Raczynski lech (21 résultats)

Affiner la recherche

  • Livres (21)

à

Fourchette de prix personnalisée (EUR)

à

  • Langue : anglais

    Edité par Jagiellonian University Press, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : GreatBookPrices, Columbia, MD, Etats-UnisGreatBookPrices

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Occasion - Comme neuf

    EUR 36,89

    EUR 2,35 expédition 
    Expédition nationale : Etats-Unis

    Quantité disponible : 14 disponibles

    Etat : As New. Unread book in perfect condition.

  • Langue : anglais

    Edité par Jagiellonian University Press, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : GreatBookPrices, Columbia, MD, Etats-UnisGreatBookPrices

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 37,53

    EUR 2,35 expédition 
    Expédition nationale : Etats-Unis

    Quantité disponible : 14 disponibles

    Etat : New.

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, Krakow, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Grand Eagle Retail, Bensenville, IL, Etats-UnisGrand Eagle Retail

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 39,96

     Frais de port gratuits 
    Expédition nationale : Etats-Unis

    Quantité disponible : 1 disponible

    Paperback. Etat : new. Paperback. Positron Emission Tomography (PET) is a key technique in the medical imaging area, which allows to diagnose the organism functions and to track the tumor changes. In PET measurement the patient is injected with radiotracer, containing a large number of metastable atoms of radionuclide, that emmits positrons. As the result of positron annihilation, the two photons travelling off with nearly opposite directions are produced and registered by detection system positioned so that it surrounds the patient body. State-of-the-art PET scanners use scintillation crystals which are characterized by high detection efficiency of annihilation photons. In this context, it is worth to mention that the Jagiellonian PET (J-PET) Collaboration developed a novel whole-body PET scanner based on plastic scintillators. They are much cheaper than crystal scintillators, which gives the opportunity to reduce the high cost of PET scanners and make them more affordable. However, plastic scintillators have much lower detection efficiency of gamma quanta compared to inorganic scintillation crystals. This can be compensated by increasing the scanner field of view and improving the time resolution in the measurement of the time of flight of gamma quanta. The J-PET scanner consists of plastic scintillator strips read out at both ends by a pair of photomultipliers and arranged axially around a cylindrical tomograph tunnel. The axial coordinate of the annihilation photon interaction point in the scintillator strip is derived from the difference of the light propagation time measured with the pair of photomultipliers. The operational principles of the J-PET scanner are similar to conventional tomographs, except that the highly accurate time information is of paramount importance. Therefore, the J-PET scanner demands a preparation of novel methods on each step of the data processing. The goal of the work presented in this dissertation is a development of the signal and image processing algorithms taking into account uniqueness of the J-PET detector. The proposed methods include: signal recovery based on samples of a waveform registered on photomultiplier output, reconstruction of position and time of interaction of annihilation photon in the scintillator strip, classification of PET events types and image reconstruction that operates exclusively in the image space. Due to the dissimilarity from the conventional PET scanners, majority of the methods presented in this dissertation are innovative solutions in digital signal and image processing in tomography. The Jagiellonian PET (J-PET) Collaboration developed a novel whole-body PET scanner based on plastic scintillators, which reduce the high cost of PET scanners. Lech Raczynski presents new approaches to developing signal and image processing algorithms that take into account the specifications of the J-PET detector. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.…

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, PL, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Rarewaves.com USA, London, LONDO, Royaume-UniRarewaves.com USA

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 39,99

     Frais de port gratuits 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 7 disponibles

    Paperback. Etat : New. Positron Emission Tomography (PET) is a key technique in the medical imaging area, which allows to diagnose the organism functions and to track the tumor changes. In PET measurement the patient is injected with radiotracer, containing a large number of metastable atoms of radionuclide, that emmits positrons. As the result of positron annihilation, the two photons travelling off with nearly opposite directions are produced and registered by detection system positioned so that it surrounds the patient body. State-of-the-art PET scanners use scintillation crystals which are characterized by high detection efficiency of annihilation photons. In this context, it is worth to mention that the Jagiellonian PET (J-PET) Collaboration developed a novel whole-body PET scanner based on plastic scintillators. They are much cheaper than crystal scintillators, which gives the opportunity to reduce the high cost of PET scanners and make them more affordable. However, plastic scintillators have much lower detection efficiency of gamma quanta compared to inorganic scintillation crystals. This can be compensated by increasing the scanner field of view and improving the time resolution in the measurement of the time of flight of gamma quanta. The J-PET scanner consists of plastic scintillator strips read out at both ends by a pair of photomultipliers and arranged axially around a cylindrical tomograph tunnel. The axial coordinate of the annihilation photon interaction point in the scintillator strip is derived from the difference of the light propagation time measured with the pair of photomultipliers. The operational principles of the J-PET scanner are similar to conventional tomographs, except that the highly accurate time information is of paramount importance. Therefore, the J-PET scanner demands a preparation of novel methods on each step of the data processing. The goal of the work presented in this dissertation is a development of the signal and image processing algorithms taking into account uniqueness of the J-PET detector. The proposed methods include: signal recovery based on samples of a waveform registered on photomultiplier output, reconstruction of position and time of interaction of annihilation photon in the scintillator strip, classification of PET events types and image reconstruction that operates exclusively in the image space. Due to the dissimilarity from the conventional PET scanners, majority of the methods presented in this dissertation are innovative solutions in digital signal and image processing in tomography.…

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : PBShop.store US, Wood Dale, IL, Etats-UnisPBShop.store US

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 40,08

     Frais de port gratuits 
    Expédition nationale : Etats-Unis

    Quantité disponible : 14 disponibles

    PAP. Etat : New. New Book. Shipped from UK. Established seller since 2000.

  • Langue : anglais

    Edité par Jagiellonian University Press, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Brook Bookstore On Demand, Napoli, NA, ItalieBrook Bookstore On Demand

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 38,84

    EUR 4,00 expédition 
    Expédition depuis Italie vers Etats-Unis

    Quantité disponible : 14 disponibles

    Etat : new.

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, PL, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Rarewaves USA, HEBRON, KY, Etats-UnisRarewaves USA

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 45,30

     Frais de port gratuits 
    Expédition nationale : Etats-Unis

    Quantité disponible : Plus de 20 disponibles

    Paperback. Etat : New. Positron Emission Tomography (PET) is a key technique in the medical imaging area, which allows to diagnose the organism functions and to track the tumor changes. In PET measurement the patient is injected with radiotracer, containing a large number of metastable atoms of radionuclide, that emmits positrons. As the result of positron annihilation, the two photons travelling off with nearly opposite directions are produced and registered by detection system positioned so that it surrounds the patient body. State-of-the-art PET scanners use scintillation crystals which are characterized by high detection efficiency of annihilation photons. In this context, it is worth to mention that the Jagiellonian PET (J-PET) Collaboration developed a novel whole-body PET scanner based on plastic scintillators. They are much cheaper than crystal scintillators, which gives the opportunity to reduce the high cost of PET scanners and make them more affordable. However, plastic scintillators have much lower detection efficiency of gamma quanta compared to inorganic scintillation crystals. This can be compensated by increasing the scanner field of view and improving the time resolution in the measurement of the time of flight of gamma quanta. The J-PET scanner consists of plastic scintillator strips read out at both ends by a pair of photomultipliers and arranged axially around a cylindrical tomograph tunnel. The axial coordinate of the annihilation photon interaction point in the scintillator strip is derived from the difference of the light propagation time measured with the pair of photomultipliers. The operational principles of the J-PET scanner are similar to conventional tomographs, except that the highly accurate time information is of paramount importance. Therefore, the J-PET scanner demands a preparation of novel methods on each step of the data processing. The goal of the work presented in this dissertation is a development of the signal and image processing algorithms taking into account uniqueness of the J-PET detector. The proposed methods include: signal recovery based on samples of a waveform registered on photomultiplier output, reconstruction of position and time of interaction of annihilation photon in the scintillator strip, classification of PET events types and image reconstruction that operates exclusively in the image space. Due to the dissimilarity from the conventional PET scanners, majority of the methods presented in this dissertation are innovative solutions in digital signal and image processing in tomography.…

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : PBShop.store UK, Fairford, GLOS, Royaume-UniPBShop.store UK

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 40,36

    EUR 5,91 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 14 disponibles

    PAP. Etat : New. New Book. Shipped from UK. Established seller since 2000.

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, 2023

    8323350159 / 9788323350156

    • Couverture souple
    • Édition originale

    Vendeur : Kennys Bookshop and Art Galleries Ltd., Galway, GY, IrlandeKennys Bookshop and Art Galleries Ltd.

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 37,52

    EUR 9,50 expédition 
    Expédition depuis Irlande vers Etats-Unis

    Quantité disponible : 14 disponibles

    Etat : New. 2022. 1st Edition. Paperback. . . . . .

  • Langue : anglais

    Edité par Jagiellonian University Press, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Majestic Books, Hounslow, Royaume-UniMajestic Books

    Vendeur avec une évaluation de 4 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 46,84

    EUR 7,65 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 3 disponibles

    Etat : New.

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Kennys Bookstore, Olney, MD, Etats-UnisKennys Bookstore

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 47,68

    EUR 9,33 expédition 
    Expédition nationale : Etats-Unis

    Quantité disponible : 14 disponibles

    Etat : New. 2022. 1st Edition. Paperback. . . . . . Books ship from the US and Ireland.

  • Langue : anglais

    Edité par Jagiellonian University Press, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Ria Christie Collections, Uxbridge, Royaume-UniRia Christie Collections

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 46,31

    EUR 11,03 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 14 disponibles

    Etat : New. In English.

  • Langue : anglais

    Edité par Jagiellonian University Press, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : GreatBookPricesUK, Woodford Green, Royaume-UniGreatBookPricesUK

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Occasion - Comme neuf

    EUR 40,16

    EUR 17,65 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 14 disponibles

    Etat : As New. Unread book in perfect condition.

  • Langue : anglais

    Edité par Jagiellonian University Press, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : GreatBookPricesUK, Woodford Green, Royaume-UniGreatBookPricesUK

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 40,24

    EUR 17,65 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 14 disponibles

    Etat : New.

  • Langue : anglais

    Edité par Jagiellonian University Press, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Books Puddle, Woodside, NY, Etats-UnisBooks Puddle

    Vendeur avec une évaluation de 4 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 63,70

    EUR 3,55 expédition 
    Expédition nationale : Etats-Unis

    Quantité disponible : 3 disponibles

    Etat : New.

  • Langue : anglais

    Edité par Jagiellonian Univ Pr, 2022

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Revaluation Books, Exeter, Royaume-UniRevaluation Books

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 64,20

    EUR 11,77 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 2 disponibles

    Paperback. Etat : Brand New. 124 pages. 9.45x6.69x0.35 inches. In Stock.

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, Krakow, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : AussieBookSeller, Truganina, VIC, AustralieAussieBookSeller

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 48,54

    EUR 32,88 expédition 
    Expédition depuis Australie vers Etats-Unis

    Quantité disponible : 1 disponible

    Paperback. Etat : new. Paperback. Positron Emission Tomography (PET) is a key technique in the medical imaging area, which allows to diagnose the organism functions and to track the tumor changes. In PET measurement the patient is injected with radiotracer, containing a large number of metastable atoms of radionuclide, that emmits positrons. As the result of positron annihilation, the two photons travelling off with nearly opposite directions are produced and registered by detection system positioned so that it surrounds the patient body. State-of-the-art PET scanners use scintillation crystals which are characterized by high detection efficiency of annihilation photons. In this context, it is worth to mention that the Jagiellonian PET (J-PET) Collaboration developed a novel whole-body PET scanner based on plastic scintillators. They are much cheaper than crystal scintillators, which gives the opportunity to reduce the high cost of PET scanners and make them more affordable. However, plastic scintillators have much lower detection efficiency of gamma quanta compared to inorganic scintillation crystals. This can be compensated by increasing the scanner field of view and improving the time resolution in the measurement of the time of flight of gamma quanta. The J-PET scanner consists of plastic scintillator strips read out at both ends by a pair of photomultipliers and arranged axially around a cylindrical tomograph tunnel. The axial coordinate of the annihilation photon interaction point in the scintillator strip is derived from the difference of the light propagation time measured with the pair of photomultipliers. The operational principles of the J-PET scanner are similar to conventional tomographs, except that the highly accurate time information is of paramount importance. Therefore, the J-PET scanner demands a preparation of novel methods on each step of the data processing. The goal of the work presented in this dissertation is a development of the signal and image processing algorithms taking into account uniqueness of the J-PET detector. The proposed methods include: signal recovery based on samples of a waveform registered on photomultiplier output, reconstruction of position and time of interaction of annihilation photon in the scintillator strip, classification of PET events types and image reconstruction that operates exclusively in the image space. Due to the dissimilarity from the conventional PET scanners, majority of the methods presented in this dissertation are innovative solutions in digital signal and image processing in tomography. The Jagiellonian PET (J-PET) Collaboration developed a novel whole-body PET scanner based on plastic scintillators, which reduce the high cost of PET scanners. Lech Raczynski presents new approaches to developing signal and image processing algorithms that take into account the specifications of the J-PET detector. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.…

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, PL, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Rarewaves USA United, HEBRON, KY, Etats-UnisRarewaves USA United

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 47,10

    EUR 44,44 expédition 
    Expédition nationale : Etats-Unis

    Quantité disponible : Plus de 20 disponibles

    Paperback. Etat : New. Positron Emission Tomography (PET) is a key technique in the medical imaging area, which allows to diagnose the organism functions and to track the tumor changes. In PET measurement the patient is injected with radiotracer, containing a large number of metastable atoms of radionuclide, that emmits positrons. As the result of positron annihilation, the two photons travelling off with nearly opposite directions are produced and registered by detection system positioned so that it surrounds the patient body. State-of-the-art PET scanners use scintillation crystals which are characterized by high detection efficiency of annihilation photons. In this context, it is worth to mention that the Jagiellonian PET (J-PET) Collaboration developed a novel whole-body PET scanner based on plastic scintillators. They are much cheaper than crystal scintillators, which gives the opportunity to reduce the high cost of PET scanners and make them more affordable. However, plastic scintillators have much lower detection efficiency of gamma quanta compared to inorganic scintillation crystals. This can be compensated by increasing the scanner field of view and improving the time resolution in the measurement of the time of flight of gamma quanta. The J-PET scanner consists of plastic scintillator strips read out at both ends by a pair of photomultipliers and arranged axially around a cylindrical tomograph tunnel. The axial coordinate of the annihilation photon interaction point in the scintillator strip is derived from the difference of the light propagation time measured with the pair of photomultipliers. The operational principles of the J-PET scanner are similar to conventional tomographs, except that the highly accurate time information is of paramount importance. Therefore, the J-PET scanner demands a preparation of novel methods on each step of the data processing. The goal of the work presented in this dissertation is a development of the signal and image processing algorithms taking into account uniqueness of the J-PET detector. The proposed methods include: signal recovery based on samples of a waveform registered on photomultiplier output, reconstruction of position and time of interaction of annihilation photon in the scintillator strip, classification of PET events types and image reconstruction that operates exclusively in the image space. Due to the dissimilarity from the conventional PET scanners, majority of the methods presented in this dissertation are innovative solutions in digital signal and image processing in tomography.…

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : moluna, Greven, Allemagnemoluna

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 49,17

    EUR 48,99 expédition 
    Expédition depuis Allemagne vers Etats-Unis

    Quantité disponible : Plus de 20 disponibles

    Etat : New.

  • Langue : anglais

    Edité par Uniwersytet Jagiellonski, Wydawnictwo, PL, 2023

    8323350159 / 9788323350156

    • Couverture souple

    Vendeur : Rarewaves.com UK, London, Royaume-UniRarewaves.com UK

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 40,23

    EUR 76,48 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 7 disponibles

    Paperback. Etat : New. Positron Emission Tomography (PET) is a key technique in the medical imaging area, which allows to diagnose the organism functions and to track the tumor changes. In PET measurement the patient is injected with radiotracer, containing a large number of metastable atoms of radionuclide, that emmits positrons. As the result of positron annihilation, the two photons travelling off with nearly opposite directions are produced and registered by detection system positioned so that it surrounds the patient body. State-of-the-art PET scanners use scintillation crystals which are characterized by high detection efficiency of annihilation photons. In this context, it is worth to mention that the Jagiellonian PET (J-PET) Collaboration developed a novel whole-body PET scanner based on plastic scintillators. They are much cheaper than crystal scintillators, which gives the opportunity to reduce the high cost of PET scanners and make them more affordable. However, plastic scintillators have much lower detection efficiency of gamma quanta compared to inorganic scintillation crystals. This can be compensated by increasing the scanner field of view and improving the time resolution in the measurement of the time of flight of gamma quanta. The J-PET scanner consists of plastic scintillator strips read out at both ends by a pair of photomultipliers and arranged axially around a cylindrical tomograph tunnel. The axial coordinate of the annihilation photon interaction point in the scintillator strip is derived from the difference of the light propagation time measured with the pair of photomultipliers. The operational principles of the J-PET scanner are similar to conventional tomographs, except that the highly accurate time information is of paramount importance. Therefore, the J-PET scanner demands a preparation of novel methods on each step of the data processing. The goal of the work presented in this dissertation is a development of the signal and image processing algorithms taking into account uniqueness of the J-PET detector. The proposed methods include: signal recovery based on samples of a waveform registered on photomultiplier output, reconstruction of position and time of interaction of annihilation photon in the scintillator strip, classification of PET events types and image reconstruction that operates exclusively in the image space. Due to the dissimilarity from the conventional PET scanners, majority of the methods presented in this dissertation are innovative solutions in digital signal and image processing in tomography.…

  • Langue : anglais

    Edité par Jagiellonian Univ Pr, 2022

    8323350159 / 9788323350156

    • Couverture souple
    • impression à la demande

    Vendeur : Revaluation Books, Exeter, Royaume-UniRevaluation Books

    Vendeur avec une évaluation de 5 étoiles
    Contacter le vendeur

    Etat: Neuf

    EUR 45,36

    EUR 11,77 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 2 disponibles

    Paperback. Etat : Brand New. 124 pages. 9.45x6.69x0.35 inches. In Stock. This item is printed on demand.