Patents Assigned to Trustees of Dartmouth
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Publication number: 20240319101Abstract: Embodiments of the present disclosure pertain to a composition that includes: silica nanofibers; and one or more detection particles associated with the silica nanofibers. Additional embodiments of the present disclosure pertain to methods of sensing one or more analytes and/or one or more environmental conditions from a sample by associating the sample with a composition of the present disclosure; detecting a change in a property of the detection particles; and correlating the change in the property of the detection particles to a presence or absence of one or more analytes, one or more environmental conditions, or combinations thereof. Further embodiments of the present disclosure pertain to methods of making the compositions of the present disclosure by growing silica nanofibers from at least one precursor material; and associating one or more detection particles with the silica nanofibers.Type: ApplicationFiled: June 11, 2022Publication date: September 26, 2024Applicant: Trustees of Dartmouth CollegeInventors: John X.J. Zhang, Junhu Zhou, Yundong Ren
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Publication number: 20240287218Abstract: In an embodiment, the present disclosure pertains to a method of changing the glass transition temperature of a polymer. In some embodiments, the polymer includes at least one hydrazone-containing compound. In general, the methods of the present disclosure include one or more of the following steps of: (1) applying light to the polymer; and (2) thereby changing the glass transition temperature of the polymer. In another embodiment, the present disclosure pertains to a polymer having a light-adjustable glass transition temperature. In some embodiments, the polymer includes at least one hydrazone-containing compound.Type: ApplicationFiled: April 18, 2024Publication date: August 29, 2024Applicant: Trustees of Dartmouth CollegeInventors: Ivan Abrahamian, Sirun Yang, Laura L. Jeliazkov, Jared D. Harris
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Patent number: 12065465Abstract: The present disclosure relates to stereodefined polycyclic (e.g., tetracyclic) compounds that contain quaternary centers at one or multiple ring fusions, synthetic methods for preparing such compounds, and methods of using such compounds to treat a disease, such as a brain tumor and, particularly, a glioma.Type: GrantFiled: October 28, 2022Date of Patent: August 20, 2024Assignee: Trustees of Dartmouth CollegeInventor: Glenn C. Micalizio
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Patent number: 12066976Abstract: This invention provides a generalized electronic computer architecture with multiple cores, memory distributed amongst the cores (a core-local memory). This arrangement provides predictable, low-latency memory response time, as well as a flexible, code-supplied flow of memory from one specific operation to another (using an operation graph). In one instantiation, the operation graph consists of a set of math operations, each accompanied by an ordered list of one or more input addresses. Input addresses may be specific addresses in memory, references to other math operations in the graph, or references to the next item in a particular data stream, where data streams are iterators through a continuous block of memory. The arrangement can also be packaged as a PCIe daughter card, which can be selectively plugged into a host server/PC constructed/organized according to traditional von Neumann architecture.Type: GrantFiled: August 28, 2023Date of Patent: August 20, 2024Assignee: The Trustees of Dartmouth CollegeInventors: Elijah F. W. Bowen, Richard H. Granger, Jr.
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Patent number: 12049653Abstract: Unglycosylated lysostaphin variant protein, nucleic acid molecule, vector and host cell, as well as a method for production of unglycosylated lysostaphin variant protein in a yeast expression system are provided. The proteins are produced in a Pichia pastoris expression system and have been shown to have activity equivalent to wild-type lysostaphin. The lysostaphin variant proteins can be used as therapeutic proteins for treatment of diseases such as Staphylococcus aureus infection.Type: GrantFiled: September 21, 2021Date of Patent: July 30, 2024Assignee: Trustees of Dartmouth CollegeInventors: Karl E. Griswold, Hongliang Zhao
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Patent number: 12026876Abstract: This invention provides systems and methods that can detect incidental OVFs in CT examinations at the level of practicing radiologists. The OVF detection system leverages a deep convolutional neural network (CNN) to extract radiological features from each CT scan slice. These extracted features are processed through a feature aggregation module to make the final diagnosis for the full CT scan. Feature aggregation, can be performed in a variety of ways, including the use of a long short-term memory (LSTM) network. In one example, the CNN can be trained on a predetermined number of CT scans, which are established as reference standards. This result can effectively the performance of practicing radiologists on this test set in real world clinical circumstances. The system and method can be employed to assist and improve OVF diagnosis in clinical settings by pre-screening routine CT examinations and flagging suspicious cases prior to review by radiologists.Type: GrantFiled: February 21, 2020Date of Patent: July 2, 2024Assignees: The Trustees of Dartmouth College, Dartmouth-Hitchcock ClinicInventors: Saeed Hassanpour, Yvonne Cheung, Naofumi Tomita
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Publication number: 20240199664Abstract: Embodiments of the present disclosure pertain to compositions that include a metal-organic framework. The metal-organic framework includes a plurality of metals and a plurality of ligands coordinated with the plurality of metals, where the plurality of metals include bismuth, and the plurality of ligands include a plurality of hydroxy moieties that are not part of carboxyl groups. At least some of the hydroxy moieties are coordinated with bismuth to form Bi—O bonds. The metal-organic framework is in the form of a conductive and interconnected network. Additional embodiments of the present disclosure pertain to methods of utilizing the compositions to detect analytes in a sample and shield various objects from radiation.Type: ApplicationFiled: April 12, 2022Publication date: June 20, 2024Applicants: Trustees of Dartmouth College, The Regents of The University Of CaliforniaInventors: Katherine A. Mirica, Aylin Aykanat, Evan Cline, Zheng Meng, Christopher G. Jones, Hosea Nelson
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Patent number: 11998989Abstract: In an embodiment, the present disclosure pertains to a method of making magnetic nanoparticles through the utilization of a microfluidic reactor. In some embodiments, the microfluidic reactor includes a first inlet, a second inlet, and an outlet. In some embodiments, the method includes applying a magnetic nanoparticle precursor solution into the first inlet of the microfluidic reactor through a first flow rate and applying a reducing agent into the second inlet of the microfluidic reactor through a second flow rate. In some embodiments, the magnetic nanoparticles are produced in the microfluidic reactor and collected from the outlet of the microfluidic reactor. In an additional embodiment, the present disclosure pertains to a composition including a plurality of magnetic nanoparticles. In a further embodiment, the present disclosure pertains to a microfluidic reactor.Type: GrantFiled: April 20, 2020Date of Patent: June 4, 2024Assignee: Trustees of Dartmouth CollegeInventors: John X. J. Zhang, Nanjing Hao, Yuan Nie
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Patent number: 11987654Abstract: In an embodiment, the present disclosure pertains to a method of changing the glass transition temperature of a polymer. In some embodiments, the polymer includes at least one hydrazone-containing compound. In general, the methods of the present disclosure include one or more of the following steps of: (1) applying light to the polymer; and (2) thereby changing the glass transition temperature of the polymer. In another embodiment, the present disclosure pertains to a polymer having a light-adjustable glass transition temperature. In some embodiments, the polymer includes at least one hydrazone-containing compound.Type: GrantFiled: December 20, 2022Date of Patent: May 21, 2024Assignee: Trustees of Dartmouth CollegeInventors: Ivan Abrahamian, Sirun Yang, Laura L. Jeliazkov, Jared D. Harris
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Patent number: 11964010Abstract: Coronavirus S ectodomain trimers stabilized in a prefusion conformation, nucleic acid molecules and vectors encoding these proteins, and methods of their use and production are disclosed. In several embodiments, the coronavirus S ectodomain trimers and/or nucleic acid molecules can be used to generate an immune response to coronavirus in a subject. In additional embodiments, the therapeutically effective amount of the coronavirus S ectodomain trimers and/or nucleic acid molecules can be administered to a subject in a method of treating or preventing coronavirus infection.Type: GrantFiled: March 8, 2021Date of Patent: April 23, 2024Assignees: The United States of America, as represented by the Secretary, Department of Health and Human Services, The Scripps Research Institute, Trustees of Dartmouth CollegeInventors: Barney Graham, Jason Mclellan, Andrew Ward, Robert Kirchdoerfer, Christopher Cottrell, Michael Gordon Joyce, Masaru Kanekiyo, Nianshuang Wang, Jesper Pallesen, Hadi Yassine, Hannah Turner, Kizzmekia Corbett
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Patent number: 11937951Abstract: A method of generating corrected fluorescence data of concentrations of a targeted fluorophore in tissue of a subject includes administering first and second fluorescent contrast agents to the subject, the first contrast agent targeted to tissue of interest, the second agent untargeted. The tissue is illuminated with light of a first stimulus wavelength and first data is acquired at an appropriate emissions wavelength; the tissue is illuminated at a second stimulus wavelength and second data is acquired at a second emissions wavelength associated with the second agent, the first and second emissions wavelength differ. Difference data is generated by subtracting the second data from the first data. A system provides for stimulus and capture at multiple wavelengths, with image storage memory and subtraction code, to perform the method. Corrected data may form an fluorescence image, or is used to generate fluorescence tomographic images.Type: GrantFiled: January 25, 2023Date of Patent: March 26, 2024Assignee: The Trustees of Dartmouth CollegeInventors: Kenneth Tichauer, Robert W. Holt, Frederic Leblond, Pablo Valdes, Brian W. Pogue, Keith D. Paulsen, David W. Roberts
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Publication number: 20240095856Abstract: A computer-implemented method, system and computer program product for generating fake documents. A corpus of domain specific documents is built and word embeddings for each word in such documents are identified as embed-ding vectors. Concepts in the corpus are then clustered together by clustering the embedding vectors. A feasible candidate replacement set is generated for each concept using the clustered concepts in the corpus. After such pre-processing steps are accomplished, concepts are extracted from a document. The concept importance values are computed for these extracted concepts, in which the extracted concepts are clustered into bins based on such measurements. A joint optimization problem is solved to identify both the concepts in the document to be replaced using the clustered concepts in the bins as well as the corresponding replacement concepts obtained from the clustered concepts in the corpus. Such replacements are made to generate a fake document.Type: ApplicationFiled: December 27, 2021Publication date: March 21, 2024Applicant: Trustees of Dartmouth CollegeInventors: Venkatramanan Subrahmanian, Dongkai Chen, Haipeng Chen, Deepti Poluru, Almas Abdibayev
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Publication number: 20240085363Abstract: In some embodiments, the present disclosure pertains to methods of detecting an analyte in a sample by associating the sample with an electrode that includes a metal-organic framework. After association, the redox properties of the electrode are evaluated. Thereafter, the presence or absence of the analyte in the sample is detected by correlating the redox properties of the electrode to the presence or absence of the analyte. In some embodiments, the present disclosure pertains to electrodes that include a metal-organic framework and an electrode surface. In particular embodiments of the present disclosure, the metal-organic framework is associated with the electrode surface. Additional embodiments of the present disclosure pertain to methods of making the electrodes of the present disclosure by associating a metal-organic framework with an electrode surface. In some embodiments, the methods of the present disclosure also include a step of mixing the metal-organic framework with a polymer.Type: ApplicationFiled: November 8, 2023Publication date: March 14, 2024Applicant: Trustees of Dartmouth CollegeInventors: Katherine A. Mirica, Lukasz K. Mendecki, Michael Ko, Zheng Meng, Robert M. Stolz, Aileen Eagleton
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Publication number: 20240076415Abstract: Provided are supramolecular polypseudorotaxane hydrogel compositions and 3-D structures capable of reversible 3-D structural deformation which include (a) a solvent; (b) an at least partially linear polymer, where the polymer further comprises groups capable of covalent crosslinking between the polymers; (ii) at least one first macrocyclic ring which forms a pseudorotaxane with a polymer in the polymer network; and (iii) at least one second macrocyclic ring that does not form the pseudorotaxane. The hydrogel composition has a viscosity which allows for 3-D printing of the hydrogel to form a 3-D structure, and a storage (elastic) modulus after crosslinking that allows for the 3-D structure to undergo reversible 3-D structural deformation upon change of solvent conditions. Also provided are methods of manufacturing the compositions and 3-D structures.Type: ApplicationFiled: October 30, 2023Publication date: March 7, 2024Applicant: Trustees of Dartmouth CollegeInventors: Chenfeng Ke, Qianming Lin
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Patent number: 11913223Abstract: A set of interlocking blocks consists a plurality of first blocks and a plurality of second blocks capable of forming kinematic interlock. Each of the first blocks and second blocks comprise at least one male joint and female joint for mating with its counterpart. The motion of the first blocks and second blocks are constrained by joints. Subsequent first blocks and/or second blocks reinforce and immobilize prior first blocks and/or second blocks. Assembly of an interlock structure consisting the set of interlocking blocks may be performed via translation motions.Type: GrantFiled: June 7, 2019Date of Patent: February 27, 2024Assignee: Trustees of Dartmouth CollegeInventors: Yinan Zhang, Devin J. Balkcom
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Patent number: 11894920Abstract: Apparatuses that provide for secure wireless communications between wireless devices under cover of one or more jamming signals. Each such apparatus includes at least one data antenna and at least one jamming antenna. During secure-communications operations, the apparatus transmits a data signal containing desired data via the at least one data antenna while also at least partially simultaneously transmitting a jamming signal via the at least one jamming antenna. When a target antenna of a target device is in close proximity to the data antenna and is closer to the data antenna than to the jamming antenna, the target device can successfully receive the desired data contained in the data signal because the data signal is sufficiently stronger than the jamming signal within a finite secure-communications envelope due to the Inverse Square Law of signal propagation. Various related methods and machine-executable instructions are also disclosed.Type: GrantFiled: September 17, 2021Date of Patent: February 6, 2024Assignee: Trustees of Dartmouth CollegeInventors: Timothy J. Pierson, Ronald Peterson, David F. Kotz
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Patent number: 11890339Abstract: Embodiments of immunogens comprising a recombinant Nipah virus (NiV) F ectodomain trimer stabilized in a prefusion conformation are provided. Also provided are embodiments of immunogens comprising chimeric proteins comprising the recombinant NiV F ectodomain trimer and one or more G ectodomains, a multimer of NiV G ectodomains, and protein nanoparticles comprising the recombinant NiV F ectodomain trimer or an NiV G ectodomain. Also disclosed are nucleic acids encoding the immunogens and methods of their production. Methods for inducing an immune response in a subject by administering a disclosed immunogen to the subject are also provided. In some embodiments, the immune response treats or inhibits NiV infection in a subject.Type: GrantFiled: August 5, 2019Date of Patent: February 6, 2024Assignees: The United States of Americam as represented by the Secretary, Department of Health and Human Services, Trustees of Dartmouth CollegeInventors: Barney Graham, Rebecca Loomis, Guillaume Stewart-Jones, John Mascola, Jason McLellan
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Patent number: 11871233Abstract: A single-antenna device includes a single antenna, at least one processor, and at least one memory. The single-antenna device is operable to receive a signal including at least one frame. Each of said frame includes a repeating portion. The single-antenna device determines a difference of phase and amplitude of the repeating portion and further determines whether the signal is transmitted from a trusted source based at least in part on the difference of phase and amplitude of the repeating portion.Type: GrantFiled: April 26, 2019Date of Patent: January 9, 2024Assignee: Trustees of Dartmouth CollegeInventors: Timothy J. Pierson, Ronald Peterson, David F. Kotz
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Publication number: 20240002685Abstract: The invention provides a supramolecular polymer composition capable of co-assembly to maintain a three dimensional (3-D) macrostructural form after 3-D printing, made of a solvent, a template molecule; and a reactive component. The reactive component can be at least one monomer that is capable of hydrogen bonding with the template molecule to form a 1D supramolecular structure. The template may be an amphiphilic polymer. The monomer has at least two pendant groups capable of covalent crosslinking. The invention also includes a 3-D structure formed by crosslinking a 3-D printed supramolecular polymer composition, which optionally has a mesoporous structure. Also included is a method of manufacturing a 3-D structure by delivering a supramolecular polymer composition onto a surface of a substrate to form the 3-D structure.Type: ApplicationFiled: September 19, 2023Publication date: January 4, 2024Applicant: Trustees of Dartmouth CollegeInventors: Chenfeng Ke, Pengfei Zhang, Longyu Li, Qianming Lin
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Patent number: 11857837Abstract: Devices and methods are disclosed for remote clinical monitoring performance of exercises using an instrumented resistance device (100). An example device (100) includes a resistance band (120) having a first end (122) and a second end (124). A first handle (130) connected to the first end (122) and a second handle (140) connected to the second end (124) of the resistance band (120). The device (100) further includes a force sensing assembly (150) positioned between the first handle (130) and the first end (122). The force sensing assembly (150) includes a force sensor (156) connected to the resistance band (120), a microcontroller (182) connected to the force sensor (156) to receive a set of load force measurements from the force sensor (156), and a communication module (184) connected to the microcontroller (182) to transmit the set of load force measurements to a local data receiving device (170).Type: GrantFiled: May 17, 2019Date of Patent: January 2, 2024Assignee: Trustees of Dartmouth CollegeInventors: Emily Wechsler, Ryan Halter, John A. Batsis