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  1. Virtual tissue staining in 3-D, pioneered through the VISTACT platform, is an AI-driven technique that applies traditional histological color markers to high-resolution, greyscale micro-computed tomography (µCT) scans. This enables the non-destructive, three-dimensional analysis of pathological tissue changes without the need to physically slice and chemically stain delicate samples.
    #Pathology #MedicalPhysics #ArtificialIntelligence #ComputedTomography #Histology
    sflorg.com/2026/06/path0618260

  2. Virtual tissue staining in 3-D, pioneered through the VISTACT platform, is an AI-driven technique that applies traditional histological color markers to high-resolution, greyscale micro-computed tomography (µCT) scans. This enables the non-destructive, three-dimensional analysis of pathological tissue changes without the need to physically slice and chemically stain delicate samples.
    #Pathology #MedicalPhysics #ArtificialIntelligence #ComputedTomography #Histology
    sflorg.com/2026/06/path0618260

  3. Virtual tissue staining in 3-D, pioneered through the VISTACT platform, is an AI-driven technique that applies traditional histological color markers to high-resolution, greyscale micro-computed tomography (µCT) scans. This enables the non-destructive, three-dimensional analysis of pathological tissue changes without the need to physically slice and chemically stain delicate samples.
    #Pathology #MedicalPhysics #ArtificialIntelligence #ComputedTomography #Histology
    sflorg.com/2026/06/path0618260

  4. Virtual tissue staining in 3-D, pioneered through the VISTACT platform, is an AI-driven technique that applies traditional histological color markers to high-resolution, greyscale micro-computed tomography (µCT) scans. This enables the non-destructive, three-dimensional analysis of pathological tissue changes without the need to physically slice and chemically stain delicate samples.
    #Pathology #MedicalPhysics #ArtificialIntelligence #ComputedTomography #Histology
    sflorg.com/2026/06/path0618260

  5. Virtual tissue staining in 3-D, pioneered through the VISTACT platform, is an AI-driven technique that applies traditional histological color markers to high-resolution, greyscale micro-computed tomography (µCT) scans. This enables the non-destructive, three-dimensional analysis of pathological tissue changes without the need to physically slice and chemically stain delicate samples.
    #Pathology #MedicalPhysics #ArtificialIntelligence #ComputedTomography #Histology
    sflorg.com/2026/06/path0618260

  6. 🎓 PhD postion in Medical #Physics on Efficient #AdaptiveProtonTherapy

    #Groningen #AI #AIjob

    We are seeking a passionate and driven PhD student:

    with a master’s degree in #Physics, #Engineering, #Mathematics, and/or #ComputerScience.
    with a strong background in – and interest for – #MedicalPhysics and #ArtificialIntelligence.
    with solid scripting skills, ideally including #Python and C/#C++.
    with excellent communication skills (including in English).

    werkenbijumcg.nl/-/vacatures/p

  7. 🎓 PhD postion in Medical #Physics on Efficient #AdaptiveProtonTherapy

    #Groningen #AI #AIjob

    We are seeking a passionate and driven PhD student:

    with a master’s degree in #Physics, #Engineering, #Mathematics, and/or #ComputerScience.
    with a strong background in – and interest for – #MedicalPhysics and #ArtificialIntelligence.
    with solid scripting skills, ideally including #Python and C/#C++.
    with excellent communication skills (including in English).

    werkenbijumcg.nl/-/vacatures/p

  8. 🎓 PhD postion in Medical #Physics on Efficient #AdaptiveProtonTherapy

    #Groningen #AI #AIjob

    We are seeking a passionate and driven PhD student:

    with a master’s degree in #Physics, #Engineering, #Mathematics, and/or #ComputerScience.
    with a strong background in – and interest for – #MedicalPhysics and #ArtificialIntelligence.
    with solid scripting skills, ideally including #Python and C/#C++.
    with excellent communication skills (including in English).

    werkenbijumcg.nl/-/vacatures/p

  9. 🎓 PhD postion in Medical #Physics on Efficient #AdaptiveProtonTherapy

    #Groningen #AI #AIjob

    We are seeking a passionate and driven PhD student:

    with a master’s degree in #Physics, #Engineering, #Mathematics, and/or #ComputerScience.
    with a strong background in – and interest for – #MedicalPhysics and #ArtificialIntelligence.
    with solid scripting skills, ideally including #Python and C/#C++.
    with excellent communication skills (including in English).

    werkenbijumcg.nl/-/vacatures/p

  10. 🎓 PhD postion in Medical #Physics on Efficient #AdaptiveProtonTherapy

    #Groningen #AI #AIjob

    We are seeking a passionate and driven PhD student:

    with a master’s degree in #Physics, #Engineering, #Mathematics, and/or #ComputerScience.
    with a strong background in – and interest for – #MedicalPhysics and #ArtificialIntelligence.
    with solid scripting skills, ideally including #Python and C/#C++.
    with excellent communication skills (including in English).

    werkenbijumcg.nl/-/vacatures/p

  11. @otfrom
    Nuclear Medicine is both diagnostic and therapeutic.
    Isotopes can be introduced into the body to allow specific imaging or to see how the carrier behaves in the body.
    Isotopes are used for radiotherapy.
    Neither use case is connected to nuclear power plants.

    #MedicalPhysics

  12. @otfrom
    Nuclear Medicine is both diagnostic and therapeutic.
    Isotopes can be introduced into the body to allow specific imaging or to see how the carrier behaves in the body.
    Isotopes are used for radiotherapy.
    Neither use case is connected to nuclear power plants.

    #MedicalPhysics

  13. @otfrom
    Nuclear Medicine is both diagnostic and therapeutic.
    Isotopes can be introduced into the body to allow specific imaging or to see how the carrier behaves in the body.
    Isotopes are used for radiotherapy.
    Neither use case is connected to nuclear power plants.

    #MedicalPhysics

  14. @otfrom
    Nuclear Medicine is both diagnostic and therapeutic.
    Isotopes can be introduced into the body to allow specific imaging or to see how the carrier behaves in the body.
    Isotopes are used for radiotherapy.
    Neither use case is connected to nuclear power plants.

    #MedicalPhysics

  15. @otfrom
    Nuclear Medicine is both diagnostic and therapeutic.
    Isotopes can be introduced into the body to allow specific imaging or to see how the carrier behaves in the body.
    Isotopes are used for radiotherapy.
    Neither use case is connected to nuclear power plants.

    #MedicalPhysics

  16. 'The Modern Technology of Radiation Oncology, Vol 4 : A Compendium for Medical Physicists and Radiation Oncologists' - a book from Medical Physics Publishing on #ScienceOpen:

    🔖 scienceopen.com/book?vid=bdf6d

    #MedicalPhysics #RadiationOncology #Dosimetry #RadiationTherapy

  17. 'The Modern Technology of Radiation Oncology, Vol 4 : A Compendium for Medical Physicists and Radiation Oncologists' - a book from Medical Physics Publishing on #ScienceOpen:

    🔖 scienceopen.com/book?vid=bdf6d

    #MedicalPhysics #RadiationOncology #Dosimetry #RadiationTherapy

  18. 'The Modern Technology of Radiation Oncology, Vol 4 : A Compendium for Medical Physicists and Radiation Oncologists' - a book from Medical Physics Publishing on #ScienceOpen:

    🔖 scienceopen.com/book?vid=bdf6d

    #MedicalPhysics #RadiationOncology #Dosimetry #RadiationTherapy

  19. Medical Physics Publishing (MPP) is a non-profit publisher of books written by and for physicists, residents, radiologists, and technologists — keeping the #MedicalPhysics community up-to-date.

    📚 scienceopen.com/collection/MPP

  20. Medical Physics Publishing (MPP) is a non-profit publisher of books written by and for physicists, residents, radiologists, and technologists — keeping the #MedicalPhysics community up-to-date.

    📚 scienceopen.com/collection/MPP

  21. Medical Physics Publishing (MPP) is a non-profit publisher of books written by and for physicists, residents, radiologists, and technologists — keeping the #MedicalPhysics community up-to-date.

    📚 scienceopen.com/collection/MPP

  22. Medical Physics Publishing (MPP) is a non-profit publisher providing textbooks, reference materials, and study guides that keep the #MedicalPhysics community up-to-date: scienceopen.com/collection/MPP

  23. Medical Physics Publishing (MPP) is a non-profit publisher providing textbooks, reference materials, and study guides that keep the #MedicalPhysics community up-to-date: scienceopen.com/collection/MPP

  24. Medical Physics Publishing (MPP) is a non-profit publisher providing textbooks, reference materials, and study guides that keep the #MedicalPhysics community up-to-date: scienceopen.com/collection/MPP

  25. Just Published

    Quantitative Ultrasound in Soft Tissues

    link.springer.com/book/10.1007

    Quantitative ultrasound continues to mature as a research field and is primed to make a swift transition to routine preclinical and clinical applications. This second edition contains a comprehensive update to cover the latest advances in the field over the past 10 years.

    Enjoy!

    #BiomedicalEngineering #Imaging #Biophysics #MedicalPhysics #Books

  26. Just Published

    Quantitative Ultrasound in Soft Tissues

    link.springer.com/book/10.1007

    Quantitative ultrasound continues to mature as a research field and is primed to make a swift transition to routine preclinical and clinical applications. This second edition contains a comprehensive update to cover the latest advances in the field over the past 10 years.

    Enjoy!

    #BiomedicalEngineering #Imaging #Biophysics #MedicalPhysics #Books

  27. Just Published

    Quantitative Ultrasound in Soft Tissues

    link.springer.com/book/10.1007

    Quantitative ultrasound continues to mature as a research field and is primed to make a swift transition to routine preclinical and clinical applications. This second edition contains a comprehensive update to cover the latest advances in the field over the past 10 years.

    Enjoy!

    #BiomedicalEngineering #Imaging #Biophysics #MedicalPhysics #Books

  28. Just Published

    Quantitative Ultrasound in Soft Tissues

    link.springer.com/book/10.1007

    Quantitative ultrasound continues to mature as a research field and is primed to make a swift transition to routine preclinical and clinical applications. This second edition contains a comprehensive update to cover the latest advances in the field over the past 10 years.

    Enjoy!

    #BiomedicalEngineering #Imaging #Biophysics #MedicalPhysics #Books

  29. Retrospective #MotionCorrection for Brain #MRI: A Technical Description of SAMER by Daniel Polak (Siemens Healthineers), Stephen Cauley (Massachusetts General Hospital, MA, USA), and colleagues.
    The SAMER algorithm will reduce the computational burden of motion estimation by leveraging an ultra-fast scout scan along with the repeated acquisition of a limited number of additional k-space encoding lines.
    Learn more at marketing.webassets.siemens-he
    #magnetomworld #medphys #medicalphysics

  30. Retrospective #MotionCorrection for Brain #MRI: A Technical Description of SAMER by Daniel Polak (Siemens Healthineers), Stephen Cauley (Massachusetts General Hospital, MA, USA), and colleagues.
    The SAMER algorithm will reduce the computational burden of motion estimation by leveraging an ultra-fast scout scan along with the repeated acquisition of a limited number of additional k-space encoding lines.
    Learn more at marketing.webassets.siemens-he
    #magnetomworld #medphys #medicalphysics

  31. Retrospective #MotionCorrection for Brain #MRI: A Technical Description of SAMER by Daniel Polak (Siemens Healthineers), Stephen Cauley (Massachusetts General Hospital, MA, USA), and colleagues.
    The SAMER algorithm will reduce the computational burden of motion estimation by leveraging an ultra-fast scout scan along with the repeated acquisition of a limited number of additional k-space encoding lines.
    Learn more at marketing.webassets.siemens-he
    #magnetomworld #medphys #medicalphysics

  32. How to Navigate the ‘Bermuda Triangle’ of SNR, scan time, and resolution.
    Joachim Graessner takes the mystery out of parameter changes and explains their mutual dependencies.
    Learn more at magnetomworld.siemens-healthin
    #magnetomworld #MRI #medphys #medicalphysics

  33. How to Navigate the ‘Bermuda Triangle’ of SNR, scan time, and resolution.
    Joachim Graessner takes the mystery out of parameter changes and explains their mutual dependencies.
    Learn more at magnetomworld.siemens-healthin
    #magnetomworld #MRI #medphys #medicalphysics

  34. How to Navigate the ‘Bermuda Triangle’ of SNR, scan time, and resolution.
    Joachim Graessner takes the mystery out of parameter changes and explains their mutual dependencies.
    Learn more at magnetomworld.siemens-healthin
    #magnetomworld #MRI #medphys #medicalphysics

  35. How to Navigate the ‘Bermuda Triangle’ of SNR, scan time, and resolution.
    Joachim Graessner takes the mystery out of parameter changes and explains their mutual dependencies.
    Learn more at magnetomworld.siemens-healthin
    #magnetomworld #MRI #medphys #medicalphysics

  36. How to Navigate the ‘Bermuda Triangle’ of SNR, scan time, and resolution.
    Joachim Graessner takes the mystery out of parameter changes and explains their mutual dependencies.
    Learn more at magnetomworld.siemens-healthin
    #magnetomworld #MRI #medphys #medicalphysics

  37. Please take a few moments to view the President's Monthly Minute, Dr. Ehsan Samei's brief video highlighting notable February events to members of the Association.

    vimeo.com/794643503

  38. Please take a minute (or 2m 12s to be exact!) for Dr. Ehsan Samei’s New Year message - his first , a mechanism to keep our membership abreast of major happenings within the Association.

    vimeo.com/785936583

  39. youtu.be/Ap0orGCiou8

    A very well told narrative of the Therac 25 radiation overdose incidents. Very important to understand for all medical professionals - technology can kill if due diligence is not performed
    #Radonc #MedicalError #RadiationSafety #MedicalPhysics #PatientSafety #LINAC

  40. youtu.be/Ap0orGCiou8

    A very well told narrative of the Therac 25 radiation overdose incidents. Very important to understand for all medical professionals - technology can kill if due diligence is not performed
    #Radonc #MedicalError #RadiationSafety #MedicalPhysics #PatientSafety #LINAC

  41. youtu.be/Ap0orGCiou8

    A very well told narrative of the Therac 25 radiation overdose incidents. Very important to understand for all medical professionals - technology can kill if due diligence is not performed
    #Radonc #MedicalError #RadiationSafety #MedicalPhysics #PatientSafety #LINAC

  42. youtu.be/Ap0orGCiou8

    A very well told narrative of the Therac 25 radiation overdose incidents. Very important to understand for all medical professionals - technology can kill if due diligence is not performed
    #Radonc #MedicalError #RadiationSafety #MedicalPhysics #PatientSafety #LINAC