Vaster.ang.s, Sweden

J Bertil Hok


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 16(Granted Patents)


Company Filing History:


Years Active: 1991

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1 patent (USPTO):Explore Patents

Title: J Bertil Hok: Innovator in NMR Diagnostics

Introduction

J Bertil Hok is a notable inventor based in Vasterängs, Sweden. He has made significant contributions to the field of medical diagnostics, particularly through his innovative work on stethoscopes designed for use in nuclear magnetic resonance (NMR) diagnostics. His unique approach to patient monitoring has the potential to enhance the accuracy and effectiveness of medical screenings.

Latest Patents

Hok holds a patent for a stethoscope specifically designed for NMR diagnostics. This invention includes a bell chest piece that captures audible heart and breathing sounds from patients. It features a flexible hollow tube that transmits these sounds to a microphone member positioned outside the maximum field strength zone of the NMR equipment. The microphone converts acoustic signals into electrical signals, which are then transmitted optically to receivers that convert them back into electrical signals corresponding to the audible sounds.

Career Highlights

J Bertil Hok is associated with Hok Instrument AB, where he continues to develop innovative medical devices. His work has been instrumental in bridging the gap between traditional auscultation methods and advanced diagnostic technologies. Hok's dedication to improving patient care through innovation is evident in his patent and ongoing projects.

Collaborations

Hok collaborates with Valerie Bythell, contributing to the advancement of medical instrumentation and diagnostics. Their partnership exemplifies the importance of teamwork in driving innovation in healthcare technology.

Conclusion

J Bertil Hok's contributions to NMR diagnostics through his patented stethoscope demonstrate his commitment to enhancing medical technology. His work not only reflects his ingenuity but also has the potential to significantly impact patient monitoring and diagnostics in the medical field.

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