System and methods of preserving integrity and securely transporting biological specimens to a depository and devices for securely storing biological specimens
10363560 · 2019-07-30
Inventors
Cpc classification
B01L1/50
PERFORMING OPERATIONS; TRANSPORTING
E05B2047/0094
FIXED CONSTRUCTIONS
B01L2200/141
PERFORMING OPERATIONS; TRANSPORTING
A47G29/141
HUMAN NECESSITIES
B01L3/508
PERFORMING OPERATIONS; TRANSPORTING
A47G2029/142
HUMAN NECESSITIES
A47G2029/1221
HUMAN NECESSITIES
A47G29/30
HUMAN NECESSITIES
E05B39/005
FIXED CONSTRUCTIONS
B01L2300/023
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A system and methods of securely storing biological samples prior to the secure transportation of the biological and/or biohazardous specimens to a depository where the system can determine the locations and pickup times of the couriers transporting the enclosures from the storage unit to the depository.
Claims
1. A storage unit for securely holding one or more enclosures enclosing one or more biological specimens until said enclosures are removed from said storage unit for transport to a depository wherein subsequent analysis of said biological specimens can transpire; said storage unit comprising: a) a lower section and an upper section, wherein said upper section comprises a pivotable deposit-only gate for receiving temporary deposits of said enclosures such that after deposit onto and closure of said pivotable deposit-only gate, said enclosures drops into said lower section; b) a door and lock combination allowing removal of said enclosures from said storage unit; c) a communications module; d) one or more hardware components in communication with said communications module; said one or more hardware components selected from the group consisting of an enclosure detection sensor capable of detecting entry of said enclosures into said lower section, an internal temperature sensor, said door lock and lock combination comprising an energy source status monitor, an open/close sensor for said door, a door opening signal receiver, an electrically or manually actuated lock for said door, a gate movement sensor and/or a holder for temporarily holding said enclosures detector positioned about a lower section for detecting said holder; e) an energy source; and f) an ultraviolet light positioned within said storage unit and operably connected to said door, wherein, when said storage unit does not contain any of said enclosures, and said door is closed, said ultraviolet light is activated, for a predetermined time, to reduce microbial growth.
2. The storage unit of claim 1, wherein said communications module is capable of communicating, via a network, with an operations center remote from said communications module.
3. The storage unit of claim 2 further comprising a photovoltaic panel.
4. The storage unit of claim 2, wherein said ultraviolet light has a wavelength of about 253 nanometers.
5. The storage unit of claim 4, wherein said holder comprises insulation.
6. The storage unit of claim 4 comprising: a) a riser; or b) a vertical mounting apparatus; or c) a floor mounting apparatus.
7. A storage unit for securely holding one or more enclosures enclosing one or more biological specimens until said enclosures are removed from said storage unit for transport to a depository, wherein subsequent analysis of said biological specimens can transpire; said storage unit comprising: a) a first section for receiving said one or more enclosures; b) a door and lock combination allowing removal of said one or more enclosures from said storage unit; c) a communications module in communication with an enclosure detection sensor capable of detecting entry of said one or more enclosures; d) an energy source; and e) an ultraviolet light positioned within said storage unit and operably connected to said door, wherein, when said storage unit does not contain any of said enclosures, and said door is closed, said ultraviolet light is activated, for a predetermined time, to reduce microbial growth.
8. The storage unit of claim 7 comprising a second section and a deposit-only gate receiving temporary deposits of said enclosures prior to deposit into said first section.
9. The storage unit of claim 8 further comprising a holder for temporarily holding said enclosures, wherein said holder optionally comprises insulation.
10. The storage unit of claim 9, wherein said deposit-only gate is pivotable.
11. The storage unit of claim 8, wherein said communications module is in communication with one or more of the following: an energy source status monitor, an open/close sensor for said door, a door opening signal receiver, said door lock and lock combination comprising an electrically or manually actuated lock for said door, a gate movement sensor and/or a holder detector positioned about said first section for detecting a holder for temporarily holding said enclosures.
12. The storage unit of claim 11, wherein said communications module is capable of communicating, via a network, with an operations center remote from said communications module.
13. The storage unit of claim 12 further comprising a photovoltaic panel.
14. The storage unit of claim 13 comprising: a) a riser; or b) a vertical mounting apparatus; or c) a floor mounting apparatus.
15. A storage unit for securely holding one or more enclosures enclosing one or more biological specimens until said enclosures are removed from said storage unit for transport to a depository; said storage unit comprising: a) a first section for receiving one or more of said enclosures; b) a door and lock combination allowing removal of said one or more enclosures from said storage unit; c) an open/close sensor for said door; d) an energy source; and e) an ultraviolet light positioned within said storage unit and operably connected to said door, wherein, when said storage unit does not contain any of said enclosures, and said door is closed, said ultraviolet light is activated to reduce microbial growth.
16. The storage unit of claim 15 comprising a second section and a deposit-only gate receiving temporary deposits of said enclosures prior to deposit into said first section.
17. The storage unit of claim 16 further comprising a holder for temporarily holding said enclosures, wherein said holder optionally comprises insulation.
18. The storage unit of claim 17, wherein said deposit-only gate is pivotable.
19. The storage unit of claim 18 comprising one or more hardware components in communication with a communications module; said one or more hardware components selected from the group consisting of an enclosure detection sensor capable of detecting entry of said enclosures into said first section, an internal temperature sensor, an energy source status monitor, said open/close sensor for said door, a door opening signal receiver, said door lock and lock combination comprising an electrically or manually actuated lock for said door, a gate sensor for movement of said opening and/or a holder detector positioned about said first section for detecting said holder.
20. The storage unit of claim 19, wherein said communications module is capable of communicating, via a network, with an operations center remote from said communications module.
21. The storage unit of claim 20 further comprising a photovoltaic panel.
22. The storage unit of claim 21 comprising: a) a riser; or b) a vertical mounting apparatus; or c) a floor mounting apparatus.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
(16) The disclosure hereof is detailed to enable those skilled in the art to practice the invention, and the embodiments published herein merely exemplify the present system, methods and devices and do not limit the scope of the claims appended hereto.
(17) The present system and method is directed primarily toward the preservation of integrity, secure storage and transportation of biological samples or specimens from a secure storage unit to a depository. Within the scope of the current invention, depositories include but are not limited to testing laboratories, storage facilities, cryonic facilities, blood banks or any other facility handling, storing or managing biological specimens or samples. Unique to the current system and method is the storage unit located on the premises proximate the biological specimen handlers. Examples of biological specimen handlers include but are not limited to any person licensed by or legally allowed by a government to handle biological specimens, e.g., medical doctors, nurses, hospital technicians, military technicians, law enforcement officers, emergency medical technicians, to identify a few of the many possible biological specimen handlers. Due to the possibility of breach of the integrity of the biological sample or the potential contamination of couriers and others within the scope of the present invention, prior to deposit into the storage unit, the biological samples are enclosed in enclosures that comply with national, state and local standards for transporting biological samples. By way of illustration, an example of a legal enclosure is a sealable plastic bag designed for enclosing tubes that carry biological samples where the plastic bags and the tubes meet the national, state and local standards for storing and transporting biological specimens or samples.
(18) Select preferred embodiments of the present invention allow an operations center remote from one or more of the storage units to authorize one or more couriers to transport the enclosures to the depository. In other select preferred embodiments of the current system and method, an operations center remote from one or more of the storage units can utilize a network to monitor conditions, status and the environment of one or more of the secure storage units. Networked communications between the storage units and the operations center allow exchange or intercommunication of data between the storage units remote from the operations center and the operations center, thereby allowing the operations center the option to control one or more of the storage units remote from the operations center. Examples of networks that can be associated with the current invention include but are not limited to cellular, satellite, mobile infrastructure, wide area, local area, public and the infrastructure and clouds associated with the identified networks.
(19) In select preferred embodiments of the current invention, directives initiated by the data exchanged between the storage units and the operations center can control movement and scheduled pickup times of the couriers that transport the enclosures containing the biological specimens to the depository.
(20) In other select preferred embodiments of the current invention, an ultraviolet light located in the storage unit is used to reduce microbial growth within the storage unit.
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(22) For select preferred embodiments of storage unit (20), storage unit (20) has an upper section (22) and lower section (24). Upper section (22) is provided with deposit-only gate (40) and lower section (24) is provided with door (50) and lock (54). As shown in
(23) As shown in
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(25) As shown in
(26) In select preferred embodiments of the current invention, inward side of door (50) is provided with magnet (64) and lock receptacle (62) for receiving lock (66) of solenoid and lock combination (60). In the event of a hardware/software, power or communications network malfunction, can receive a device, e.g., as a key, for manually unlocking door (50). As shown in
(27) As shown in
(28) Returning to
(29) Select preferred embodiments of the current invention are provided with an enclosure detection sensor (92) capable of detecting entry of enclosures into the permanent holder or portable holder (30) when the holder is locked inside the secure storage unit (20). Enclosure detection sensors (92) can include triboelectric, acoustic, electromagnetic, photoelectric, electromechanical, thermal gradient, piezoelectric, dielectric loss sensors or any other sensor acceptable in the art.
(30) Within the scope of the present invention, storage units (20) can be provided with door opening signal receiver (94). By way of illustration and not limitation, a device such as an infrared key fob remote device, acoustic transmitter or a remote radiofrequency transmitter can be used by a person in proximity with the storage unit (20) to generate a door opening signal toward storage unit's (20) door opening signal receiver (94). Preferred embodiments of storage unit (20) are provided with internal temperature sensor (96).
(31) Within the scope of the current invention, antenna (80), gate movement sensor (84), door open/close sensor (86), holder detector (90), enclosure detection sensor (92), door opening signal receiver (94), internal temperature sensor (96) and solenoid and lock combination (60) communicate/intercommunicate with CPU/transceiver or a communications module (150) by any means acceptable in the art. Select preferred embodiments of storage unit (20) include a CPU/transceiver or a communications module (150) that has an energy source status monitor. Within the scope of the current invention, communications module (150) can be any communications module acceptable in the art capable of communicating with hardware or software components of storage unit (20) and operations center (300).
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(33) As shown in
(34) A preferred embodiment of storage unit (20) is shown in
(35) Select steps associated with the system and methods of practicing the present invention are depicted in
(36) Having disclosed the invention as required by Title 35 of the United States Code, Applicants now pray respectfully that Letters Patent be granted for their invention in accordance with the scope of the claims appended hereto.