком изгиба, и между участком изгиба и дистальным концом проксимальной части удлиненного трубчатого элемента, где участок ориентирования содержит множество прорезей в стенке трубчатого элемента, и по существу располоагается поперечно к продольной оси;
- где трубчатый элемент избирательно трансформируется между:
- первым состоянием, в котором участок изгиба в целом располагается прямо вдоль продольной оси; и
- вторым состоянием, в котором участок изгиба имеет в целом спиральную структуру, а участок ориентирования имеет коленчатую форму, так что дистальный конец проксимальной части трубчатого элемента направляется через внутреннюю часть спирали;
- множество элементов, доставляющих энергию, закрепленных на участке изгиба, и включающих по меньшей мере первый элемент, доставляющий энергию, и второй элемент, доставляющий энергию, в котором, когда трубчатый элемент находится во втором состоянии, первый и второй элементы, доставляющие энергию, аксиально и радиально отделены друг от друга вокруг продольной оси; и
- контрольный элемент, функционально связанный с трубчатым элементом для контроля перемещения гибкого трубчатого элемента между первым состоянием и вторым состоянием.
2. Катетерный аппарат по п.1, в котором, во втором состоянии, участок изгиба определяет спиральную ось, в целом параллельную продольной оси, вокруг которой поворачивается спиральная структура, определяющая множества оборотов и диаметр спиральной структуры, и в котором спиральная структура имеет дистальный конец и проксимальный конец, разделенные по спиральной оси, определяющие длину спирали.
3. Катетерный аппарат по п.2, в котором участок ориентирования сконструирован для существенного выравнивания спиральной оси с продольной осью, когда трубчатый элемент находится во втором состоянии, и в котором прорези в участке ориентирования радиально смещены по продольной оси от прорезей участка изгиба.
4. Катетерный аппарат по п.1, в котором спиральная структура содержит по меньшей мере два оборота для определения по меньшей мере двух точек соприкосновения со стенкой периферического кровеносного сосуда.
5. Катетерный аппарат по п.1, в котором:
- прорези в участке изгиба являются удлиненными прорезями для изгиба, в целом параллельными друг другу вдоль трубчатого элемента; и в котором прорези для изгиба проходят полностью через стенку трубчатого элемента; и
- прорези в участке ориентирования являются удлиненными ориентирующими прорезями, в целом параллельными друг другу вдоль трубчатого элемента; и в котором ориентирующие прорези полностью проходят через стенку трубчатого элемента.
6. Катетерный аппарат по п.5, в котором:
- центральные точки каждой из ориентирующих прорезей в участке ориентирования расположены по отдельности вдоль первой наклонной оси, проходящей по длине трубчатого элемента; и
- центральные точки каждой из прорезей для изгиба в участке изгиба расположены по отдельности вдоль второй наклонной оси, проходящей по длине трубчатого элемента, и радиально смещены по продольной оси от первой наклонной оси.
7. Катетерный аппарат по п.6, в котором, в первом состоянии:
- первая наклонная ось по существу параллельна продольной оси; и
- вторая наклонная ось определяет угол примерно 0,5 градусов (0,5°) по отношению к линии, параллельной к продольной оси.
8. Катетреный аппарат по п.6, в котором, в первом состоянии:
- первая наклонная ось по существу параллельна продольной оси; и
- вторая наклонная ось находится под углом около двух градусов (2°) по отношению к линии, параллельной к продольной оси.
9. Катетерный аппарат по п.6, в котором в первом состоянии первая наклонная ось находится под углом примерно от 45 градусов (45°) до 90 градусов (90°) по отношению к линии, параллельной к продольной оси.
10. Катетерный аппарат по п.1, в котором множество прорезей по меньшей мере в одном из участков изгиба и ориентирования включает по меньшей мере одно отверстие, удлиненное по окружности вокруг продольной оси на угол примерно 300°.
11. Катетерный аппарат по п.10, в котором по меньшей мере одно отверстие определяет дугу длиной примерно 0,04 дюймов (1,02 мм).
12. Катетерный аппарат по п.10, в котором по меньшей мере одно отверстие включает центральный участок и два концевых уччастка, расположенных вокруг центрального участка и граничащих с ним, и где каждый из центрального участка и двух концевых участков определяет ширину отверстия, проходящего в направлении продольной оси, где ширина, определяемая двумя концевыми участками, больше ширины, определяемой центальным участком.
13. Катетерный аппарат по п.12, в котором каждый из двух концевых участков является по существу округлым.
14. Катетерный аппарат по п.12, в котором каждый из двух концевых участков и центральный участок являются по существу прямоугольными, и в котором два концевых участка удлинены параллельно продольной оси, а центральный участок удлинен препендикулярно продольной оси.
15. Катетерный аппарат по п.12, в котором каждый из двух концевых участков является по существу прямоугольным и удлинен параллельно продольной оси, а центральный участок определяет округлую часть, центрированную вокруг отверстия.
16. Катетерный аппарат по п.1, в котором множество прорезей в участке изгиба включает 30 или меньше прорезей для изгиба, и в котором отдельные прорези для изгиба отделены друг от друга на расстояние примерно от 0,03 дюймов (0,76 мм) до 0,04 дюймов (1,02 мм).
17. Катетерный аппарат по п.1, в котором контрольный элемент содержит провод, расположенный в центральной полости, и в котором провод имеет первую концевую часть, соединенную с дистальной частью трубчатого элемента, так что повышение натяжения провода контролирует избирательную трансформацию участка изгиба трубчатого элемента между первым состоянием и вторым состоянием.
18. Катетерный аппарат по п.17, дополнительно содержащий рукоятку в сборе на проксимальной части трубчатого элемента, и в котором вторая концевая часть провода функционально связана с рукояткой для приложения натяжения к проводу.
19. Катетерный аппарат, содержащий:
- удлиненный ствол, имеющий проксимальную чать и дистальную часть, где дистальная часть ствола сконструирована для внутрисосудистой доставки в почечную артерию человека-пациента;
- контрольный провод, располагаемый внутри ствола с возможностью скольжения и прикрепленный к дистальной части ствола или рядом с ней;
- терапевтический блок на дистальной части удлиненного ствола, где терапевтический блок содержит множество элементов, доставляющих энергию, включающих по меньшей мере первый элемент, доставляющий энергию, и второй элемент, доставляющий энергию; и
- в котором терапевтический блок выполнен с возможностью трансформации с помощью контрольного провода между:
- сжатой конфигурацией, в которой терапевтический блок соответствует профилю доставки примерно 0,085 дюймов (2,16 мм) или меньше вокруг центральной оси, и
- развернутой конфигурацией, в которой первый и второй элементы, доставляющие энергию, аксиально и радиально отделены друг от друга вдоль и вокруг центральной оси, соответственно.
20. Катетерный аппарат по п.19, дополнительно содержащий концевой элемент на дистальной части удлиненного ствола, в котором контрольный провод соединен с концевым элементом и в котором концевой элемент сконструирован для атравматического введения в почечную артерию.
21. Катетерный аппарат по п.19, дополнительно содержащий рукоятку в сборе на проксимальной части ствола, и функционально связанный с контрольным проводом, где рукоятка в сборе сконструирована для перевода терапевтического блока из сжатой в развернутую конфигурацию и обратно.
22. Катетерный аппарат по п.19, в котором дистальный участок содержит множество прорезей, сформированных в дистальной части удлиненного ствола, где прорези расположены в целом параллельно друг другу, и в целом перпендикулярно к центральной оси, когда терапевтический блок находится в сжатой конфигурации.
23. Катетерный аппарат по п.19, в котором контрольный провод содержит полиэтилен с ультравысокой молекулярной массой.
24. Катетерный аппарат по п.19, в котором дистальный участок содержит прорезь, и в котором контрольный провод прикреплен к прорези.
25. Катетерный аппарат по п.19, дополнительно содержащий катушку на дистальном участке, и где контрольный провод прикреплен к катушке.
26. Катетерный аппарат по п.19, в котором дистальный конец контрольного провода завязан узлом и покрыт полимерным материалом.
27. Катетерный аппарат по п.19, в котором:
- поддерживающая структура сконструирована с возможностью трансформации между:
- по существу линейной структурой в сжатой конфигурации; и
- спиральной структурой в развернутой конфигурации, определяющей спиральную ось, в целом параллельную центральной оси, и вокруг которой поворачивается спиральная структура, определяющая множество оборотов и спиральный диаметра спиральной структуры, и где спиральная структура содержит дистальную часть и проксимальную часть, разделенные по спиральной оси, определяющие длину спирали; и
- контрольный провод сконструирован для функционального соединения с поддерживающей структурой, для контроля трансформации поддерживающей структуры между сжатой конфигурацией и развернутой конфигурацией.
28. Катетерный аппарат по п.27, в котором контрольный провод по существу выровнен вдоль спиральной оси и функционально связан с дистальным концом спиральной структуры, так чтобы осевое перемещение контрольного провода вдоль спиральной оси контролировало трансформацию поддерживающей структуры между сжатой конфигурацией и развернутой конфигурациями.
29. Катетерный аппарат по п.28, в котором перемещение контрольного провода по оси в дистальном направлении уменьшает радиальное расстояние от первого и второго элементов, доставляющих энергию, до центральной оси.
30. Катетерный аппарат по п.29, в котором перемещение контрольного провода по оси в дистальном направлении увеличивает длину спирали и уменьшает диаметр спирали.
31. Катетерный аппарат по п.27, в котором спиральная структура сконструирована с возможностью вращения по отношению к контрольному проводу.
32. Катетерный аппарат по п.27, дополнительно включающий ограничительный элемент, расположенный вдоль спиральной оси, для ограничения перемещения контрольного провода по оси.
33. Катетерный аппарат по п.27, в котором контрольный провод содержит центральную полость, и в котором катетерный аппарат дополнительно содержит проволочный направитель, расположенный в центральной полости контрольного провода для размещения поддерживающей структуры в целевом участке лечения вдоль почечной артерии.
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| RU2013123775/14A RU2013123775A (ru) | 2010-10-25 | 2011-10-25 | Катетерные устройства, содержащие группы из нескольких электродов, для почечной нейромодуляции и соответствующие системы и способы |
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