B65D81/22

WET WIPE COVER WITH CONVENIENT WIPE DRAWING OPENING
20210393090 · 2021-12-23 ·

The present invention discloses a wet wipe cover with convenient wipe drawing opening, which is used on a wet wipe packaging bag body. The wet wipe cover with convenient wipe drawing opening comprises a cover body and an upper cover, wherein the cover body is provided with a through hole in which an elastic sealing cover is arranged; and the elastic sealing cover is provided with a cutting groove from the bottom upwards, and the cutting groove does not penetrate through the upper surface of the elastic sealing cover. When the sealing cover is stressed, the elastic sealing cover bulges upwards or downwards, and a small-caliber wipe drawing opening is cracked on the upper surface of the sealing cover corresponding to the cutting groove; and when the cover is not stressed, the paper extraction opening recovers to a closed state under the action of the elastic force. When the application needs to be used, the cover is forced to open the wipe drawing opening, and the wet wipe can be ejected from the packaging bag; when it is not needed, the cover is not forced to close the wipe drawing opening, which is convenient and safe to use.

Transport Container For Free-Rooted Plants
20220204253 · 2022-06-30 ·

A transport container for free-rooted plants adapted to safely transport plants to be grown aeroponically. The container may include a light adapted to keep the plant in a vegetative state during transportation. The light may be wavelength limited to include lower frequency visible light. The transport container may include a stem and root stabilizer to protect, position, and stabilize the stem and roots. Water retaining structures, such as gelatinous balls, may be contained within the base of the container and are adapted to allow for moisture and nutrients to be passed to the roots.

Transport Container For Free-Rooted Plants
20220204253 · 2022-06-30 ·

A transport container for free-rooted plants adapted to safely transport plants to be grown aeroponically. The container may include a light adapted to keep the plant in a vegetative state during transportation. The light may be wavelength limited to include lower frequency visible light. The transport container may include a stem and root stabilizer to protect, position, and stabilize the stem and roots. Water retaining structures, such as gelatinous balls, may be contained within the base of the container and are adapted to allow for moisture and nutrients to be passed to the roots.

Methods for storing and preserving cannabis or cannabis-containing substances

Methods for storing and preserving cannabis or cannabis-containing substances using container assemblies are disclosed. An exemplary container assembly includes a lid and a container body. The lid is configured to be closed onto the container body over an opening of the container body. The opening provides access to an interior space having a product compartment configured to store product. The assembly also includes a humectant compartment permanently secured within the assembly. The humectant compartment includes a rigid housing containing a humectant solution. The rigid housing is configured within the assembly to prevent leaking of the humectant solution into the product compartment while facilitating bidirectional transmission of moisture between the humectant compartment and the product compartment. The humectant solution regulates relative humidity of the product compartment to maintain the relative humidity at a predetermined level.

Methods for storing and preserving cannabis or cannabis-containing substances

Methods for storing and preserving cannabis or cannabis-containing substances using container assemblies are disclosed. An exemplary container assembly includes a lid and a container body. The lid is configured to be closed onto the container body over an opening of the container body. The opening provides access to an interior space having a product compartment configured to store product. The assembly also includes a humectant compartment permanently secured within the assembly. The humectant compartment includes a rigid housing containing a humectant solution. The rigid housing is configured within the assembly to prevent leaking of the humectant solution into the product compartment while facilitating bidirectional transmission of moisture between the humectant compartment and the product compartment. The humectant solution regulates relative humidity of the product compartment to maintain the relative humidity at a predetermined level.

Packaging for dry tissue prosthetic heart valve

A “dry” packaging in which a prosthetic heart valve is packaged within a container with hydrogel that can be provided in many forms. Certain embodiments include hydrogel that is preloaded with glycerol or the like. The hydrogel regulates the humidity within the container through a diffusion-driven mechanism if a gradient of humidity between the inside and the outside of the hydrogel exists. Humidity regulation is important to prevent the tissue of the valve structure from drying out. When the partially-hydrated hydrogel is present within container, which is saturated with air of a predefined humidity, the water molecules from the air will be absorbed by the hydrogel if the air humidity is high (i.e. when the thermodynamics favor hydrogel hydration) or vice versa. Various embodiments are configured to also house at least a portion of a delivery device for delivering the prosthetic heart valve.

Packaging for dry tissue prosthetic heart valve

A “dry” packaging in which a prosthetic heart valve is packaged within a container with hydrogel that can be provided in many forms. Certain embodiments include hydrogel that is preloaded with glycerol or the like. The hydrogel regulates the humidity within the container through a diffusion-driven mechanism if a gradient of humidity between the inside and the outside of the hydrogel exists. Humidity regulation is important to prevent the tissue of the valve structure from drying out. When the partially-hydrated hydrogel is present within container, which is saturated with air of a predefined humidity, the water molecules from the air will be absorbed by the hydrogel if the air humidity is high (i.e. when the thermodynamics favor hydrogel hydration) or vice versa. Various embodiments are configured to also house at least a portion of a delivery device for delivering the prosthetic heart valve.

Hydrophilic medical products and hydration mediums for hydrating the same

Hydration mediums, assemblies containing hydration mediums and methods of making the same are disclosed. The hydration mediums are intended for hydrating or wetting a medical device such as a catheter and comprise a hydration foam. Furthermore, methods and products involving hydrophilic substances are disclosed e.g. involving mucilage, deep eutectic liquids, antifreeze substances or cryoprotectants, oil or a hydration medium together with water, surfactant, polyol and stabilizer.

Packages for medical devices and medical device assemblies

A package for containing a medical device including peel stops located in the first side seal zone and the second side seal zone of a peripheral seal of package, wherein the first and second peel-stops limit peeling of the first and second side seal zones of the peripheral seal.

Packages for medical devices and medical device assemblies

A package for containing a medical device including peel stops located in the first side seal zone and the second side seal zone of a peripheral seal of package, wherein the first and second peel-stops limit peeling of the first and second side seal zones of the peripheral seal.