6-dof sensor Search Results


90
Intersense Inc 6-dof sensor
6 Dof Sensor, supplied by Intersense Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pm22975461-45-21-8?v=Intersense+Inc
Average 90 stars, based on 1 article reviews
6-dof sensor - by Bioz Stars, 2026-08
90/100 stars
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90
APDM Wearable Technologies imu apdm opal 6 sensor suite
Comparison of <t>IMU</t> and clinical <t>mocap</t> <t>ROM</t> values for pelvis and trunk. Individual subject trials are identified by specific color for each participant. The x axis shows mean value; y -axis shows mean difference between mocap and IMU. MC: mocap, IMU: inertial measurement unit, ULA: upper limit of agreement, LLA: lower limit of agreement, SE: standard error.
Imu Apdm Opal 6 Sensor Suite, supplied by APDM Wearable Technologies, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pmc11273649-131-18-19?v=APDM+Wearable+Technologies
Average 90 stars, based on 1 article reviews
imu apdm opal 6 sensor suite - by Bioz Stars, 2026-08
90/100 stars
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90
Medisystems Corporation 6 dof sensor
Comparison of <t>IMU</t> and clinical <t>mocap</t> <t>ROM</t> values for pelvis and trunk. Individual subject trials are identified by specific color for each participant. The x axis shows mean value; y -axis shows mean difference between mocap and IMU. MC: mocap, IMU: inertial measurement unit, ULA: upper limit of agreement, LLA: lower limit of agreement, SE: standard error.
6 Dof Sensor, supplied by Medisystems Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pmc07932179-84-22-35?v=Medisystems+Corporation
Average 90 stars, based on 1 article reviews
6 dof sensor - by Bioz Stars, 2026-08
90/100 stars
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90
Transmetra GmbH 6-dof force sensor
Comparison of <t>IMU</t> and clinical <t>mocap</t> <t>ROM</t> values for pelvis and trunk. Individual subject trials are identified by specific color for each participant. The x axis shows mean value; y -axis shows mean difference between mocap and IMU. MC: mocap, IMU: inertial measurement unit, ULA: upper limit of agreement, LLA: lower limit of agreement, SE: standard error.
6 Dof Force Sensor, supplied by Transmetra GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pm38522362-92-5-8?v=Transmetra+GmbH
Average 90 stars, based on 1 article reviews
6-dof force sensor - by Bioz Stars, 2026-08
90/100 stars
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90
CONMED Inc aurora 6 dof em sensor
Comparison of <t>IMU</t> and clinical <t>mocap</t> <t>ROM</t> values for pelvis and trunk. Individual subject trials are identified by specific color for each participant. The x axis shows mean value; y -axis shows mean difference between mocap and IMU. MC: mocap, IMU: inertial measurement unit, ULA: upper limit of agreement, LLA: lower limit of agreement, SE: standard error.
Aurora 6 Dof Em Sensor, supplied by CONMED Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pmc06282846-151-1-23?v=CONMED+Inc
Average 90 stars, based on 1 article reviews
aurora 6 dof em sensor - by Bioz Stars, 2026-08
90/100 stars
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90
ATI Industrial Automation 6 dof force torque sensor nano si-25
Experiment setup and design. ( a ) Participants were attached to an ergonomic handle mounted to a <t>force</t> <t>torque</t> <t>sensor</t> and were required to reach for targets using the recorded force signal and/or surface EMG recordings. ( b ) The experimental protocol for the 2 experiment sessions, where participants completed both sessions in a randomised order. A visualisation for each block is shown in ( c – f ). Depending on the block, participants controlled the position (indicated by a purple cross on the yellow cursor) and size (d)-(f) of the cursor to match different targets (shown in blue). In the NSTR ( e ), the cursor position was controlled by activation in the EMG-to-force null-space, where natural co-contraction was mapped to negative X-axis motion. In all other blocks force control was used. Possible target locations are shown in the Force/EMG calibration ( c ) and null-space target reaching blocks ( e ).
6 Dof Force Torque Sensor Nano Si 25, supplied by ATI Industrial Automation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pmc11375119-40-15-21?v=ATI+Industrial+Automation
Average 90 stars, based on 1 article reviews
6 dof force torque sensor nano si-25 - by Bioz Stars, 2026-08
90/100 stars
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90
Ascension Technologies Inc four 6dof electromagnetic sensors; sensors were attached above and below the knees on both legs using velcro straps
Experiment setup and design. ( a ) Participants were attached to an ergonomic handle mounted to a <t>force</t> <t>torque</t> <t>sensor</t> and were required to reach for targets using the recorded force signal and/or surface EMG recordings. ( b ) The experimental protocol for the 2 experiment sessions, where participants completed both sessions in a randomised order. A visualisation for each block is shown in ( c – f ). Depending on the block, participants controlled the position (indicated by a purple cross on the yellow cursor) and size (d)-(f) of the cursor to match different targets (shown in blue). In the NSTR ( e ), the cursor position was controlled by activation in the EMG-to-force null-space, where natural co-contraction was mapped to negative X-axis motion. In all other blocks force control was used. Possible target locations are shown in the Force/EMG calibration ( c ) and null-space target reaching blocks ( e ).
Four 6dof Electromagnetic Sensors; Sensors Were Attached Above And Below The Knees On Both Legs Using Velcro Straps, supplied by Ascension Technologies Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pmc08754350-133-35-25?v=Ascension+Technologies+Inc
Average 90 stars, based on 1 article reviews
four 6dof electromagnetic sensors; sensors were attached above and below the knees on both legs using velcro straps - by Bioz Stars, 2026-08
90/100 stars
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90
ATI Industrial Automation 6 dof force-torque sensors si-1900–80
Experiment setup and design. ( a ) Participants were attached to an ergonomic handle mounted to a <t>force</t> <t>torque</t> <t>sensor</t> and were required to reach for targets using the recorded force signal and/or surface EMG recordings. ( b ) The experimental protocol for the 2 experiment sessions, where participants completed both sessions in a randomised order. A visualisation for each block is shown in ( c – f ). Depending on the block, participants controlled the position (indicated by a purple cross on the yellow cursor) and size (d)-(f) of the cursor to match different targets (shown in blue). In the NSTR ( e ), the cursor position was controlled by activation in the EMG-to-force null-space, where natural co-contraction was mapped to negative X-axis motion. In all other blocks force control was used. Possible target locations are shown in the Force/EMG calibration ( c ) and null-space target reaching blocks ( e ).
6 Dof Force Torque Sensors Si 1900–80, supplied by ATI Industrial Automation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pmc07890148-308-11-15?v=ATI+Industrial+Automation
Average 90 stars, based on 1 article reviews
6 dof force-torque sensors si-1900–80 - by Bioz Stars, 2026-08
90/100 stars
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90
HeartLander Surgical 6-dof magnetic tracking sensor
Experiment setup and design. ( a ) Participants were attached to an ergonomic handle mounted to a <t>force</t> <t>torque</t> <t>sensor</t> and were required to reach for targets using the recorded force signal and/or surface EMG recordings. ( b ) The experimental protocol for the 2 experiment sessions, where participants completed both sessions in a randomised order. A visualisation for each block is shown in ( c – f ). Depending on the block, participants controlled the position (indicated by a purple cross on the yellow cursor) and size (d)-(f) of the cursor to match different targets (shown in blue). In the NSTR ( e ), the cursor position was controlled by activation in the EMG-to-force null-space, where natural co-contraction was mapped to negative X-axis motion. In all other blocks force control was used. Possible target locations are shown in the Force/EMG calibration ( c ) and null-space target reaching blocks ( e ).
6 Dof Magnetic Tracking Sensor, supplied by HeartLander Surgical, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pmc02826133-287-51-35?v=HeartLander+Surgical
Average 90 stars, based on 1 article reviews
6-dof magnetic tracking sensor - by Bioz Stars, 2026-08
90/100 stars
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90
ME-Messsysteme 6 dof sensor
Experiment setup and design. ( a ) Participants were attached to an ergonomic handle mounted to a <t>force</t> <t>torque</t> <t>sensor</t> and were required to reach for targets using the recorded force signal and/or surface EMG recordings. ( b ) The experimental protocol for the 2 experiment sessions, where participants completed both sessions in a randomised order. A visualisation for each block is shown in ( c – f ). Depending on the block, participants controlled the position (indicated by a purple cross on the yellow cursor) and size (d)-(f) of the cursor to match different targets (shown in blue). In the NSTR ( e ), the cursor position was controlled by activation in the EMG-to-force null-space, where natural co-contraction was mapped to negative X-axis motion. In all other blocks force control was used. Possible target locations are shown in the Force/EMG calibration ( c ) and null-space target reaching blocks ( e ).
6 Dof Sensor, supplied by ME-Messsysteme, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/10__1016_slash_j__proeng__2010__04__057-37-2-6?v=ME-Messsysteme
Average 90 stars, based on 1 article reviews
6 dof sensor - by Bioz Stars, 2026-08
90/100 stars
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90
ATI Industrial Automation 6 dof force and torque sensor ati ft-delta di60-660
Experiment setup and design. ( a ) Participants were attached to an ergonomic handle mounted to a <t>force</t> <t>torque</t> <t>sensor</t> and were required to reach for targets using the recorded force signal and/or surface EMG recordings. ( b ) The experimental protocol for the 2 experiment sessions, where participants completed both sessions in a randomised order. A visualisation for each block is shown in ( c – f ). Depending on the block, participants controlled the position (indicated by a purple cross on the yellow cursor) and size (d)-(f) of the cursor to match different targets (shown in blue). In the NSTR ( e ), the cursor position was controlled by activation in the EMG-to-force null-space, where natural co-contraction was mapped to negative X-axis motion. In all other blocks force control was used. Possible target locations are shown in the Force/EMG calibration ( c ) and null-space target reaching blocks ( e ).
6 Dof Force And Torque Sensor Ati Ft Delta Di60 660, supplied by ATI Industrial Automation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/pmc08800279-141-23-32?v=ATI+Industrial+Automation
Average 90 stars, based on 1 article reviews
6 dof force and torque sensor ati ft-delta di60-660 - by Bioz Stars, 2026-08
90/100 stars
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90
ATI Inc ati ft 15/50 6-dof force/torque sensors
Experiment setup and design. ( a ) Participants were attached to an ergonomic handle mounted to a <t>force</t> <t>torque</t> <t>sensor</t> and were required to reach for targets using the recorded force signal and/or surface EMG recordings. ( b ) The experimental protocol for the 2 experiment sessions, where participants completed both sessions in a randomised order. A visualisation for each block is shown in ( c – f ). Depending on the block, participants controlled the position (indicated by a purple cross on the yellow cursor) and size (d)-(f) of the cursor to match different targets (shown in blue). In the NSTR ( e ), the cursor position was controlled by activation in the EMG-to-force null-space, where natural co-contraction was mapped to negative X-axis motion. In all other blocks force control was used. Possible target locations are shown in the Force/EMG calibration ( c ) and null-space target reaching blocks ( e ).
Ati Ft 15/50 6 Dof Force/Torque Sensors, supplied by ATI Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/6-dof+sensor/10__1109_slash_tsmca__2003__817393-27-4-8?v=ATI+Inc
Average 90 stars, based on 1 article reviews
ati ft 15/50 6-dof force/torque sensors - by Bioz Stars, 2026-08
90/100 stars
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Image Search Results


Comparison of IMU and clinical mocap ROM values for pelvis and trunk. Individual subject trials are identified by specific color for each participant. The x axis shows mean value; y -axis shows mean difference between mocap and IMU. MC: mocap, IMU: inertial measurement unit, ULA: upper limit of agreement, LLA: lower limit of agreement, SE: standard error.

Journal: Bioengineering

Article Title: Validation of Pelvis and Trunk Range of Motion as Assessed Using Inertial Measurement Units

doi: 10.3390/bioengineering11070659

Figure Lengend Snippet: Comparison of IMU and clinical mocap ROM values for pelvis and trunk. Individual subject trials are identified by specific color for each participant. The x axis shows mean value; y -axis shows mean difference between mocap and IMU. MC: mocap, IMU: inertial measurement unit, ULA: upper limit of agreement, LLA: lower limit of agreement, SE: standard error.

Article Snippet: In this study, we measured the accuracy and reliability of the trunk and pelvis ROM measured using an IMU (APDM Opal 6 sensor suite) and its proprietary software package, Mobility Lab (version 4), compared to mocap.

Techniques: Comparison

Reliability of IMU and mocap  ROM  measurements.  IMU:  inertial measurement unit, RMSE: root mean square error.

Journal: Bioengineering

Article Title: Validation of Pelvis and Trunk Range of Motion as Assessed Using Inertial Measurement Units

doi: 10.3390/bioengineering11070659

Figure Lengend Snippet: Reliability of IMU and mocap ROM measurements. IMU: inertial measurement unit, RMSE: root mean square error.

Article Snippet: In this study, we measured the accuracy and reliability of the trunk and pelvis ROM measured using an IMU (APDM Opal 6 sensor suite) and its proprietary software package, Mobility Lab (version 4), compared to mocap.

Techniques:

Experiment setup and design. ( a ) Participants were attached to an ergonomic handle mounted to a force torque sensor and were required to reach for targets using the recorded force signal and/or surface EMG recordings. ( b ) The experimental protocol for the 2 experiment sessions, where participants completed both sessions in a randomised order. A visualisation for each block is shown in ( c – f ). Depending on the block, participants controlled the position (indicated by a purple cross on the yellow cursor) and size (d)-(f) of the cursor to match different targets (shown in blue). In the NSTR ( e ), the cursor position was controlled by activation in the EMG-to-force null-space, where natural co-contraction was mapped to negative X-axis motion. In all other blocks force control was used. Possible target locations are shown in the Force/EMG calibration ( c ) and null-space target reaching blocks ( e ).

Journal: Scientific Reports

Article Title: Control limitations in the null-space of the wrist muscle system

doi: 10.1038/s41598-024-69353-z

Figure Lengend Snippet: Experiment setup and design. ( a ) Participants were attached to an ergonomic handle mounted to a force torque sensor and were required to reach for targets using the recorded force signal and/or surface EMG recordings. ( b ) The experimental protocol for the 2 experiment sessions, where participants completed both sessions in a randomised order. A visualisation for each block is shown in ( c – f ). Depending on the block, participants controlled the position (indicated by a purple cross on the yellow cursor) and size (d)-(f) of the cursor to match different targets (shown in blue). In the NSTR ( e ), the cursor position was controlled by activation in the EMG-to-force null-space, where natural co-contraction was mapped to negative X-axis motion. In all other blocks force control was used. Possible target locations are shown in the Force/EMG calibration ( c ) and null-space target reaching blocks ( e ).

Article Snippet: The experiment was conducted using a fixed handle (Fig. a, ) attached to a 6 DoF force torque sensor (Nano SI-25, ATI Industrial Automation).

Techniques: Blocking Assay, Activation Assay, Control