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Philips Healthcare 3d mechanical drawing of the eis system
Endorectal Immobilization <t>System.</t> <t>3D</t> Mechanical drawing of the <t>EIS</t> system highlighting the three main components of the system: The carbon-fibre base (CB), the indexed mechanical system (IS), and the probe apparatus (PR)
3d Mechanical Drawing Of The Eis System, supplied by Philips Healthcare, 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/3d+mechanical+drawing+of+the+eis+system/pmc04456701-57-5-33?v=Philips+Healthcare
Average 90 stars, based on 1 article reviews
3d mechanical drawing of the eis system - by Bioz Stars, 2026-08
90/100 stars

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1) Product Images from "Clinical evaluation of an endorectal immobilization system for use in prostate hypofractionated Stereotactic Ablative Body Radiotherapy (SABR)"

Article Title: Clinical evaluation of an endorectal immobilization system for use in prostate hypofractionated Stereotactic Ablative Body Radiotherapy (SABR)

Journal: Radiation Oncology (London, England)

doi: 10.1186/s13014-015-0426-4

Endorectal Immobilization System. 3D Mechanical drawing of the EIS system highlighting the three main components of the system: The carbon-fibre base (CB), the indexed mechanical system (IS), and the probe apparatus (PR)
Figure Legend Snippet: Endorectal Immobilization System. 3D Mechanical drawing of the EIS system highlighting the three main components of the system: The carbon-fibre base (CB), the indexed mechanical system (IS), and the probe apparatus (PR)

Techniques Used:

Intrafraction prostate displacement with EIS. Inverse Cumulative histogram of the 3D displacement, and left-right (L/R), superior-inferior (S/I), and anterior-posterior (A/P) axis displacements. Less than 1 % of 3D displacements were greater than 2.9 mm, and no displacements were ≥ 3.0 mm. Similarly, no translational displacements were ≥ 2.0 mm in the L/R and A/P axes, and none were ≥ 2.3 mm in the S/I axis
Figure Legend Snippet: Intrafraction prostate displacement with EIS. Inverse Cumulative histogram of the 3D displacement, and left-right (L/R), superior-inferior (S/I), and anterior-posterior (A/P) axis displacements. Less than 1 % of 3D displacements were greater than 2.9 mm, and no displacements were ≥ 3.0 mm. Similarly, no translational displacements were ≥ 2.0 mm in the L/R and A/P axes, and none were ≥ 2.3 mm in the S/I axis

Techniques Used:

Comparing prostate intrafraction motion magnitude. Prostate intrafraction motion results from multiple institutional trials using an endorectal balloon (ERB) for immobilization compared to the current study using an  EIS.  Patients treated with the EIS showed significantly reduced  3D  intrafraction motion for treatment times longer than 6 min. EM = Electromagnetic
Figure Legend Snippet: Comparing prostate intrafraction motion magnitude. Prostate intrafraction motion results from multiple institutional trials using an endorectal balloon (ERB) for immobilization compared to the current study using an EIS. Patients treated with the EIS showed significantly reduced 3D intrafraction motion for treatment times longer than 6 min. EM = Electromagnetic

Techniques Used:



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Philips Healthcare 3d mechanical drawing of the eis system
Endorectal Immobilization <t>System.</t> <t>3D</t> Mechanical drawing of the <t>EIS</t> system highlighting the three main components of the system: The carbon-fibre base (CB), the indexed mechanical system (IS), and the probe apparatus (PR)
3d Mechanical Drawing Of The Eis System, supplied by Philips Healthcare, 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/3d+mechanical+drawing+of+the+eis+system/pmc04456701-57-5-33?v=Philips+Healthcare
Average 90 stars, based on 1 article reviews
3d mechanical drawing of the eis system - by Bioz Stars, 2026-08
90/100 stars
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Endorectal Immobilization System. 3D Mechanical drawing of the EIS system highlighting the three main components of the system: The carbon-fibre base (CB), the indexed mechanical system (IS), and the probe apparatus (PR)

Journal: Radiation Oncology (London, England)

Article Title: Clinical evaluation of an endorectal immobilization system for use in prostate hypofractionated Stereotactic Ablative Body Radiotherapy (SABR)

doi: 10.1186/s13014-015-0426-4

Figure Lengend Snippet: Endorectal Immobilization System. 3D Mechanical drawing of the EIS system highlighting the three main components of the system: The carbon-fibre base (CB), the indexed mechanical system (IS), and the probe apparatus (PR)

Article Snippet: 3D Mechanical drawing of the EIS system highlighting the three main components of the system: The carbon-fibre base (CB), the indexed mechanical system (IS), and the probe apparatus (PR) Pinnacle3 (version 9.2, Koninklijke Philips NV, Eindhoven, Netherlands) was used for treatment planning.

Techniques:

Intrafraction prostate displacement with EIS. Inverse Cumulative histogram of the 3D displacement, and left-right (L/R), superior-inferior (S/I), and anterior-posterior (A/P) axis displacements. Less than 1 % of 3D displacements were greater than 2.9 mm, and no displacements were ≥ 3.0 mm. Similarly, no translational displacements were ≥ 2.0 mm in the L/R and A/P axes, and none were ≥ 2.3 mm in the S/I axis

Journal: Radiation Oncology (London, England)

Article Title: Clinical evaluation of an endorectal immobilization system for use in prostate hypofractionated Stereotactic Ablative Body Radiotherapy (SABR)

doi: 10.1186/s13014-015-0426-4

Figure Lengend Snippet: Intrafraction prostate displacement with EIS. Inverse Cumulative histogram of the 3D displacement, and left-right (L/R), superior-inferior (S/I), and anterior-posterior (A/P) axis displacements. Less than 1 % of 3D displacements were greater than 2.9 mm, and no displacements were ≥ 3.0 mm. Similarly, no translational displacements were ≥ 2.0 mm in the L/R and A/P axes, and none were ≥ 2.3 mm in the S/I axis

Article Snippet: 3D Mechanical drawing of the EIS system highlighting the three main components of the system: The carbon-fibre base (CB), the indexed mechanical system (IS), and the probe apparatus (PR) Pinnacle3 (version 9.2, Koninklijke Philips NV, Eindhoven, Netherlands) was used for treatment planning.

Techniques:

Comparing prostate intrafraction motion magnitude. Prostate intrafraction motion results from multiple institutional trials using an endorectal balloon (ERB) for immobilization compared to the current study using an  EIS.  Patients treated with the EIS showed significantly reduced  3D  intrafraction motion for treatment times longer than 6 min. EM = Electromagnetic

Journal: Radiation Oncology (London, England)

Article Title: Clinical evaluation of an endorectal immobilization system for use in prostate hypofractionated Stereotactic Ablative Body Radiotherapy (SABR)

doi: 10.1186/s13014-015-0426-4

Figure Lengend Snippet: Comparing prostate intrafraction motion magnitude. Prostate intrafraction motion results from multiple institutional trials using an endorectal balloon (ERB) for immobilization compared to the current study using an EIS. Patients treated with the EIS showed significantly reduced 3D intrafraction motion for treatment times longer than 6 min. EM = Electromagnetic

Article Snippet: 3D Mechanical drawing of the EIS system highlighting the three main components of the system: The carbon-fibre base (CB), the indexed mechanical system (IS), and the probe apparatus (PR) Pinnacle3 (version 9.2, Koninklijke Philips NV, Eindhoven, Netherlands) was used for treatment planning.

Techniques: