File:STETHOSCOPE.jpg
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Summary
[edit]DescriptionSTETHOSCOPE.jpg |
English: The stethoscope is an acoustic medical device for auscultation, or listening to the internal sounds of an animal or human body. It typically has a small disc-shaped resonator that is placed against the chest, and two tubes connected to earpieces. It is often used to listen to lung and heart sounds. It is also used to listen to intestines and blood flow in arteries and veins. In combination with a sphygmomanometer, it is commonly used for measurements of blood pressure.
The stethoscope was invented in France in 1816 by René Laennec at the Necker-Enfants Malades Hospital in Paris. It consisted of a wooden tube and was monaural. Laennec invented the stethoscope because he was uncomfortable placing his ear on women's chests to hear heart sounds. He observed that a rolled piece of paper, placed between the patient's chest and his ear, could amplify heart sounds without requiring physical contact. Laennec's device was similar to the common ear trumpet, a historical form of hearing aid; indeed, his invention was almost indistinguishable in structure and function from the trumpet, which was commonly called a "microphone". Laennec called his device the "stethoscope" (stetho- + -scope, "chest scope"), and he called its use "mediate auscultation", because it was auscultation with a tool intermediate between the patient's body and the physician's ear. Acoustic stethoscopes are familiar to most people, and operate on the transmission of sound from the chest piece, via air-filled hollow tubes, to the listener's ears. The chestpiece usually consists of two sides that can be placed against the patient for sensing sound: a diaphragm (plastic disc) or bell (hollow cup). If the diaphragm is placed on the patient, body sounds vibrate the diaphragm, creating acoustic pressure waves which travel up the tubing to the listener's ears. If the bell is placed on the patient, the vibrations of the skin directly produce acoustic pressure waves traveling up to the listener's ears. The bell transmits low frequency sounds, while the diaphragm transmits higher frequency sounds. This two-sided stethoscope was invented by Rappaport and Sprague in the early part of the 20th century. One problem with acoustic stethoscopes was that the sound level was extremely low. This problem was surmounted in 1999 with the invention of the stratified continuous (inner) lumen, and the kinetic acoustic mechanism in 2002. Stethoscopes are often considered as a symbol of healthcare professionals, as various healthcare providers are often seen or depicted with stethoscopes hanging around their necks. A 2012 research paper claimed that the stethoscope, when compared to other medical equipment, had the highest positive impact on the perceived trustworthiness of the practitioner seen with it. |
Date | |
Source | Own work |
Author | Pkd2016 |
Camera location | 26° 52′ 02.89″ N, 80° 55′ 16.66″ E | View this and other nearby images on: OpenStreetMap | 26.867470; 80.921295 |
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This image was uploaded as part of Wiki Loves Monuments 2018.
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 10:26, 28 September 2018 | 3,264 × 1,836 (678 KB) | Pkd2016 (talk | contribs) | User created page with UploadWizard |
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Camera manufacturer | vivo |
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Camera model | vivo Y51L |
Exposure time | 10/213 sec (0.046948356807512) |
ISO speed rating | 100 |
Date and time of data generation | 22:11, 22 September 2018 |
Lens focal length | 2.94 mm |
Latitude | 26° 52′ 2.89″ N |
Longitude | 80° 55′ 16.66″ E |
Altitude | 0 meters above sea level |
Horizontal resolution | 72 dpi |
Vertical resolution | 72 dpi |
Y and C positioning | Centered |
Exif version | 2.2 |
Date and time of digitizing | 12:00, 8 December 2002 |
Meaning of each component |
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APEX shutter speed | 4.413 |
APEX aperture | 2 |
APEX exposure bias | 1 |
Flash | Flash did not fire, compulsory flash suppression |
Supported Flashpix version | 1 |
Color space | sRGB |
Exposure index | 0 |
Scene control | Low gain up |
GPS time (atomic clock) | 16:41 |
GPS date | 22 September 2018 |
Structured data
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22 September 2018
26°52'2.892"N, 80°55'16.662"E
0.04694835680751173708 second
2.94 millimetre
100
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