최소 단어 이상 선택하여야 합니다.
최대 10 단어까지만 선택 가능합니다.
SAI
다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
NTIS 바로가기다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
DataON 바로가기다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
Edison 바로가기다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
Kafe 바로가기국가/구분 | United States(US) Patent 등록 |
---|---|
국제특허분류(IPC7판) |
|
출원번호 | US-0650775 (2012-10-12) |
등록번호 | US-8870792 (2014-10-28) |
발명자 / 주소 |
|
출원인 / 주소 |
|
대리인 / 주소 |
|
인용정보 | 피인용 횟수 : 136 인용 특허 : 414 |
A physiological acoustic monitoring system receives physiological data from an acoustic sensor, down-samples the data to generate raw audio of breathing sounds and compresses the raw audio. The acoustic monitoring system has an acoustic sensor signal responsive to tracheal sounds in a person. An A/D
A physiological acoustic monitoring system receives physiological data from an acoustic sensor, down-samples the data to generate raw audio of breathing sounds and compresses the raw audio. The acoustic monitoring system has an acoustic sensor signal responsive to tracheal sounds in a person. An A/D converter is responsive to the sensor signal so as to generate breathing sound data. A decimation filter and mixer down-samples the breathing sound data to raw audio data. A coder/compressor generates compressed audio data from the raw audio data. A decoder/decompressor decodes and decompresses the compressed audio data into decompressed audio data. The decompressed audio data is utilized to generate respiration-related parameters in real-time. The compressed audio data is stored and retrieved so as to generate respiration-related parameters in non-real-time. The real-time and non-real-time parameters are compared to verify matching results across multiple monitors.
1. An acoustic monitoring system inputs an acoustic sensor signal responsive to tracheal sounds of a person and generates breath tags and a respiration rate, the breath tags representing the acoustic envelope of the tracheal sounds and the respiration rate representing the inverse period of the acou
1. An acoustic monitoring system inputs an acoustic sensor signal responsive to tracheal sounds of a person and generates breath tags and a respiration rate, the breath tags representing the acoustic envelope of the tracheal sounds and the respiration rate representing the inverse period of the acoustic envelope, the breath tags and respiration rate having a sufficiently low bandwidth to share a data channel with other physiological parameters, the acoustic monitor comprising: an acoustic sensor input;an A/D converter that digitizes the sensor input and outputs a digitized sensor signal;a decimation filter and mixer that reduces the data rate of the digitized sensor signal and outputs a digitized raw audio; andan acoustic parameter processor that generates a respiration rate and breath tags in response to the digitized raw audio. 2. The acoustic monitoring system according to claim 1 further comprising a coder/compressor that compresses the digitized raw audio to generate compressed audio data, the compressed audio data is stored and retrieved so as to generate respiration-related parameters in non-real-time. 3. The acoustic monitoring system according to claim 2 further comprising a decoder/decompressor that decompresses the compressed audio data for the acoustic parameter processor. 4. The acoustic monitoring system according to claim 3 further comprising a D/A converter that inputs the digitized raw audio and generates a raw audio analog signal for local playback and listening to the acoustic sensor signal. 5. The acoustic monitoring system according to claim 4 further comprising a transmission of the compressed audio to a remote location as a troubleshooting aid at a remote monitor. 6. An acoustic monitoring method comprising: receiving a sensor signal responsive to respiratory sounds of a living being;digitizing the sensor signal so as to generate acoustic data;extracting an envelope from the acoustic data;defining an idealized envelope from the extracted envelope;describing the idealized envelope as a plurality of breath tags; andtransmitting the breath tags over a data channel. 7. The acoustic monitoring method according to claim 6 further comprising: receiving the breath tags from the data channel;synthesizing a reconstructed envelope in response to the breath tags; andgenerating reconstructed acoustic data by filling the envelope with an artificial waveform. 8. The acoustic monitoring method according to claim 7 wherein the artificial waveform is white noise. 9. The acoustic monitoring method according to claim 8 further comprising: detecting a physiological feature in the extracted envelope; andincluding the physiological feature in the breath tags. 10. The acoustic monitoring method according to claim 9 wherein the synthesizing further comprises modifying the reconstructed envelope with the detected physiological feature. 11. The acoustic monitoring method according to claim 10 wherein the physiological feature is at least one of wheezing and coughing. 12. The acoustic monitoring method according to claim 11 further comprising approximately reproducing the respiratory sounds by playing the reconstructed acoustic data on an audio transducer. 13. An acoustic monitor comprising: a sensor signal responsive to respiratory sounds of a living being;an A/D converter that digitizes the sensor signal into acoustic data; anda parameter generator that extracts a respiratory sound envelope from the acoustic data so as to generate a breath tag,the breath tag transmitted over a data channel as a representation of the respiratory sounds. 14. The acoustic monitor according to claim 13 further comprising a remote monitoring station that receives the breath tag and a corresponding respiration rate, the monitoring station synthesizing an envelope from the breath tag and the respiration rate and filing the envelope with an artificial waveform so as to generate reconstituted respiratory sounds. 15. The acoustic monitoring method according to claim 14 wherein the artificial waveform is white noise. 16. The acoustic monitor according to claim 15 further comprising: a decimation filter and mixer that down-samples the acoustic data to raw audio data;a D/A converter that converts the raw audio data to a raw audio signal; anda speaker that plays the raw audio signal. 17. The acoustic monitor according to claim 16 further wherein the parameter generator detects a physiological feature in the extracted envelope and includes the physiological feature in the breath tag. 18. The acoustic monitor according to claim 17 wherein the remote monitor modifies the reconstructed envelope with the detected physiological feature. 19. The acoustic monitor according to claim 18 further comprising an audio transducer that approximately reproduces the reconstructed acoustic data as compared to the raw audio signal. 20. The acoustic monitor according to claim 19 further comprising a compressor that generates compressed audio data, the compressed audio data stored and retrieved so as to generate respiration-related parameters in non-real-time.
해당 특허가 속한 카테고리에서 활용도가 높은 상위 5개 콘텐츠를 보여줍니다.
더보기 버튼을 클릭하시면 더 많은 관련자료를 살펴볼 수 있습니다.
IPC | Description |
---|---|
A | 생활필수품 |
A62 | 인명구조; 소방(사다리 E06C) |
A62B | 인명구조용의 기구, 장치 또는 방법(특히 의료용에 사용되는 밸브 A61M 39/00; 특히 물에서 쓰이는 인명구조 장치 또는 방법 B63C 9/00; 잠수장비 B63C 11/00; 특히 항공기에 쓰는 것, 예. 낙하산, 투출좌석 B64D; 특히 광산에서 쓰이는 구조장치 E21F 11/00) |
A62B-1/08 | .. 윈치 또는 풀리에 제동기구가 있는 것 |
내보내기 구분 |
|
---|---|
구성항목 |
관리번호, 국가코드, 자료구분, 상태, 출원번호, 출원일자, 공개번호, 공개일자, 등록번호, 등록일자, 발명명칭(한글), 발명명칭(영문), 출원인(한글), 출원인(영문), 출원인코드, 대표IPC 관리번호, 국가코드, 자료구분, 상태, 출원번호, 출원일자, 공개번호, 공개일자, 공고번호, 공고일자, 등록번호, 등록일자, 발명명칭(한글), 발명명칭(영문), 출원인(한글), 출원인(영문), 출원인코드, 대표출원인, 출원인국적, 출원인주소, 발명자, 발명자E, 발명자코드, 발명자주소, 발명자 우편번호, 발명자국적, 대표IPC, IPC코드, 요약, 미국특허분류, 대리인주소, 대리인코드, 대리인(한글), 대리인(영문), 국제공개일자, 국제공개번호, 국제출원일자, 국제출원번호, 우선권, 우선권주장일, 우선권국가, 우선권출원번호, 원출원일자, 원출원번호, 지정국, Citing Patents, Cited Patents |
저장형식 |
|
메일정보 |
|
안내 |
총 건의 자료가 검색되었습니다. 다운받으실 자료의 인덱스를 입력하세요. (1-10,000) 검색결과의 순서대로 최대 10,000건 까지 다운로드가 가능합니다. 데이타가 많을 경우 속도가 느려질 수 있습니다.(최대 2~3분 소요) 다운로드 파일은 UTF-8 형태로 저장됩니다. ~ |
Copyright KISTI. All Rights Reserved.
AI-Helper는 오픈소스 모델을 사용합니다. 사용하고 있는 오픈소스 모델과 라이센스는 아래에서 확인할 수 있습니다.
AI-Helper uses Open Source Models. You can find the source code of these open source models, along with applicable license information below. (helpdesk@kisti.re.kr)
OpenAI의 API Key를 브라우저에 등록하여야 ChatGPT 모델을 사용할 수 있습니다.
등록키는 삭제 버튼을 누르거나, PDF 창을 닫으면 삭제됩니다.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.