• 제목/요약/키워드: Very large real-time data

검색결과 132건 처리시간 0.018초

THE CURRENT STATUS OF BIOMEDICAL ENGINEERING IN THE USA

  • Webster, John G.
    • 대한의용생체공학회:학술대회논문집
    • /
    • 대한의용생체공학회 1992년도 춘계학술대회
    • /
    • pp.27-47
    • /
    • 1992
  • Engineers have developed new instruments that aid in diagnosis and therapy Ultrasonic imaging has provided a nondamaging method of imaging internal organs. A complex transducer emits ultrasonic waves at many angles and reconstructs a map of internal anatomy and also velocities of blood in vessels. Fast computed tomography permits reconstruction of the 3-dimensional anatomy and perfusion of the heart at 20-Hz rates. Positron emission tomography uses certain isotopes that produce positrons that react with electrons to simultaneously emit two gamma rays in opposite directions. It locates the region of origin by using a ring of discrete scintillation detectors, each in electronic coincidence with an opposing detector. In magnetic resonance imaging, the patient is placed in a very strong magnetic field. The precessing of the hydrogen atoms is perturbed by an interrogating field to yield two-dimensional images of soft tissue having exceptional clarity. As an alternative to radiology image processing, film archiving, and retrieval, picture archiving and communication systems (PACS) are being implemented. Images from computed radiography, magnetic resonance imaging (MRI), nuclear medicine, and ultrasound are digitized, transmitted, and stored in computers for retrieval at distributed work stations. In electrical impedance tomography, electrodes are placed around the thorax. 50-kHz current is injected between two electrodes and voltages are measured on all other electrodes. A computer processes the data to yield an image of the resistivity of a 2-dimensional slice of the thorax. During fetal monitoring, a corkscrew electrode is screwed into the fetal scalp to measure the fetal electrocardiogram. Correlations with uterine contractions yield information on the status of the fetus during delivery To measure cardiac output by thermodilution, cold saline is injected into the right atrium. A thermistor in the right pulmonary artery yields temperature measurements, from which we can calculate cardiac output. In impedance cardiography, we measure the changes in electrical impedance as the heart ejects blood into the arteries. Motion artifacts are large, so signal averaging is useful during monitoring. An intraarterial blood gas monitoring system permits monitoring in real time. Light is sent down optical fibers inserted into the radial artery, where it is absorbed by dyes, which reemit the light at a different wavelength. The emitted light travels up optical fibers where an external instrument determines O2, CO2, and pH. Therapeutic devices include the electrosurgical unit. A high-frequency electric arc is drawn between the knife and the tissue. The arc cuts and the heat coagulates, thus preventing blood loss. Hyperthermia has demonstrated antitumor effects in patients in whom all conventional modes of therapy have failed. Methods of raising tumor temperature include focused ultrasound, radio-frequency power through needles, or microwaves. When the heart stops pumping, we use the defibrillator to restore normal pumping. A brief, high-current pulse through the heart synchronizes all cardiac fibers to restore normal rhythm. When the cardiac rhythm is too slow, we implant the cardiac pacemaker. An electrode within the heart stimulates the cardiac muscle to contract at the normal rate. When the cardiac valves are narrowed or leak, we implant an artificial valve. Silicone rubber and Teflon are used for biocompatibility. Artificial hearts powered by pneumatic hoses have been implanted in humans. However, the quality of life gradually degrades, and death ensues. When kidney stones develop, lithotripsy is used. A spark creates a pressure wave, which is focused on the stone and fragments it. The pieces pass out normally. When kidneys fail, the blood is cleansed during hemodialysis. Urea passes through a porous membrane to a dialysate bath to lower its concentration in the blood. The blind are able to read by scanning the Optacon with their fingertips. A camera scans letters and converts them to an array of vibrating pins. The deaf are able to hear using a cochlear implant. A microphone detects sound and divides it into frequency bands. 22 electrodes within the cochlea stimulate the acoustic the acoustic nerve to provide sound patterns. For those who have lost muscle function in the limbs, researchers are implanting electrodes to stimulate the muscle. Sensors in the legs and arms feed back signals to a computer that coordinates the stimulators to provide limb motion. For those with high spinal cord injury, a puff and sip switch can control a computer and permit the disabled person operate the computer and communicate with the outside world.

  • PDF

적응형 필터와 가변 임계값을 적용하여 잡음에 강인한 심전도 R-피크 검출 (Noise-robust electrocardiogram R-peak detection with adaptive filter and variable threshold)

  • 세이푸르;최철형;김시경;박인덕;김영필
    • 한국산학기술학회논문지
    • /
    • 제18권12호
    • /
    • pp.126-134
    • /
    • 2017
  • 심전도(ECG) 신호에서 R-피크를 추출하는 기법에 대하여 많은 연구가 진행 되어 왔으며, 다양한 방법으로 구현되어 왔다. 그러나 이러한 검출 방법 대부분은 실시간 휴대용 심전도 장치에서 구현하기가 복잡하고 어려운 단점이 있다. R-피크 검출을 위해서는 심전도 데이터에 대하여 베이스라인 드리프트 및 상용전원 잡음 제거 등의 적절한 전처리 및 후가공이 필요하며, 특히 적응형 필터를 활용한 기법에서는 적절한 임계값을 선택하는 것이 중요하다. 적응형 필터의 임계값을 추출하는 방식에서는 고정형(Fixed) 및 적응형(adaptive)으로 구분할 수 있다. 고정 임계 값 추출 방식은 고정된 임계값 보다 낮은 값의 입력이 들어오는 경우에 R-피크 값을 감지하지 못하는 경우가 있으며, 적응 임계값 추출 방식은 때때로 잡음에 의한 잘못된 임계값을 도출하여, 다른 파형(P혹은 T파)의 피크를 감지하는 경우도 나타난다. 본 논문에서는 계산상의 복잡성이 적고, 코드 구현이 단순하면서도 잡음에 강인한 R-피크 검출 알고리즘을 제안한다. 제안된 방식은 앞서 설명한 임계값 추출 문제를 해결하기 위해서, 적응형 필터를 사용해, 심전도 신호에서 베이스 라인 드리프트 제거를 하여 적절한 임계값을 계산하도록 한다. 그리고 필터 처리된 심전도 신호의 최소 값과 최대 값을 사용하여 적절한 임계값이 자동으로 추출 되도록 한다. 그런 다음 심전도 신호로부터 R-피크를 검출하기 위해 임계값 아래에서 'neighborhood searching' 기법이 적용된다. 제안된 방법은 R-피크 검출의 정확도를 향상시키고, 계산 량을 줄여 검출 속도가 보다 빨라지도록 하였다. 다음으로 R-피크 값이 검출 되면, R-R interval 등의 값을 이용해 심박 수를 계산할 수 있도록 한다. 실험결과 심박 수 검출 정확도와 감도가 약 100%로 매우 높았음을 확인할 수 있었다.