A61N2007/0004

SYNTHESIS AND APPLICATION OF MICROBUBBLE-FORMING COMPOUNDS
20210236415 · 2021-08-05 ·

The present disclosure is directed to fatty-acid glycerol ester derivative compounds containing a targeting bisphosphonate group. The disclosure further includes pharmaceutical or biomedical compositions comprising these compounds, and methods of using these compounds and compositions forming microbubbles. The microbubbles have affinity for metal-containing, especially calcium-containing, bodies and/or biological targets. In certain embodiments, these compositions are useful for providing targeted placement of microbubbles capable of cavitation on application of high frequency energy.

Targeting cancer cells selectively via resonant harmonic excitation

Systems and methods for targeting specific cell types by selective application of ultrasonic harmonic excitation at their resonance frequency (“oncotripsy”) are presented. The systems and methods result in the lysis of targeted cell types by using ultrasonic harmonic excitations that have been specifically tuned to disrupt the nuclear membrane of the targeted cells types by inducing a destructive vibrational response therein while leaving non-targeted cell types intact. The target cells types may be cancerous cells.

ANTICARBOXYMETHYL LYSINE ANTIBODIES AND ULTRASOUND FOR REMOVING AGE-MODIFIED CELLS
20210253739 · 2021-08-19 ·

A method of killing AGE-modified cells comprises applying ultrasound to a subject and administering to the subject a composition comprising an anti-AGE antibody. The applying of ultrasound may occur before or after the administering of the anti-AGE antibody. The AGE-modified cells may be in a restricted site.

Cancer Treatment And Imaging Methods Using Thermotherapy And Drug Delivery
20210220480 · 2021-07-22 ·

Cancer treatment and imaging methods using thermotherapy and drug delivery are disclosed herein. In one embodiment, the method comprises the steps of administering a plurality of antibody or aptamer-conjugated nanoparticles, liposomes, and/or micelles containing a medication and/or gene to a patient in need thereof so as to target a tumor in the patient, at least some of the antibody or aptamer-conjugated nanoparticles, liposomes, and/or micelles attaching to surface antigens of tumor cells of the tumor so as to form a tumor cell/nanoparticle/liposome/micelle complex; and heating the antibody or aptamer-conjugated nanoparticles, liposomes, and/or micelles using an energy source so as to raise the temperature of the tumor cell/nanoparticle complex, micelle complex, and/or liposome complex, thereby releasing one or more medications from the antibody or aptamer-conjugated nanoparticles, liposomes, and/or micelles, and damaging one or more tumor cell membranes at the tumor site.

ENERGY BASED SKIN GLAND TREATMENT
20210228914 · 2021-07-29 ·

A method and system for energy-based (e.g., ultrasound treatment and/or other modalities) of skin glands are provided. An exemplary method and system for targeted treatment of skin glands, such as sweat and/or sebaceous glands, can be configured in various manners, such as through use of therapy only, therapy and monitoring, imaging and therapy, or therapy, imaging, and monitoring, and/or through use of focused, unfocused, or defocused ultrasound (or other energy) through control of various spatial and temporal parameters. As a result, ablative energy can be deposited at the particular depth at which the skin gland population is located below the skin surface.

Device and method for lung treatment

This invention relates to the treatment of a patient's lung, for example, a lung exhibiting chronic obstructive pulmonary disease (COPD) and in particular to methods and devices for affecting lung volume reduction, preferably for achieving acute or immediate lung volume reduction following treatment. The lung volume reduction is effected by delivering a condensable vapor at a temperature above body temperature to the desired regions of the patient's lung to damage tissue therein. Blood flow and air flow to the damaged tissue region is essentially terminated, rendering the target region non-functional. Alternative energy sources may be used to effect the thermal damage to the lung tissue.

ADAPTIVE, CLOSED-LOOP ULTRASOUND THERAPY
20210170204 · 2021-06-10 ·

Various approaches to focusing an ultrasound transducer includes causing the ultrasound transducer to transmit ultrasound waves to the target region; causing the detection system to indirectly measure the focusing properties; and based at least in part on the indirectly measured focusing properties, adjusting a parameter value associated with at least one of the transducer elements so as to achieve a target treatment power at the target region.

Pulsed electromagnetic field tissue stimulation treatment and compliance monitoring

A system and method for PEMF tissue engineering enhances musculoskeletal tissue stimulation by monitoring treatment for compliance with treatment regimens. A PEMF device includes sensors that detect attributes indicating whether the PEMF device is in use. The PEMF device also includes communication devices that connect it with other devices. The data obtained from the sensors may be used to determine a level of compliance in use of the tissue engineering device with a prescribed treatment regimen for the patient. The data is transferred via a paired UE to a remote server. The remote server stores the data in a database and periodically generates compliance reports. The compliance reports are shared with subscribing access devices including the prescribing physician. The UE pairing with the PEMF device maintains a treatment calendar and dynamically modifies reminders based on current treatment status. The treatment regimen may be updated and sent to the PEMF device.

CONTROLLING DELIVERY OF THERAPEUTIC AGENT IN MICROBUBBLE-ENHANCED ULTRASOUND PROCEDURES
20210187331 · 2021-06-24 ·

Various approaches for microbubble-enhanced ultrasound treatment of target tissue include receiving a desired characteristic of the microbubbles for treating the target tissue; causing the microbubbles to be dispensed from the administration device; and comparing a characteristic of the dispensed microbubbles to the desired characteristic so as to validate a match therebetween.

MULTI-CHANNEL ULTRASOUND STIMULATOR
20210196988 · 2021-07-01 ·

This application relates to a multi-channel ultrasound stimulator. The ultrasound stimulator includes a housing with a concavely curved inner surface and a plurality of channels disposed on the inner surface and spaced from each other at regular intervals. Each of the channels can emit ultrasonic waves independently of each other, and the channels form a wide ultrasound field range. The channels are arranged in a zigzag pattern. The channels can generate an ultrasound field to uniformly stimulate breast tissue of a patient due to the arrangement thereof on the concavely curved surface. A rotator rotates the housing about a rotary shaft to increase an application range of ultrasonic waves and to prevent local concentration of application of ultrasonic waves. A controller operates the channels according to a predetermined operation sequence according to the intensity of ultrasonic waves of each channel, thereby preventing excessive stimulation and enabling uniform stimulation.