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Philips Healthcare dti post processing
a ROI placement: three ROIs were placed at 1, 2, and 3 cm from the ganglion on each nerve root to measure the <t>DTI</t> parameter values of the nerve. b DTI raw image of an ALS patient. c DTI raw image of a healthy control. ( d – g ) FA, AD, RD, and MD parameter maps of the ALS patient. ( h – k FA, AD, RD, and MD parameter maps of the healthy control. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; DTI, <t>Diffusion</t> <t>tensor</t> <t>imaging;</t> FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity; ROI, Region of interest
Dti Post Processing, supplied by Philips Healthcare, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/dti post processing/product/Philips Healthcare
Average 86 stars, based on 1 article reviews
dti post processing - by Bioz Stars, 2026-06
86/100 stars

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1) Product Images from "DTI changes of brachial plexus nerve roots in amyotrophic lateral sclerosis and their correlation with electrophysiology"

Article Title: DTI changes of brachial plexus nerve roots in amyotrophic lateral sclerosis and their correlation with electrophysiology

Journal: European Radiology Experimental

doi: 10.1186/s41747-025-00645-3

a ROI placement: three ROIs were placed at 1, 2, and 3 cm from the ganglion on each nerve root to measure the DTI parameter values of the nerve. b DTI raw image of an ALS patient. c DTI raw image of a healthy control. ( d – g ) FA, AD, RD, and MD parameter maps of the ALS patient. ( h – k FA, AD, RD, and MD parameter maps of the healthy control. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; DTI, Diffusion tensor imaging; FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity; ROI, Region of interest
Figure Legend Snippet: a ROI placement: three ROIs were placed at 1, 2, and 3 cm from the ganglion on each nerve root to measure the DTI parameter values of the nerve. b DTI raw image of an ALS patient. c DTI raw image of a healthy control. ( d – g ) FA, AD, RD, and MD parameter maps of the ALS patient. ( h – k FA, AD, RD, and MD parameter maps of the healthy control. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; DTI, Diffusion tensor imaging; FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity; ROI, Region of interest

Techniques Used: Control, Diffusion-based Assay, Imaging

Diffusion tensor imaging parameters of ALS patients and healthy volunteers. * p < 0.05; ** p < 0.01. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity
Figure Legend Snippet: Diffusion tensor imaging parameters of ALS patients and healthy volunteers. * p < 0.05; ** p < 0.01. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity

Techniques Used: Diffusion-based Assay, Imaging

Correlations between diffusion tensor imaging parameters of brachial plexus nerve roots and ALSFRS-R score, ALSFRS-UL score, electrophysiological of median nerve (MN), ulnar nerve (UN) and radial nerve (RN). Correlation of FA ( a ), AD ( b ), RD ( c ), and MD ( d ) with ALSFRS-R score, ALSFRS-UL score, electrophysiological of MN, UN and RN, respectively. AD, Axial diffusivity; ALSFRS-R, Amyotrophic lateral sclerosis functional rating scale-revised; ALSFRS-UL, ALSFRS-upper limb; CMAP, Compound muscle action potential; FA, Fractional anisotropy; MCV, Motor nerve conduction velocity; MD, Mean diffusivity; RD, Radial diffusivity
Figure Legend Snippet: Correlations between diffusion tensor imaging parameters of brachial plexus nerve roots and ALSFRS-R score, ALSFRS-UL score, electrophysiological of median nerve (MN), ulnar nerve (UN) and radial nerve (RN). Correlation of FA ( a ), AD ( b ), RD ( c ), and MD ( d ) with ALSFRS-R score, ALSFRS-UL score, electrophysiological of MN, UN and RN, respectively. AD, Axial diffusivity; ALSFRS-R, Amyotrophic lateral sclerosis functional rating scale-revised; ALSFRS-UL, ALSFRS-upper limb; CMAP, Compound muscle action potential; FA, Fractional anisotropy; MCV, Motor nerve conduction velocity; MD, Mean diffusivity; RD, Radial diffusivity

Techniques Used: Diffusion-based Assay, Imaging, Functional Assay



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a ROI placement: three ROIs were placed at 1, 2, and 3 cm from the ganglion on each nerve root to measure the <t>DTI</t> parameter values of the nerve. b DTI raw image of an ALS patient. c DTI raw image of a healthy control. ( d – g ) FA, AD, RD, and MD parameter maps of the ALS patient. ( h – k FA, AD, RD, and MD parameter maps of the healthy control. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; DTI, <t>Diffusion</t> <t>tensor</t> <t>imaging;</t> FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity; ROI, Region of interest
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a ROI placement: three ROIs were placed at 1, 2, and 3 cm from the ganglion on each nerve root to measure the <t>DTI</t> parameter values of the nerve. b DTI raw image of an ALS patient. c DTI raw image of a healthy control. ( d – g ) FA, AD, RD, and MD parameter maps of the ALS patient. ( h – k FA, AD, RD, and MD parameter maps of the healthy control. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; DTI, <t>Diffusion</t> <t>tensor</t> <t>imaging;</t> FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity; ROI, Region of interest
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a ROI placement: three ROIs were placed at 1, 2, and 3 cm from the ganglion on each nerve root to measure the <t>DTI</t> parameter values of the nerve. b DTI raw image of an ALS patient. c DTI raw image of a healthy control. ( d – g ) FA, AD, RD, and MD parameter maps of the ALS patient. ( h – k FA, AD, RD, and MD parameter maps of the healthy control. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; DTI, <t>Diffusion</t> <t>tensor</t> <t>imaging;</t> FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity; ROI, Region of interest
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Image Search Results


a ROI placement: three ROIs were placed at 1, 2, and 3 cm from the ganglion on each nerve root to measure the DTI parameter values of the nerve. b DTI raw image of an ALS patient. c DTI raw image of a healthy control. ( d – g ) FA, AD, RD, and MD parameter maps of the ALS patient. ( h – k FA, AD, RD, and MD parameter maps of the healthy control. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; DTI, Diffusion tensor imaging; FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity; ROI, Region of interest

Journal: European Radiology Experimental

Article Title: DTI changes of brachial plexus nerve roots in amyotrophic lateral sclerosis and their correlation with electrophysiology

doi: 10.1186/s41747-025-00645-3

Figure Lengend Snippet: a ROI placement: three ROIs were placed at 1, 2, and 3 cm from the ganglion on each nerve root to measure the DTI parameter values of the nerve. b DTI raw image of an ALS patient. c DTI raw image of a healthy control. ( d – g ) FA, AD, RD, and MD parameter maps of the ALS patient. ( h – k FA, AD, RD, and MD parameter maps of the healthy control. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; DTI, Diffusion tensor imaging; FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity; ROI, Region of interest

Article Snippet: Fourthly, in this study, DTI post-processing was performed using the Philips ISP workstation, a dedicated and standardized research platform provided by Philips.

Techniques: Control, Diffusion-based Assay, Imaging

Diffusion tensor imaging parameters of ALS patients and healthy volunteers. * p < 0.05; ** p < 0.01. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity

Journal: European Radiology Experimental

Article Title: DTI changes of brachial plexus nerve roots in amyotrophic lateral sclerosis and their correlation with electrophysiology

doi: 10.1186/s41747-025-00645-3

Figure Lengend Snippet: Diffusion tensor imaging parameters of ALS patients and healthy volunteers. * p < 0.05; ** p < 0.01. AD, Axial diffusivity; ALS, Amyotrophic lateral sclerosis; FA, Fractional anisotropy; MD, Mean diffusivity; RD, Radial diffusivity

Article Snippet: Fourthly, in this study, DTI post-processing was performed using the Philips ISP workstation, a dedicated and standardized research platform provided by Philips.

Techniques: Diffusion-based Assay, Imaging

Correlations between diffusion tensor imaging parameters of brachial plexus nerve roots and ALSFRS-R score, ALSFRS-UL score, electrophysiological of median nerve (MN), ulnar nerve (UN) and radial nerve (RN). Correlation of FA ( a ), AD ( b ), RD ( c ), and MD ( d ) with ALSFRS-R score, ALSFRS-UL score, electrophysiological of MN, UN and RN, respectively. AD, Axial diffusivity; ALSFRS-R, Amyotrophic lateral sclerosis functional rating scale-revised; ALSFRS-UL, ALSFRS-upper limb; CMAP, Compound muscle action potential; FA, Fractional anisotropy; MCV, Motor nerve conduction velocity; MD, Mean diffusivity; RD, Radial diffusivity

Journal: European Radiology Experimental

Article Title: DTI changes of brachial plexus nerve roots in amyotrophic lateral sclerosis and their correlation with electrophysiology

doi: 10.1186/s41747-025-00645-3

Figure Lengend Snippet: Correlations between diffusion tensor imaging parameters of brachial plexus nerve roots and ALSFRS-R score, ALSFRS-UL score, electrophysiological of median nerve (MN), ulnar nerve (UN) and radial nerve (RN). Correlation of FA ( a ), AD ( b ), RD ( c ), and MD ( d ) with ALSFRS-R score, ALSFRS-UL score, electrophysiological of MN, UN and RN, respectively. AD, Axial diffusivity; ALSFRS-R, Amyotrophic lateral sclerosis functional rating scale-revised; ALSFRS-UL, ALSFRS-upper limb; CMAP, Compound muscle action potential; FA, Fractional anisotropy; MCV, Motor nerve conduction velocity; MD, Mean diffusivity; RD, Radial diffusivity

Article Snippet: Fourthly, in this study, DTI post-processing was performed using the Philips ISP workstation, a dedicated and standardized research platform provided by Philips.

Techniques: Diffusion-based Assay, Imaging, Functional Assay