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    • 2. 发明授权
    • Photothermographic material
    • 光热成像材料
    • US07144692B2
    • 2006-12-05
    • US11150429
    • 2005-06-13
    • Takeshi Funakubo
    • Takeshi Funakubo
    • G03C1/00G03C5/16
    • G03C1/498G03C5/17Y10S430/167
    • The invention provides a photothermographic material having, on both sides of a support, an image forming layer including at least a photosensitive silver halide, a non-photosensitive organic silver salt, a reducing agent, and a binder, which is to be exposed with X-rays using a fluorescent intensifying screen, wherein (1) a coating amount of the photosensitive silver halide per one side is from 0.01 g/m2 to 0.45 g/m2 in terms of silver amount; and (2) a crossover (%) is 30% or more, or when parallel light having the same wavelength as a main emission peak wavelength of the fluorescent intensifying screen is incident perpendicular to the surface of the photothermographic material, the parallel light component of transmitted light comprises 5% or more of the incident light. A photothermographic material for medical use having high sensitivity and high image quality is provided.
    • 本发明提供了一种光热敏成像材料,其在载体的两侧上具有至少包含感光卤化银,非光敏有机银盐,还原剂和粘合剂的图像形成层,其将被暴露于X - 使用荧光增强屏幕的方法,其中(1)每一侧的感光卤化银的涂布量为0.01g / m 2至0.45g / m 2 以银量计; 和(2)交叉(%)为30%以上,或者当与荧光增强屏的主发光峰值波长具有相同波长的平行光垂直于光热敏成像材料的表面入射时,平行光成分 透射光包含5%以上的入射光。 提供了具有高灵敏度和高图像质量的用于医疗用途的光热敏成像材料。
    • 3. 发明申请
    • Photothermographic material
    • 光热成像材料
    • US20050277073A1
    • 2005-12-15
    • US11150429
    • 2005-06-13
    • Takeshi Funakubo
    • Takeshi Funakubo
    • G03C1/74G03C1/00G03C1/498G03C5/08G03C5/17
    • G03C1/498G03C5/17Y10S430/167
    • The invention provides a photothermographic material having, on both sides of a support, an image forming layer including at least a photosensitive silver halide, a non-photosensitive organic silver salt, a reducing agent, and a binder, which is to be exposed with X-rays using a fluorescent intensifying screen, wherein (1) a coating amount of the photosensitive silver halide per one side is from 0.01 g/m2 to 0.45 g/m2 in terms of silver amount; and (2) a crossover (%) is 30% or more, or when parallel light having the same wavelength as a main emission peak wavelength of the fluorescent intensifying screen is incident perpendicular to the surface of the photothermographic material, the parallel light component of transmitted light comprises 5% or more of the incident light. A photothermographic material for medical use having high sensitivity and high image quality is provided.
    • 本发明提供了一种光热敏成像材料,其在载体的两侧上具有至少包含感光卤化银,非光敏有机银盐,还原剂和粘合剂的图像形成层,其将被暴露于X - 使用荧光增强屏幕的方法,其中(1)每一侧的感光卤化银的涂布量为0.01g / m 2至0.45g / m 2 以银量计; 和(2)交叉(%)为30%以上,或者当与荧光增强屏的主发光峰值波长具有相同波长的平行光垂直于光热敏成像材料的表面入射时,平行光成分 透射光包含5%以上的入射光。 提供了具有高灵敏度和高图像质量的用于医疗用途的光热敏成像材料。
    • 10. 发明授权
    • Photothermographic material
    • 光热成像材料
    • US07455960B2
    • 2008-11-25
    • US11543023
    • 2006-10-05
    • Takeshi Funakubo
    • Takeshi Funakubo
    • G03C1/00
    • G03C1/498G03C5/17Y10S430/167
    • The invention provides a photothermographic material having, on both sides of a support, an image forming layer including at least a photosensitive silver halide, a non-photosensitive organic silver salt, a reducing agent, and a binder, which is to be exposed with X-rays using a fluorescent intensifying screen, wherein (1) a coating amount of the photosensitive silver halide per one side is from 0.01 g/m2 to 0.45 g/m2 in terms of silver amount; and (2) a crossover (%) is 30% or more, or when parallel light having the same wavelength as a main emission peak wavelength of the fluorescent intensifying screen is incident perpendicular to the surface of the photothermographic material, the parallel light component of transmitted light comprises 5% or more of the incident light. A photothermographic material for medical use having high sensitivity and high image quality is provided.
    • 本发明提供了一种光热敏成像材料,其在载体的两侧上具有至少包含感光卤化银,非光敏有机银盐,还原剂和粘合剂的图像形成层,其将被暴露于X - 使用荧光增强屏幕的方法,其中(1)每一侧的感光卤化银的涂布量为0.01g / m 2至0.45g / m 2 以银量计; 和(2)交叉(%)为30%以上,或者当与荧光增强屏的主发光峰值波长具有相同波长的平行光垂直于光热敏成像材料的表面入射时,平行光成分 透射光包含5%以上的入射光。 提供了具有高灵敏度和高图像质量的用于医疗用途的光热敏成像材料。