TREATMENT OF OBSTRUCTIVE DISORDERS OF THE EYE OR EYELID
    31.
    发明申请
    TREATMENT OF OBSTRUCTIVE DISORDERS OF THE EYE OR EYELID 审中-公开
    治疗眼睛或眼睛的阻塞性疾病

    公开(公告)号:US20150157347A1

    公开(公告)日:2015-06-11

    申请号:US14618392

    申请日:2015-02-10

    Abstract: In accordance with certain illustrative embodiments, methods and apparatuses of treating obstructive disorders of the structure of an eye or eyelid are disclosed. The treating may involve applying heat to the structure containing the obstructive disorder to melt an obstruction in the structure and place the obstruction in a melted state. The heat may be maintained for a time period to melt the obstruction and place the obstruction in the melted state. The structure may be treated by expressing the melted obstruction from the structure. The treating may be carried out either during the time period or after the time period when heat is applied but while the obstruction is in the melted state. In certain embodiments, the method further involves subsequently treating the structure by use of a pharmacological agent.

    Abstract translation: 根据某些示例性实施例,公开了治疗眼睛或眼睑结构的阻塞性疾病的方法和装置。 治疗可以涉及对包含阻塞性病症的结构施加热量,以便熔化结构中的梗阻并将阻塞置于熔化状态。 可以将热量保持一段时间以融化阻塞物并将阻塞物置于熔化状态。 可以通过从结构中表达熔化的阻塞来处理结构。 处理可以在施加热量但是阻塞处于熔化状态的时间段期间之后或者在施加热量的时间段之后进行。 在某些实施方案中,该方法还涉及随后通过使用药理学剂处理该结构。

    METHODS AND APPARATUSES FOR TREATMENT OF MEIBOMIAN GLANDS
    32.
    发明申请
    METHODS AND APPARATUSES FOR TREATMENT OF MEIBOMIAN GLANDS 审中-公开
    用于治疗海绵体的方法和装置

    公开(公告)号:US20150100063A1

    公开(公告)日:2015-04-09

    申请号:US14510863

    申请日:2014-10-09

    Abstract: Methods and apparatuses of treating meibomian glands are disclosed. The method comprises applying regulated heat to an eyelid to reach a temperature adequate to melt at least one obstruction within at least one meibomian gland. The method also comprises maintaining the regulated heat for a time period adequate to place the at least obstruction in the melted state. The method further comprises positioning a pressure application device into contact with the patient's eyelid and applying a pressure with the pressure application device over a substantial portion of the eyelid to express the at least one obstruction from the meibomian gland. An apparatus suitable to treat meibomian glands comprises a heater, a controller, and a pressure applicator configured to be placed into contact with the eyelid and apply a pressure over a substantial portion of the eyelid to express the at least one obstruction from the meibomian gland.

    Abstract translation: 公开了治疗睑板腺的方法和装置。 该方法包括将调节的热量施加到眼睑以达到足以熔化至少一个睑板腺内的至少一个梗阻的温度。 该方法还包括将调节的热量保持足够的时间以将至少阻塞物置于熔化状态。 该方法还包括将压力施加装置定位成与患者的眼皮接触,并将压力施加装置施加在眼睑的大部分上,以从睑板腺表达至少一个梗阻。 适用于治疗睑板腺的装置包括加热器,控制器和压力施加器,其构造成与眼睑放置成接触,并在眼睑的大部分上施加压力以从睑板腺表达至少一个阻塞物。

    METHODS AND APPARATUSES FOR TREATMENT OF MEIBOMIAN GLAND DYSFUNCTION
    33.
    发明申请
    METHODS AND APPARATUSES FOR TREATMENT OF MEIBOMIAN GLAND DYSFUNCTION 审中-公开
    用于治疗脑血管性功能障碍的方法和装置

    公开(公告)号:US20150025545A1

    公开(公告)日:2015-01-22

    申请号:US14510843

    申请日:2014-10-09

    Abstract: A method of treating meibomian gland dysfunction is disclosed that comprises applying heat to an outer surface of a patient's eyelid to a temperature level to melt, loosen, or soften an obstruction located within a meibomian gland. The method also comprises maintaining the heat to the outer surface of the patient's eyelid for a period of time. The method further comprises applying a pressure to the outer surface of the patient's eyelid to express the obstruction from the meibomian gland. The obstruction may be located within a meibomian gland channel of the meibomian gland and the method may comprise expressing the obstruction located within a meibomian gland channel through a meibomian gland orifice. Applying the pressure may be done by positioning a pressure applicator into contact with the outer surface of the patient's eyelid and applying a pressure with the pressure applicator over a substantial portion of the patient's eyelid.

    Abstract translation: 公开了一种治疗睑板腺功能障碍的方法,其包括将热量施加到患者眼睑的外表面至达到熔化,松动或软化位于睑板腺内的梗阻的温度水平。 该方法还包括将热量保持到患者眼皮的外表面一段时间。 该方法还包括向患者的眼皮的外表面施加压力以表达来自睑板腺的阻塞。 梗阻可以位于睑板腺的睑板腺通道内,并且该方法可以包括通过睑板腺口表达位于睑板腺通道内的阻塞物。 施加压力可以通过将压力施加器定位成与患者的眼皮的外表面接触并且将压力施加器施加在患者眼睑的大部分上的压力来进行。

    EYELID ILLUMINATION SYSTEMS AND METHODS FOR IMAGING MEIBOMIAN GLANDS FOR MEIBOMIAN GLAND ANALYSIS
    34.
    发明申请
    EYELID ILLUMINATION SYSTEMS AND METHODS FOR IMAGING MEIBOMIAN GLANDS FOR MEIBOMIAN GLAND ANALYSIS 审中-公开
    用于成像墨西哥甘蓝分析的眼睛照射系统和方法

    公开(公告)号:US20140330129A1

    公开(公告)日:2014-11-06

    申请号:US14269646

    申请日:2014-05-05

    CPC classification number: A61B5/0082 A61B5/0077 A61B5/6821

    Abstract: Eyelid illumination systems and methods for imaging meibomian glands for meibomian gland analysis are disclosed. In one embodiment, a patient's eyelid is IR trans-illuminated with an infrared (IR) light. A trans-illumination image of the patient's eyelid is captured showing meibomian glands in dark outlined areas, whereas non-gland material is shown in light areas. This provides a high contrast image of the meibomian glands that is X-ray like. The lid trans-illumination image of the meibomian glands can be analyzed to determine to diagnose the meibomian glands in the patient's eyelid. The eyelid may be trans-illuminated by a lid-flipping device configured to grasp and flip the eyelid for imaging the interior surface of the eyelid. Also, an IR surface meibography image of the meibomian glands may also be captured and combined with the trans-illumination image of the meibomian glands to provide a higher contrast image of the meibomian glands.

    Abstract translation: 公开了眼睑照射系统和用于睑板腺分析成像睑板腺的方法。 在一个实施例中,患者的眼睑用红外(IR)光IR反照射。 捕获患者眼睑的透射照明图像,显示黑色轮廓区域中的睑板腺,而非腺体材料显示在浅色区域。 这提供了像X射线的睑板腺的高对比度图像。 可以分析睑板腺的盖反照明图像,以确定诊断患者眼睑中的睑板腺。 眼睑可以由构造成抓住并翻转眼睑的盖翻转装置反照,以对眼睑的内表面进行成像。 此外,还可以捕获睑板腺的IR表面记录图像并与睑板腺的反照明图像组合,以提供睑板腺的较高对比度图像。

    OPTICAL PHANTOMS FOR USE WITH OCULAR SURFACE INTERFEROMETRY (OSI) DEVICES AND SYSTEMS CONFIGURED TO MEASURE TEAR FILM LAYER THICKNESS(ES), AND RELATED USE FOR CALIBRATION
    35.
    发明申请
    OPTICAL PHANTOMS FOR USE WITH OCULAR SURFACE INTERFEROMETRY (OSI) DEVICES AND SYSTEMS CONFIGURED TO MEASURE TEAR FILM LAYER THICKNESS(ES), AND RELATED USE FOR CALIBRATION 审中-公开
    用于表面干涉测量(OSI)的光学仪器配置用于测量薄膜厚度(ES)的仪器和系统,以及用于校准的相关用途

    公开(公告)号:US20130293842A1

    公开(公告)日:2013-11-07

    申请号:US13886383

    申请日:2013-05-03

    Abstract: Embodiments of the detailed description include optical phantoms for use with ocular surface interferometery (OSI) devices and systems configured to measure tear film layer thickness(es), and related use for calibration. The ocular surface interferometry (OSI) devices, systems, and methods can be used for imaging an ocular tear film and/or measuring a tear film layer thickness (TFLT) in a patient's ocular tear film. The OSI devices, systems, and methods can be used to measure the thickness of the lipid layer component (LLT) and/or the aqueous layer component (ALT) of the ocular tear film. “TFLT” as used herein includes LLT, ALT, or both LLT and ALT. “Measuring TFLT” as used herein includes measuring LLT, ALT, or both LLT and ALT. Imaging the ocular tear film and measuring TFLT can be used in the diagnosis of a patient's tear film, including but not limited to lipid layer and aqueous layer deficiencies.

    Abstract translation: 详细描述的实施例包括用于眼表面干涉仪(OSI)装置的光学幻影和被配置为测量泪膜层厚度的系统以及用于校准的相关用途。 可以使用眼表干涉测量(OSI)装置,系统和方法来成像眼泪膜和/或测量患者眼泪膜中的泪膜层厚度(TFLT)。 OSI装置,系统和方法可用于测量眼泪膜的脂质层组分(LLT)和/或水层组分(ALT)的厚度。 本文所用的“TFLT”包括LLT,ALT或LLT和ALT两者。 本文所用的“测量TFLT”包括测量LLT,ALT或LLT和ALT两者。 成像眼泪膜并测量TFLT可用于诊断患者的泪膜,包括但不限于脂质层和水层缺陷。

    OCULAR SURFACE INTERFEROMETRY (OSI) FOR IMAGING, PROCESSING, AND/OR DISPLAYING AN OCULAR TEAR FILM

    公开(公告)号:US20220133143A1

    公开(公告)日:2022-05-05

    申请号:US17573899

    申请日:2022-01-12

    Abstract: Ocular surface interferometry devices, systems, and methods are disclosed for imaging an ocular tear film. An imaging device can be focused on the lipid layer of the tear film to capture optical wave interference interactions of specularly reflected light from the tear film combined with a background signal(s) in a first image, wherein the specularly reflected light may be produced from various portions of the ocular tear film by obliquely illuminating various portions of the ocular tear film with a multi-wavelength light source, such as in a tiling pattern(s). The imaging device can also be focused on the lipid layer to capture a second image containing the background signal(s) present in the first image. The second image can be subtracted from the first image to reduce and/or eliminate the background signal(s) in the first image to produce a resulting image, which can used to measure a tear film layer thickness.

    EYELID ILLUMINATION SYSTEMS AND METHODS FOR IMAGING MEIBOMIAN GLANDS FOR MEIBOMIAN GLAND ANALYSIS

    公开(公告)号:US20220022741A1

    公开(公告)日:2022-01-27

    申请号:US17498102

    申请日:2021-10-11

    Abstract: Eyelid illumination systems and methods for imaging meibomian glands for meibomian gland analysis are disclosed. In one embodiment, a patient's eyelid is IR trans-illuminated with an infrared (IR) light. A trans-illumination image of the patient's eyelid is captured, showing meibomian glands in dark outlined areas, whereas non-gland material is shown in light areas. This provides a high contrast image of the meibomian glands that is X-ray-like. The lid trans-illumination image of the meibomian glands can be analyzed to determine to diagnose the meibomian glands in the patient's eyelid. The eyelid may be trans-illuminated by a lid-flipping device configured to grasp and flip the eyelid for imaging the interior surface of the eyelid. Also, an IR surface meibography image of the meibomian glands may also be captured and combined with the trans-illumination image of the meibomian glands to provide a higher contrast image of the meibomian glands.

    Full-eye illumination ocular surface imaging of an ocular tear film for determining tear film thickness and/or providing ocular topography

    公开(公告)号:US10582849B2

    公开(公告)日:2020-03-10

    申请号:US16251332

    申请日:2019-01-18

    Abstract: Ocular surface interferometry (OSI) devices, systems, and methods are disclosed for measuring a tear film layer thickness (TFLT) of the ocular tear film, including the lipid layer thickness (LLT) and/or the aqueous layer thickness (ALT). The TFLT can be used to diagnose dry eye syndrome (DES). Certain embodiments also include ocular topography devices, systems and methods for deducing corneal shape by capturing an image of a target reflecting from the surface of the cornea. The image of the target contains topography information that is reviewable by a clinician to diagnose the health of the patient's eye by detecting corneal aberrations and/or abnormalities in corneal shape. Certain embodiments also include a combination of the OSI and ocular topography devices, systems and methods to provide imaging that can be used to yield a combined diagnosis of the patient's tear film and corneal shape.

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