Fort Belvoir Community Hospital Cardiology 9300 Dewitt Loop FL 2, Fort Belvoir, VA 22060 5712312006 (phone), 5712312115 (fax)
Education:
Medical School Uniformed Services University of the Health Sciences Hebert School of Medicine Graduated: 1996
Procedures:
Continuous EKG Echocardiogram Electrocardiogram (EKG or ECG)
Conditions:
Atrial Fibrillation and Atrial Flutter Ischemic Heart Disease
Languages:
English
Description:
Dr. Gates graduated from the Uniformed Services University of the Health Sciences Hebert School of Medicine in 1996. He works in Fort Belvoir, VA and specializes in Cardiovascular Disease. Dr. Gates is affiliated with Fort Belvoir Community Hospital.
Jul 2007 to 2000 Senior Incident Management Analyst
Education:
University of Mississippi University, MS 2005 to 2008 Bachelor's Degree in Business Administration in Human Resources Management
Name / Title
Company / Classification
Phones & Addresses
Daniel J. Gates
OHIO BREW WEEK
Daniel Gates
SETAG, LLC
Daniel E. Gates
GATES LAWN & LANDSCAPING, INC
Daniel Gates
OVERHAUL ADVANTAGE, LLC
Daniel B Gates Incorporator
D and D Services Inc
603 Tanglewood Dr, Brookhaven, MS 39601
Us Patents
Methods Of Performing A Dispatched Medical Logistics Operation Related To A Diagnosis Kit For Treating A Patient And Using A Modular Autonomous Bot Apparatus Assembly And A Dispatch Server
Methods perform one or more dispatched medical logistics operations using a modular autonomous bot apparatus assembly and a dispatch server where the operations are related to a diagnosis kit for treating a patient. The MAM of the bot receives a dispatch command, verifies compatibility of the bot assembly with the dispatched operation(s), receives a diagnosis kit in the CSS, has the MAM autonomously causing the MB to move to a destination location while notifying the authorized delivery recipient for the diagnosis kit of the approaching delivery. With appropriate authentication input received, the MAM coordinates with the CSS to provide access to the kit, monitor unloading of the kit, provide instructional information on use of the kit, and autonomously cause the MB to return to the original location with a return item related to the diagnosis kit with notification to personnel at the medical entity about the return item.
Methods Of Performing A Dispatched Consumer-To-Store Logistics Operation For An Item Being Replaced Using A Modular Autonomous Bot Apparatus Assembly And A Dispatch Server
Methods are described that perform a dispatched consumer-to-store return or swap logistics operation for an item being replaced using a modular autonomous bot apparatus assembly and a dispatch server. The method begins with receiving a return operation dispatch command that includes identifier information, transport parameters, and designated pickup information for the item being replaced/returned, along with authentication information related to an authorized supplier of the item being replaced. Modular components of the bot apparatus are verified to be compatible with the dispatched logistics operation. The MAM then autonomously causes the bot apparatus to move to the designated pickup location, notifies the authorized supplier of an approaching pickup, receives supplier authorization input to permissively allow access to a payload area within the bot apparatus, monitors loading as the item being replaced is received along with return documentation, and then autonomously causes movement of the bot apparatus back to the origin location.
Methods Of Performing A Dispatched Store-To-Consumer Logistics Operation For An Ordered Item And Using A Modular Autonomous Bot Apparatus Assembly And A Dispatch Server
Methods are described that perform dispatched store-to-consumer logistics operations for an ordered item using a modular autonomous bot apparatus assembly and a dispatch server. A dispatch command is received from the dispatch server. The different modular components of the bot assembly are verified to be compatible with the dispatched operation and the ordered item is received in a payload area of a modular cargo storage system. The bot assembly autonomously moves from an origin location to a destination location and notifies the delivery recipient of the approach delivery. When delivery recipient authentication input is received that correlates to the authentication information, selective access is provided to the ordered item within the cargo storage system at the destination location. The bot apparatus monitors unloading, and autonomously moves back to the origin location after the ordered item is detected as removed from the cargo storage system.
Modular Multiple Mobility Base Assembly Apparatus For Transporting An Item Being Shipped
A modular multiple mobility base assembly apparatus is described for transporting an item being shipped having a base adapter plate and two cooperating and coordinating modular mobility bases that are each coupled to the bottom of the base adapter plate and collectively support the base adapter plate. One of the modular mobility bases operations a master autonomous mobile vehicle, while the other operates as a slave autonomous mobile vehicle that receives propulsion and steering control signals from the master while providing feedback sensor data to the master for use in coordinated and cooperative movement of the assembly apparatus. Each of the modular mobility bases also including respective wireless transceivers through which at least the control signals and sensor data are provided between mobility base units.
Modular Mobility Base For A Modular Autonomous Logistics Vehicle Transport Apparatus
A modular mobility base for a modular autonomous bot apparatus transporting an item being shipped including a mobile base platform, a component alignment interface, a mobility controller, a propulsion and steering system, and sensors. The component alignment interface provides an alignment channel into which another modular component can be placed and secured on the platform. The mobility controller generates propulsion control signals for controlling speed of the modular mobility base and steering control signals for navigation of the modular mobility base. The propulsion system is connected to the platform and responsive to the propulsion control signal. The steering system is connected to the mobile base platform and is responsive to the steering control signal to cause changes to directional movement of the modular mobility base. The sensors are disposed on the platform provide feedback sensor data to the mobility controller about a condition of the modular mobility base.
Modular Cargo Storage Apparatus For Use On A Base Platform Of A Modular Autonomous Bot Apparatus That Transports An Item Being Shipped
A modular cargo storage system (CSS) is described for use on a base platform of a modular autonomous bot apparatus that transports an item being shipped. The modular CSS includes a set of folding structural walls, an interlocking alignment interface on at least one of the walls, and a modular component power and data transport bus. The walls at least partially enclose a payload area above the base platform. The interlocking alignment interface has a set of latches and a locking handle coupled to the set of latches that actuates the latches to interlock with the base platform. The power and data transport bus have top and bottom side modular component electronics interfaces where each interface has a power conduit outlet and a command and data communication interface.
Modular Auxiliary Power Module For A Modular Autonomous Bot Apparatus That Transports An Item Being Shipped
A modular auxiliary power module is described for a modular autonomous bot apparatus that transports an item being shipped. The modular auxiliary power module includes a base adapter platform, a cargo door, an auxiliary power source, and an output power outlet disposed on the base adapter platform as part of a modular component electronics interface. A top side of the base adapter platform has a cargo support area configured to support the item being shipped. Interlocking alignment interfaces (such as channels or latches) are on the top and bottom of the platform. The cargo door is movably attached to and extending from an edge of the base adapter platform, and the output power outlet is coupled to the auxiliary power source and provides access to power for other components of the modular autonomous bot apparatus from the auxiliary power source.
Modular Autonomous Bot Apparatus Assembly For Transporting An Item Being Shipped
A modular autonomous bot apparatus assembly is described for transporting an item being shipped. The assembly includes a modular mobility base having propulsion, steering, sensors for collision avoidance, and suspension actuators; a modular auxiliary power module with a power source and cargo door; a modular cargo storage system with folding structural walls and a latching system; and a modular mobile autonomy module that covers the cargo storage system and provides human interaction interfaces, externals sensors, a wireless interface, and an autonomous controller with interfacing circuitry coupled to the human interaction interfaces and sensors on the mobile autonomy module. The assembly has a power and data transport bus that provides a communication and power conduit across the different modular components. A method for on-demand assembly of such a bot apparatus is further described with steps for authenticating the different modular components during assembly.
License Records
Daniel S Gates
License #:
E066003 - Expired
Category:
Emergency medical services
Issued Date:
Oct 14, 2008
Expiration Date:
Oct 31, 2010
Type:
Orange County EMS Agency
Googleplus
Daniel Gates
Education:
Minnesota State University Moorhead - Theater, St. Cloud State University - Public Administration, American University - Political Science, Alexandria Technical College - Law Enforcement, Concordia University, Saint Paul - Criminal Justice Leadership, South Central College - EMT-Basic
About:
Grew up in Forest Lake & Alexandria, Minnesota. Now lives in Fairmont, Minnesota.
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