KR101814855B1 - 개선된 수술용 임플란트 장치 및 이의 제조 및 사용을 위한 방법 - Google Patents
개선된 수술용 임플란트 장치 및 이의 제조 및 사용을 위한 방법 Download PDFInfo
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- KR101814855B1 KR101814855B1 KR1020137019803A KR20137019803A KR101814855B1 KR 101814855 B1 KR101814855 B1 KR 101814855B1 KR 1020137019803 A KR1020137019803 A KR 1020137019803A KR 20137019803 A KR20137019803 A KR 20137019803A KR 101814855 B1 KR101814855 B1 KR 101814855B1
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Abstract
Description
도 1은 내부이식편이 비교적 팽창된 형태인 상태에서 본 발명에 따른 선택적으로 팽창 및 수축가능한 내부이식편의 근위 부분의 예시적인 실시 형태의 단편적인 사시도.
도 2는 내부이식편이 비교적 수축된 형태인 상태에서 도 1의 선택적으로 팽창 및 수축가능한 내부이식편의 단편적인 사시도.
도 3은 격자 구조물을 추가로 포함하는 본 발명에 따른 내부이식편의 근위 부분의 또 다른 예시적인 실시 형태의 단편적인 사시도.
도 4a는 내부이식편이 부분적으로 수축된 형태인 상태에서 도 3의 내부이식편의 단편적인 사시도.
도 4b는 내부이식편이 부분적으로 팽창된 형태인 상태에서 도 3의 내부이식편의 단편적인 사시도.
도 4c는 내부이식편이 완전히 팽창된 형태인 상태에서 도 3의 내부이식편의 단편적인 사시도.
도 5a는 조절 공구에 의해 마이크로실린더 고정 기구의 결합에 앞서 연계된 조절 공구를 갖는 마이크로실린더 고정 기구의 예시적인 실시 형태의 단편적이고 부분적으로 은폐된 사시도.
도 5b는 조절 공구에 의한 마이크로실린더 고정 기구의 결합 상태에서 도 5b의 조절 공구 및 마이크로실린더 고정 기구의 단편적이고 부분적으로 은폐된 사시도.
도 5c는 마이크로실린더 고정 기구로부터 조절 공구의 조절 및 분리 이후에 도 5b의 조절 공구 및 마이크로실린더 고정 기구의 예시적인 실시 형태의 단편적이고 부분적으로 은폐된 사시도.
도 6a는 타인이 마이크로실린더의 줄무늬를 포착한 상태에서, 도 5a의 단면선 A-A를 따라 가이드 불릿과 마이크로실린더의 축방향 단면도.
도 6b는 도 5a의 단면선 B-B를 따른 조절 공구의 축방향 단면도.
도 6c는 도 5b의 단면선 C-C를 따른 마이크로실린더의 축방향 단면도.
도 6d는 타인이 조절 공구에 의해 마이크로실린더로부터 제거된 상태에서, 조절 부재가 없는 도 5b의 단면선 D-D를 따른 마이크로실린더, 가이드 불릿 및 공구 덮개의 축방향 단면도.
도 6e는 조절 공구가 또한 평활한 외측을 가지며 직사각형 단면 형상을 갖는 줄무늬를 갖는 본 발명에 따른 조절 공구 덮개 및 마이크로실린더 고정 기구의 또 다른 예시적인 실시 형태의 축방향 단면도.
도 6f는 타인이 마이크로실린더의 줄무늬 내에 포함되고 마이크로실린더가 삼각형 단면 형상을 갖는 줄무늬를 포함하는, 본 발명에 따른 마이크로실린더 고정 기구의 또 다른 예시적인 실시 형태의 축방향 단면도.
도 6g는 타인이 조절 공구에 의해 마이크로실린더로부터 제거되는, 본 발명에 따른 조절 공구 및 도 6f의 마이크로실린더 고정 기구의 축방향 단면도.
도 7a는 제어식 캐치 기구가 분리된 상태인, 본 발명에 따른 조절 제어 고정 기구의 예시적인 실시 형태의 종방향 부분 단면도.
도 7b는 제어식 캐치 기구가 결합된 상태인, 도 7a의 조절 제어 고정 기구의 종방향 부분 단면도.
도 8a는 조절 공구 덮개에 의해 마이크로실린더 고정 기구의 결합에 앞서 연계된 조절 공구 덮개 및 동일하지 않은 길이의 내부 고정 타인을 갖는, 본 발명에 따른 마이크로실린더 고정 기구의 예시적인 실시 형태의 단편적이고 부분적으로 은폐된 사시도.
도 8b는 조절 공구 덮개에 의해 마이크로실린더 고정 기구가 결합된 상태인, 도 7a의 조절 공구 덮개 및 마이크로실린더 고정 기구의 단편적이고 부분적으로 은폐된 사시도.
도 8c는 조절 공구 덮개와 마이크로실린더 고정 기구가 조절 및 결합해제된 이후, 도 7b의 조절 공구 덮개 및 마이크로실린더 고정 기구의 단편적이고 부분적으로 은폐된 사시도.
도 9a는 타인이 비-연장 상태인, 본 발명에 따른 예시적인 내부이식편 내의 팽창된 압축가능한 폼 개스킷에 의해 덮인 리텐션 타인의 축방향 단면도.
도 9b는 본 발명에 따른 예시적인 내부이식편 내에서 팽창된 봉합식 칼라에 의해 압축가능한 폼 개스킷을 통하여 배치되고 노출된 도 9a의 리텐션 타인의 단편적인 사시도.
도 10a는 계면 커프가 대동맥 동맥류 낭에 근접한 대동맥 내의 원하는 수용부 부위로 혈관내 가이드와이어에 걸쳐서 배치되지만 이 내에서 팽창되지 않는, 본 발명에 따른 예시적인 혈관내 계면 커프의 단편적인 축방향 단면도.
도 10b는 도 10a의 계면 커프의 단편적인 가로방향 단면도.
도 11a는 A-A'의 수준에서 대동맥 동맥류 낭에 근접한 대동맥 내의 원하는 수용부 부위에서 대동맥 벽의 리텐션 타인이 결합되고, 봉합부를 형성하기 위하여 대동맥 내의 혈관내 계면 커프가 팽창된 상태에서, 도 10a의 계면 커프의 단편적인 축방향 단면도.
도 11b는 도 11a의 계면 커프의 단편적인 가로방향 단면도.
도 12는 계면 커프의 강성의 커프 내에 고정된 내부이식편의 전달에 따라, 도 10a의 계면 커프의 단편적인 축방향 단면도.
도 13은 조절 공구가 분리되고 제거되며 가이드와이어가 제거된 상태에서 도 12의 계면 커프의 단편적인 축방향 단면도.
도 14a는 내부이식편의 루멘의 외측에 있는 격자가 조절 부재의 제어식 회전에 의해 반경방향으로 변위될 수 있고 격자 구조물이 수축된 상태인, 본 발명에 따른 능동 제어식 내부이식편의 예시적인 실시 형태의 단편적인 사시도.
도 14b는 격자 구조물이 팽창된 상태인 도 14a의 능동 제어식 내부이식편의 단편적인 사시도.
도 15a는 본 발명에 따르는 조절식 혈관 캐뉼라의 예시적인 실시 형태의 측면 사시도.
도 15b는 조절식 봉합 장치가 비-배치, 수축된 위치에 있고, 수용부 혈관 내의 도 15a의 조절식 혈관 캐뉼라의 측면 사시 및 부분적으로 은폐된 도면.
도 15c는 조절식 봉합 장치가 배치되고 팽창된 위치에 있는, 도 15b의 조절식 혈관 캐뉼라의 측면 사시 및 부분적으로 은폐된 도면.
Claims (16)
- 수술용 임플란트로서,
임플란트 몸체와,
임플란트 몸체의 일부에 부착되며 적어도 하나의 토크 전달 샤프트를 갖는, 선택적으로 조절가능하고 주변방향으로 팽창 및 수축이 가능한 칼라를 포함하며,
토크 전달 샤프트의 회전에 의해 칼라 및 임플란트 몸체의 일부의 팽창 또는 수축 구조 변경을 유도함으로써 해부학적 오리피스 내에서 임플란트 몸체의 이식이 정상 생리학적 조건에서 내부에 봉합부를 형성하는 것을 허용하는, 수술용 임플란트. - 제1항에 있어서,
임플란트 몸체의 일부는 주변방향으로 팽창되는 커프이고,
조절가능한 칼라는 칼라의 팽창 및 수축을 유도하도록 작동가능한 캐치를 포함하는, 수술용 임플란트. - 제2항에 있어서,
임플란트 몸체의 일부는 커프가 배열되는 근위 부분인, 수술용 임플란트. - 제2항에 있어서,
임플란트 몸체의 일부는 근위 부분이고,
조절가능한 칼라는 주변방향으로 팽창되는 커프에 작동가능하게 연결되며,
상기 수술용 임플란트는 캐치에 제거가능하게 연결된 조절 공구를 더 포함하고, 상기 조절 공구의 연결은, 조절 공구가 캐치를 반대 방향으로 회전시키면, 칼라가 팽창 또는 수축하여 커프를 주변방향으로 각각 팽창 또는 수축시킴으로써 해부학적 오리피스 내에서 임플란트 몸체의 적어도 근위 부분이 정밀 봉합되게 하는 방식으로 이루어지는, 수술용 임플란트. - 제4항에 있어서,
조절 공구는 내부에 캐치를 안내하도록 형상화된 제어 덮개를 포함하는, 수술용 임플란트. - 제2항에 있어서,
임플란트 몸체는 외부 직경을 가지며,
임플란트 몸체 및 칼라는 외부 직경보다 작은 직경을 갖는 전달 카테터 내에 배치되도록 접힘가능한, 수술용 임플란트. - 수술용 임플란트로서,
임플란트 몸체와,
임플란트 몸체의 일부에 부착되며 적어도 하나의 토크 전달 샤프트를 갖는, 선택적으로 조절가능하고 능동적으로 제어되며 주변방향으로 팽창 및 수축이 가능한 칼라를 포함하며,
토크 전달 샤프트의 회전에 의해 팽창 방향 및 수축 방향으로 반복적으로 칼라 및 임플란트 몸체의 일부의 구조 변경을 능동적으로 제어함으로써 해부학적 오리피스 내에서 임플란트 몸체의 이식이 정상 생리학적 조건에서 내부에 봉합부를 형성하는 것을 허용하는, 수술용 임플란트. - 삭제
- 삭제
- 삭제
- 삭제
- 삭제
- 삭제
- 삭제
- 삭제
- 삭제
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EP4306085A3 (en) | 2024-03-27 |
CN107242891A (zh) | 2017-10-13 |
EP3646818B1 (en) | 2024-05-01 |
EP2658478B1 (en) | 2019-09-18 |
EP2658478A4 (en) | 2017-03-29 |
CN103491899B (zh) | 2017-04-19 |
JP2014507200A (ja) | 2014-03-27 |
KR101953056B1 (ko) | 2019-02-27 |
CN103491899A (zh) | 2014-01-01 |
CN111195163B (zh) | 2022-04-01 |
CN111195163A (zh) | 2020-05-26 |
EP2658478A1 (en) | 2013-11-06 |
CN107242891B (zh) | 2020-02-18 |
WO2012092408A4 (en) | 2012-08-23 |
US20200113669A1 (en) | 2020-04-16 |
US10507097B2 (en) | 2019-12-17 |
KR20180004830A (ko) | 2018-01-12 |
EP4306085A2 (en) | 2024-01-17 |
WO2012092408A1 (en) | 2012-07-05 |
US12329630B2 (en) | 2025-06-17 |
CA2823328A1 (en) | 2012-07-05 |
US20230128901A1 (en) | 2023-04-27 |
US20120239133A1 (en) | 2012-09-20 |
US20170172724A1 (en) | 2017-06-22 |
US11540911B2 (en) | 2023-01-03 |
CA2823328C (en) | 2019-11-19 |
KR20140074250A (ko) | 2014-06-17 |
US9585743B2 (en) | 2017-03-07 |
EP3646818A1 (en) | 2020-05-06 |
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