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Ultrasonic Collection

In the picturesque region of Cumbria, amidst sprawling cattle farms, cutting-edge technology is revolutionizing veterinary practices

Background imageUltrasonic Collection: Cattle farming, vet pregnancy detecting cow using ultrasonic scanner

Cattle farming, vet pregnancy detecting cow using ultrasonic scanner and headset to see image in glasses, Cumbria, England, November

Background imageUltrasonic Collection: Ultrasound power tests C016 / 6464

Ultrasound power tests C016 / 6464
Ultrasound power tests. Researcher carrying out buoyancy tests to measure the power output of ultrasound devices. This method is a form of calorimetry and solid-state pyroelectrics

Background imageUltrasonic Collection: Ultrasound thermal test object casing C016 / 6490

Ultrasound thermal test object casing C016 / 6490
Ultrasound thermal test object casing. Expanded view of the casing used in a device known as a thermal test object (TTO). This is used for testing temperature rises caused by ultrasound beams

Background imageUltrasonic Collection: Ultrasound beam plotting tests C016 / 6455

Ultrasound beam plotting tests C016 / 6455
Ultrasound beam plotting tests. Researcher carrying out tests with ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound hydrophone calibration C016 / 6470

Ultrasound hydrophone calibration C016 / 6470
Ultrasound hydrophone calibration equipment. This equipment is used to calibrate hydrophones (underwater microphones) that are used to detect and measure ultrasound waves

Background imageUltrasonic Collection: Ultrasound thermal test object casing C016 / 6491

Ultrasound thermal test object casing C016 / 6491
Ultrasound thermal test object casing. Expanded view of the casing used in a device known as a thermal test object (TTO). This is used for testing temperature rises caused by ultrasound beams

Background imageUltrasonic Collection: Ultrasound power tests C016 / 6466

Ultrasound power tests C016 / 6466
Ultrasound power tests. Researcher carrying out buoyancy tests to measure the power output of ultrasound devices. This method is a form of calorimetry and solid-state pyroelectrics

Background imageUltrasonic Collection: Ultrasound beam plotting tests C016 / 6456

Ultrasound beam plotting tests C016 / 6456
Ultrasound beam plotting tests. Researcher carrying out tests with ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound beam plotting equipment C016 / 6458

Ultrasound beam plotting equipment C016 / 6458
Ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound beam plotting equipment C016 / 6450

Ultrasound beam plotting equipment C016 / 6450
Ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound (HIFU) transducers C016 / 6487

Ultrasound (HIFU) transducers C016 / 6487
Ultrasound (HIFU) transducers. High-intensity focused ultrasound (HIFU) transducers are used in medical research. They are capable of focusing ultrasound waves to very high intensities

Background imageUltrasonic Collection: Primary standard radiation force balance C016 / 6477

Primary standard radiation force balance C016 / 6477
Primary standard radiation force balance. Radiation force balances are used to measure the output power generated by transducers, devices that convert one form of energy to another

Background imageUltrasonic Collection: Ultrasound beam plotting tests C016 / 6460

Ultrasound beam plotting tests C016 / 6460
Ultrasound beam plotting tests. Researcher carrying out tests with ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound hydrophone calibration C016 / 6474

Ultrasound hydrophone calibration C016 / 6474
Ultrasound hydrophone calibration equipment. This equipment is used to calibrate hydrophones (underwater microphones) that are used to detect and measure ultrasound waves

Background imageUltrasonic Collection: Ultrasound power testing equipment C016 / 6468

Ultrasound power testing equipment C016 / 6468
Ultrasound power testing equipment. This equipment is used to carry out buoyancy tests to measure the power output of ultrasound devices

Background imageUltrasonic Collection: Ultrasound power tests C016 / 6465

Ultrasound power tests C016 / 6465
Ultrasound power tests. Researcher carrying out buoyancy tests to measure the power output of ultrasound devices. This method is a form of calorimetry and solid-state pyroelectrics

Background imageUltrasonic Collection: Ultrasound beam plotting equipment C016 / 6452

Ultrasound beam plotting equipment C016 / 6452
Ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound (HIFU) transducers C016 / 6488

Ultrasound (HIFU) transducers C016 / 6488
Ultrasound (HIFU) transducers. High-intensity focused ultrasound (HIFU) transducers are used in medical research. They are capable of focusing ultrasound waves to very high intensities

Background imageUltrasonic Collection: Ultrasound beam plotting tests C016 / 6454

Ultrasound beam plotting tests C016 / 6454
Ultrasound beam plotting tests. Researcher carrying out tests with ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound power tests C016 / 6467

Ultrasound power tests C016 / 6467
Ultrasound power tests. Researcher carrying out buoyancy tests to measure the power output of ultrasound devices. This method is a form of calorimetry and solid-state pyroelectrics

Background imageUltrasonic Collection: Ultrasound hydrophone calibration C016 / 6473

Ultrasound hydrophone calibration C016 / 6473
Ultrasound hydrophone calibration equipment. This equipment is used to calibrate hydrophones (underwater microphones) that are used to detect and measure ultrasound waves

Background imageUltrasonic Collection: Ultrasound thermal test object casing C016 / 6489

Ultrasound thermal test object casing C016 / 6489
Ultrasound thermal test object casing. Expanded view of the casing used in a device known as a thermal test object (TTO). This is used for testing temperature rises caused by ultrasound beams

Background imageUltrasonic Collection: Ultrasound beam plotting tests C016 / 6462

Ultrasound beam plotting tests C016 / 6462
Ultrasound beam plotting tests. Researcher carrying out tests with ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound beam plotting tests C016 / 6453

Ultrasound beam plotting tests C016 / 6453
Ultrasound beam plotting tests. Researcher carrying out tests with ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound thermal test object C016 / 6492

Ultrasound thermal test object C016 / 6492
Ultrasound thermal test object and sample. A thermal test object (TTO) is used for testing temperature rises caused by ultrasound beams

Background imageUltrasonic Collection: Ultrasound power testing equipment C016 / 6469

Ultrasound power testing equipment C016 / 6469
Ultrasound power testing equipment. This equipment is used to carry out buoyancy tests to measure the power output of ultrasound devices

Background imageUltrasonic Collection: Ultrasound hydrophone calibration C016 / 6471

Ultrasound hydrophone calibration C016 / 6471
Ultrasound hydrophone calibration equipment. This equipment is used to calibrate hydrophones (underwater microphones) that are used to detect and measure ultrasound waves

Background imageUltrasonic Collection: Ultrasound beam plotting equipment C016 / 6451

Ultrasound beam plotting equipment C016 / 6451
Ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound beam plotting equipment C016 / 6459

Ultrasound beam plotting equipment C016 / 6459
Ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound beam plotting tests C016 / 6457

Ultrasound beam plotting tests C016 / 6457
Ultrasound beam plotting tests. Researcher carrying out tests with ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasound hydrophone calibration C016 / 6475

Ultrasound hydrophone calibration C016 / 6475
Ultrasound hydrophone calibration equipment. This equipment is used to calibrate hydrophones (underwater microphones) that are used to detect and measure ultrasound waves

Background imageUltrasonic Collection: Ultrasound hydrophone calibration C016 / 6476

Ultrasound hydrophone calibration C016 / 6476
Ultrasound hydrophone calibration test. Researcher using equipment to calibrate hydrophones (underwater microphones) that are used to detect and measure ultrasound waves

Background imageUltrasonic Collection: Ultrasound beam plotting tests C016 / 6461

Ultrasound beam plotting tests C016 / 6461
Ultrasound beam plotting tests. Researcher carrying out tests with ultrasound beam plotting equipment. This equipment is used to accurately measure and plot the output of medical ultrasound devices

Background imageUltrasonic Collection: Ultrasonic Probes

Ultrasonic Probes
The Analytical Research Unit, Harwell : Measuring the beam characteristics of Ultrasonic probes. Date: March 1968

Background imageUltrasonic Collection: Transdermal drug delivery

Transdermal drug delivery methods, composite computer artwork. Transdermal devices deliver controlled doses of drugs through the skin directly into the bloodstream. At top is a transdermal patch


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In the picturesque region of Cumbria, amidst sprawling cattle farms, cutting-edge technology is revolutionizing veterinary practices. Enter the world scanners and headsets, where farmers are now able to detect pregnancy in cows with unprecedented accuracy. Equipped with a pair of futuristic glasses, these innovative devices allow veterinarians to visualize images captured by ultrasonic scanners. Gone are the days of relying solely on intuition or guesswork; this groundbreaking technology provides a clear window into the womb of expectant cows. But how does it work? Behind the scenes, rigorous tests ensure that these ultrasound devices deliver accurate results. Ultrasound power tests and thermal test object casings guarantee precision and reliability in every scan. Primary standard radiation force balances further enhance the quality control process, ensuring that no stone is left unturned when it comes to cow care. To perfect their craft even further, scientists conduct ultrasound beam plotting tests and hydrophone calibrations. These meticulous procedures fine-tune the equipment's ability to capture detailed images while maintaining safety standards for both animals and operators alike. With advancements like ultrasound beam plotting equipment at their disposal, veterinarians can confidently diagnose conditions early on. From detecting pregnancies to identifying potential health issues within livestock herds - all thanks to this remarkable technology. As we delve deeper into this realm of innovation, one thing becomes abundantly clear: Ultrasonic technology has become an indispensable tool for modern-day cattle farming practices. It not only ensures animal welfare but also empowers farmers with crucial information needed for efficient herd management. So next time you find yourself wandering through Cumbria's idyllic landscapes dotted with grazing cows, remember that behind those peaceful scenes lies a world driven by cutting-edge science – where ultrasonic hints pave the way towards healthier herds and brighter futures for our beloved bovine friends.