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"NASA Technical Reports Server (NTRS) 19940032950: Methodologies To Determine Forces On Bones And Muscles Of Body Segments During Exercise, Employing Compact Sensors Suitable For Use In Crowded Space Vehicles" and the language of the book is English.


“NASA Technical Reports Server (NTRS) 19940032950: Methodologies To Determine Forces On Bones And Muscles Of Body Segments During Exercise, Employing Compact Sensors Suitable For Use In Crowded Space Vehicles” Metadata:

  • Title: ➤  NASA Technical Reports Server (NTRS) 19940032950: Methodologies To Determine Forces On Bones And Muscles Of Body Segments During Exercise, Employing Compact Sensors Suitable For Use In Crowded Space Vehicles
  • Author: ➤  
  • Language: English

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  • Internet Archive ID: NASA_NTRS_Archive_19940032950

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"NASA Technical Reports Server (NTRS) 19940032950: Methodologies To Determine Forces On Bones And Muscles Of Body Segments During Exercise, Employing Compact Sensors Suitable For Use In Crowded Space Vehicles" Description:

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A complete description of an instrumented ergometer system, including the sensors, the data acquisition system, and the methodologies to calculate the kinematic parameters were initially developed at Tulane University. This work was continued by the PI at NASA Johnson Space Center, where a flight ergometer was instrumented and tested during a KC-135 Zero-Gravity flight. The sensors that form part of the system include EMG probes and accelerometers mounted on the subject using the ergometer, load cells to measure pedal forces, and encoders to measure position and orientation of the pedal (foot). Currently, data from the flight test is being analyzed and processed to calculate the kinematic parameters of the individual. The formulation developed during the initial months of the grant will be used for this purpose. The system's components are compact (all sensors are very small). A salient feature of the system and associated methodology to determine the kinematics is that although it uses accelerometers, position is not determined by integration. Position is determined by determining the angle of two frames of reference for which acceleration at one point is known in coordinates of both frames.

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