Real-time moisture sensing during pollen drying prevents desiccation damage and enables long-term cryostorage with retained viability and fertility.
Indoor pollination is handled by moving vertical grow towers through a chamber that uses blowers, vibration, brushes, or nozzles to distribute pollen.
Timed application of preserved or fresh male pollen enables high-purity oilseed hybrid seed production without male sterility or field isolation.
Atomized humidity in the blower air preserves pollen viability during row-crop distribution, improving cross-pollination in warm fields.
Applying preserved male pollen when female and nearby unrelated pollen is not shed reduces reliance on isolation and male sterility.
Airflow-induced flower vibrations dislodge pollen, enabling precise, high-throughput pollination in greenhouses and vertical farms.
A hand-held pneumatic pollinator uses directional airflow to transport pollen from male to female rice plants.
A pneumatic pollination device uses controlled airflow to transport pollen from male parent plants to female parent plants.
A flexible pollination bag uses a nested pouch and elongated closure to isolate plant flowers.
A machine vision system uses distance arms and gas discharge tubes to capture sharp images for precise weed detection while minimizing power consumption.
A pollinating machine uses a vacuum and blow-back system to trip blossoms and recirculate pollen between enclosed chambers.
A client device automatically creates hidden SyncML server profiles to enable immediate synchronization without manual user configuration.