Patents by Inventor Manu Sharma
Manu Sharma has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12268444Abstract: Apparatus and techniques described herein can include delivery of a surgical laser beam for tissue excision or to facilitate hemostasis. The surgical laser beam can be generated, for example, using an ultrafast laser source. Such an approach can provide non-invasive treatment in relation to, for example, aerodigestive anatomy, such as for treatment of laryngeal, oropharyngeal, bronchial, and oral cavity tissues. Other generally available laser sources and their associated treatments may present various drawbacks making them less suitable for treatment for laryngeal, pharyngeal or bronchial pathologies, and use of the apparatus and techniques described herein can address such drawbacks.Type: GrantFiled: September 12, 2024Date of Patent: April 8, 2025Assignee: Femto Vox IncorporatedInventors: Manu Sharma, Wesley William Lummis
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Patent number: 12245813Abstract: A target surface in an eye is located using a dual aiming beam apparatus that transmits a first aiming beam of light and a second aiming beam of light. An optics subsystem receives a laser beam from a laser source, the first aiming beam of light, and the second aiming beam of light, and directs the beams of light to be incident with the target surface and aligns the beams of light such that they intersect at a point corresponding to a focus of the laser beam. An imaging apparatus captures an image of the target surface including a first spot corresponding to the first aiming beam of light and a second spot corresponding to a second aiming beam of light. A separation between the spots indicates that the focus is away from the target surface, while overlapping spots indicate the focus is at or on the target surface.Type: GrantFiled: December 21, 2022Date of Patent: March 11, 2025Assignee: ViaLase, Inc.Inventors: Tibor Juhasz, Ferenc Raksi, Manu Sharma, Hadi Srass, Carlos G. Suarez, Guy Holland, Wesley W. Lummis, Eric R. Mikula, Virginia Lin
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Patent number: 12245974Abstract: A target volume of ocular tissue of an irido-corneal angle of an eye is treated by moving a focus of a laser through the target volume of ocular tissue, and photodisrupting the target volume of ocular tissue at a plurality of spots as the focus is moved through the target volume of ocular tissue. The focus is moved by transverse scanning the focus between at least one of: a first circumferential boundary and a second circumferential boundary of the target volume of ocular tissue, and a first azimuthal boundary and a second azimuthal boundary of the target volume of ocular tissue, and axial scanning the focus between a distal extent and a proximal extent of the target volume of ocular tissue.Type: GrantFiled: March 15, 2021Date of Patent: March 11, 2025Assignee: ViaLase, Inc.Inventors: Guy Holland, Tibor Juhasz, Eric R. Mikula, Ferenc Raksi, Manu Sharma, Hadi Srass, Carlos G. Suarez
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Publication number: 20250000578Abstract: Apparatus and techniques described herein can include delivery of a surgical laser beam for tissue excision or to facilitate hemostasis. The surgical laser beam can be generated, for example, using an ultrafast laser source. Such an approach can provide non-invasive treatment in relation to, for example, aerodigestive anatomy, such as for treatment of laryngeal, oropharyngeal, bronchial, and oral cavity tissues. Other generally available laser sources and their associated treatments may present various drawbacks making them less suitable for treatment for laryngeal, pharyngeal or bronchial pathologies, and use of the apparatus and techniques described herein can address such drawbacks.Type: ApplicationFiled: September 12, 2024Publication date: January 2, 2025Inventors: Manu Sharma, Wesley William Lummis
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Patent number: 12137973Abstract: Apparatus and techniques described herein can include delivery of a surgical laser beam for tissue excision or to facilitate hemostasis. The surgical laser beam can be generated, for example, using an ultrafast laser source. Such an approach can provide non-invasive treatment in relation to, for example, aerodigestive anatomy, such as for treatment of laryngeal, oropharyngeal, bronchial, and oral cavity tissues. Other generally available laser sources and their associated treatments may present various drawbacks making them less suitable for treatment for laryngeal, pharyngeal or bronchial pathologies, and use of the apparatus and techniques described herein can address such drawbacks.Type: GrantFiled: October 19, 2023Date of Patent: November 12, 2024Assignee: FemtoVox IncorporatedInventors: Manu Sharma, Wesley William Lummis
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Patent number: 12083105Abstract: The present technology relates to methods for treating, preventing, and/or ameliorating diseases associated with ectopic iron-sulfur (Fe—S) cluster formation or ectopic iron-sulfur (Fe—S) cluster binding, such as adult-onset neuronal ceroid lipofuscinosis (ANCL or Kufs disease) comprising administering a therapeutically effective amount of an iron chelator to a subject in need thereof. Kits for use in practicing the methods are also provided.Type: GrantFiled: January 22, 2021Date of Patent: September 10, 2024Assignee: Cornell UniversityInventors: Manu Sharma, Nima N. Naseri
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Publication number: 20240252354Abstract: A method of imaging and treating ocular tissue of an eye having a cornea, an iris, an anterior chamber, an irido-corneal angle, and a direction of view includes establishing a common optical path through the cornea and the anterior chamber into the irido-corneal angle for each of an optical coherence tomography (OCT) beam and a laser beam, where the common optical path is offset from an optical axis within the direction of view. The method also includes obtaining a circumferential OCT image of the irido-corneal angle, obtaining an azimuthal OCT image of the irido-corneal angle, and determining a treatment pattern for a volume of ocular tissue of the irido-corneal angle based on the circumferential OCT image and the azimuthal OCT image. The method further includes delivering optical energy through the laser beam in accordance with the treatment pattern.Type: ApplicationFiled: April 12, 2024Publication date: August 1, 2024Inventors: Guy Holland, Tibor Juhasz, Wesley W. Lummis, Eric R. Mikula, Ferenc Raksi, Manu Sharma, Hadi Srass, Carlos G. Suarez
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Publication number: 20240249236Abstract: In variants, a method for predicting transit data can include, determining a set of models, training each model, determining package transit data, evaluating the set of models, selecting a model from the set of models, predicting package transit data and/or any other suitable element. In variants, the method can function to determine, select, and/or train one or more models to predict package transit (e.g., physical package delivery to a destination).Type: ApplicationFiled: April 5, 2024Publication date: July 25, 2024Applicant: Simpler Postage, Inc.Inventors: Graham McAlister, Manu Sharma, Mengchao Jiang
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Publication number: 20240180617Abstract: Apparatus and techniques described herein can include delivery of a surgical laser beam for tissue excision or to facilitate hemostasis. The surgical laser beam can be generated, for example, using an ultrafast laser source. Such an approach can provide non-invasive treatment in relation to, for example, aerodigestive anatomy, such as for treatment of laryngeal, oropharyngeal, bronchial, and oral cavity tissues. Other generally available laser sources and their associated treatments may present various drawbacks making them less suitable for treatment for laryngeal, pharyngeal or bronchial pathologies, and use of the apparatus and techniques described herein can address such drawbacks.Type: ApplicationFiled: October 19, 2023Publication date: June 6, 2024Inventors: Manu Sharma, Wesley William Lummis
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Patent number: 12002567Abstract: A look-up table for use in determining an energy parameter for photodisrupting ocular tissue with a laser is generated by determining a plurality of individual spot size distributions, wherein each of the plurality of individual spot size distributions is based on a different set of simulated data and includes an expected spot size of a laser focus at each of a plurality of locations within a modeled target volume of ocular tissue. The plurality of individual spot size distributions are combined to obtain a final spot size distribution that includes a final expected spot size of the laser focus at the plurality of locations of the focus within the modeled target volume of ocular tissue. An energy value is assigned to the plurality of locations of the focus within the modeled target volume of ocular tissue based on the final expected spot size at that location.Type: GrantFiled: November 29, 2021Date of Patent: June 4, 2024Assignee: ViaLase, Inc.Inventors: Guy Holland, Tibor Juhasz, Wesley W. Lummis, Eric R. Mikula, Ferenc Raksi, Manu Sharma, Hadi Srass, Carlos G. Suarez
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Patent number: 11986424Abstract: A method of imaging and treating ocular tissue of an eye having a cornea, an iris, an anterior chamber, an irido-corneal angle, and a direction of view includes establishing a common optical path through the cornea and the anterior chamber into the irido-corneal angle for each of an optical coherence tomography (OCT) beam and a laser beam, where the common optical path is offset from an optical axis within the direction of view. The method also includes obtaining a circumferential OCT image of the irido-corneal angle, obtaining an azimuthal OCT image of the irido-corneal angle, and determining a treatment pattern for a volume of ocular tissue of the irido-corneal angle based on the circumferential OCT image and the azimuthal OCT image. The method further includes delivering optical energy through the laser beam in accordance with the treatment pattern.Type: GrantFiled: July 30, 2020Date of Patent: May 21, 2024Assignee: ViaLase, Inc.Inventors: Guy Holland, Tibor Juhasz, Wesley W. Lummis, Eric R. Mikula, Ferenc Raksi, Manu Sharma, Hadi Srass, Carlos G. Suarez
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Patent number: 11969211Abstract: A device for visualizing an irido-corneal angle of an eye through a window of a patient interface configured to be placed on the eye includes and optics structure and at least one imaging apparatus. The optics structure is configured to engage with the patient interface to provide a line of sight through the window in the direction of the irido-corneal angle, and to subsequently disengage from the patient interface. The imaging apparatus is associated with the optics structure and aligned with the line of sight to enable capturing an image of the eye including the irido-corneal angle.Type: GrantFiled: November 21, 2022Date of Patent: April 30, 2024Assignee: ViaLase, Inc.Inventors: Scott A. Delong, Guy Holland, Tibor Juhasz, Wesley W. Lummis, Eric R. Mikula, Attila Raksi, Ferenc Raksi, Manu Sharma, Hadi Srass, Carlos G. Suarez, Joselito T. Tambo
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Publication number: 20240099887Abstract: A system accesses a target volume of ocular tissue and treats the target volume with a laser based on the pigmentation of the tissue. A visual observation apparatus captures a color image of the target volume through an optics assembly. A control system processes the captured image and determines an energy parameter based on pigmentation of the target volume of ocular tissue. A laser source outputs a laser beam, and one or more components focus, scan, and direct the laser beam through the target volume by way of the optical assembly. The control system controls the one or more components based on a treatment pattern to place a focus of the laser beam at an initial location within the target volume of ocular tissue, and controls the laser source to apply photodisruptive energy at the initial location based on the energy parameter determined by the control system.Type: ApplicationFiled: September 28, 2022Publication date: March 28, 2024Inventors: Guy Holland, Tibor Juhasz, Reza Khazaeinezhad, Wesley W. Lummis, Eric R. Mikula, Ferenc Raksi, Manu Sharma, Hadi Srass, Carlos G. Suarez
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Patent number: 11934678Abstract: In some examples, a system identifies resource contention for a resource in a storage system, and determines that a workload collection that employs data reduction is consuming the resource. The system identifies relative contributions to consumption of the resource attributable to storage volumes in the storage system, where the workload collection that employs data reduction are performed on data of the storage volumes. The system determines whether storage space savings due to application of the data reduction for a given storage volume of the storage volumes satisfy a criterion, and in response to determining that the storage space savings for the given storage volume do not satisfy the criterion, the system indicates that the data reduction is not to be applied for the given storage volume.Type: GrantFiled: July 22, 2022Date of Patent: March 19, 2024Assignee: Hewlett Packard Enterprise Development LPInventors: Manu Sharma, Sudheer Vanapalli, Jaffer Sherif Rajasab, Gautam Kaistha, Manoj Srivatsav, Mayukh Dutta
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Publication number: 20240058169Abstract: An integrated surgical system for accessing one of a plurality of target volumes of ocular tissue in an eye includes a first optical transmission subsystem optically coupled to receive a first light beam, an optics assembly, and a control system. The optics assembly has an optical axis and is configured to couple to the eye to align its optical axis with the optical axis of the eye. The optics assembly is optically coupled with the first optical transmission subsystem to receive the first light beam along one of a plurality of first input axes and to direct the first light beam to a corresponding one of a plurality of first output axes aligned with a corresponding one of the plurality of target volumes of ocular tissue in the eye. The control system is configured to control the first optical transmission subsystem to direct the first light beam into alignment with a select one of the plurality of first input axes.Type: ApplicationFiled: August 17, 2022Publication date: February 22, 2024Inventors: Guy Holland, Tibor Juhasz, Reza Khazaeinezhad, Wesley W. Lummis, Eric R. Mikula, Ferenc Raksi, Manu Sharma, Hadi Srass, Carlos G. Suarez
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Publication number: 20240058172Abstract: A method of treating an eye includes delivering an OCT beam along an OCT optical path that enters a first optical subsystem along an input axis, and exits the first optical subsystem along an output axis that: 1) is substantially parallel to the optical axis of the eye, 2) is radially offset from the optical axis, and 3) extends through the cornea and into a portion of the irido-corneal angle at a point along a circumferential angle of the eye. The method also includes imaging the portion of the irido-corneal angle with the OCT beam; delivering a laser beam along an angled optical path that extends through the first optical subsystem, through the cornea, through the anterior chamber, and into a target volume of ocular tissue in the portion of the irido-corneal angle; and photodisrupting at least a portion of the target volume of ocular tissue with the laser beam.Type: ApplicationFiled: August 17, 2022Publication date: February 22, 2024Inventors: Guy Holland, Reza Khazaeinezhad, Wesley W. Lummis, Ferenc Raksi, Manu Sharma
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Patent number: 11903641Abstract: Apparatus and techniques described herein can include delivery of a surgical laser beam for tissue excision or to facilitate hemostasis. The surgical laser beam can be generated, for example, using an ultrafast laser source. Such an approach can provide non-invasive treatment in relation to, for example, aerodigestive anatomy, such as for treatment of laryngeal, oropharyngeal, bronchial, and oral cavity tissues. Other generally available laser sources and their associated treatments may present various drawbacks making them less suitable for treatment for laryngeal, pharyngeal or bronchial pathologies, and use of the apparatus and techniques described herein can address such drawbacks.Type: GrantFiled: October 19, 2023Date of Patent: February 20, 2024Assignee: Femto Vox IncorporatedInventors: Manu Sharma, Wesley William Lummis
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Publication number: 20240028233Abstract: In some examples, a system identifies resource contention for a resource in a storage system, and determines that a workload collection that employs data reduction is consuming the resource. The system identifies relative contributions to consumption of the resource attributable to storage volumes in the storage system, where the workload collection that employs data reduction are performed on data of the storage volumes. The system determines whether storage space savings due to application of the data reduction for a given storage volume of the storage volumes satisfy a criterion, and in response to determining that the storage space savings for the given storage volume do not satisfy the criterion, the system indicates that the data reduction is not to be applied for the given storage volume.Type: ApplicationFiled: July 22, 2022Publication date: January 25, 2024Inventors: Manu Sharma, Sudheer Vanapalli, Jaffer Sherif Rajasab, Gautam Kaistha, Manoj Srivatsav, Mayukh Dutta
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Patent number: 11834872Abstract: A vehicle door opening assembly adopting three positions: a hidden position, a ready position, and a release position. Guiding means comprising a slider support a handling element and can be moved by elastic means from the hidden position into the ready position. The slider is movable in translation from the hidden/retracted position, in which the slider and the handling element are contained in a release mechanism sheath, to the ready/deployed position when the elastic means are released. The handling element is fixed to the slider so as to be rotatable between a position coaxial with the slider and an inclined position protruding laterally from the release mechanism sheath. Secondary elastic means cause the handling element to rotate in a visible inclined position when the slider reaches the ready/deployed position.Type: GrantFiled: February 20, 2020Date of Patent: December 5, 2023Assignee: U-Shin Italia S.p.AInventors: Anthony Guerin, Manu Sharma, Sachin Sharma
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Publication number: 20230259874Abstract: In variants, a method for predicting transit data can include, determining a set of models, training each model, determining package transit data, evaluating the set of models, selecting a model from the set of models, predicting package transit data and/or any other suitable element. In variants, the method can function to determine, select, and/or train one or more models to predict package transit (e.g., physical package delivery to a destination).Type: ApplicationFiled: February 16, 2023Publication date: August 17, 2023Inventors: Graham McAlister, Manu Sharma, Mengchao Jiang