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Arvind K Ramadorai

from Boston, MA
Age ~59

Arvind Ramadorai Phones & Addresses

  • Boston, MA
  • North Haven, CT
  • 41 Middle St, Lexington, MA 02421 (781) 777-1700
  • Bedford, MA
  • 122 Oakland Ave, Arlington, MA 02476 (781) 777-1700
  • Westwood, MA
  • Herndon, VA
  • Cambridge, MA
  • Arlington, OH
  • 41 Middle St, Lexington, MA 02421 (781) 831-4493

Resumes

Resumes

Arvind Ramadorai Photo 1

Senior Director, Global Marketing, Data And Analytics, Ai And Ml, Surgical Robotics

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Location:
41 Middle St, Lexington, MA 02421
Industry:
Medical Devices
Work:
Covidien - Surgical Systems - Emerging Technologies since Mar 2013
Senior Director, Global Marketing

Collaborative Care Innovation Seminar (CCIS, Formerly CCTWG) - Boston, MA since Jun 2010
Collaborative Care Innovation Seminar (CCIS, formerly CCTWG) Member of Founding Working Team

Honeywell Safety Products, HomMed Apr 2012 - Mar 2013
Director of Product Marketing and Marketing Leader

Marketing and Strategy Consulting Nov 2011 - Apr 2012
Principal

iRobot Healthcare Jan 2010 - Nov 2011
Senior Director, Strategy & New Markets Dev and Product Management (Healthcare and New Markets)
Education:
London Business School, U. of London
PSG College of Technology
Vikaasa school madurai
Washington University in St. Louis
Skills:
Product Management
Product Marketing
Product Development
Market Research
Saas
P&L Management
Strategic Planning
Program Management
Crm
New Business Development
Medical Devices
Go To Market Strategy
Cloud Computing
Healthcare
Wireless
Six Sigma
Consumer Electronics
Healthcare Information Technology
Security
Robotics
Business Development
Gps
Android
M2M
Mobile Applications
Network Security
Telematics
Pharmaceuticals
Medical Robotics
Biotechnology
Life Sciences
Location Based Services
Rfid
Industrial Automation
Direct Marketing
Product Life Cycle Management
Agile Project Management
Software Marketing
Entrepreneurial Skills
Launch of New Products
Marketing Communications
Channel Marketing
M&A Experience
Consumer Goods Marketing
International Marketing
Social Media Marketing
Multi Channel Marketing
Marketing Automation
Surgical Robotics
Minimally Invasive Procedures
Languages:
English
Arvind Ramadorai Photo 2

Arvind Ramadorai

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Publications

Us Patents

Asset Recovery System

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US Patent:
20090207050, Aug 20, 2009
Filed:
Feb 12, 2009
Appl. No.:
12/378242
Inventors:
Claude Arpin - Longueuil, CA
William R. Duvall - Sudbury MA, US
Joseph T. Lipowski - Scituate MA, US
Arvind K. Ramadorai - Arlington MA, US
Thomas A. Wooters - Boston MA, US
International Classification:
G08G 1/123
US Classification:
340988
Abstract:
An asset location, tracking, and recovery system and method includes a network of VHF towers and a control center receiving signals from and transmitting signals to the VHF towers. Primary locating units each include a transmitter, a receiver, and a transponder activated when a signal is transmitted by the control center via the VHF towers to the receiver. Auxiliary locating units include at least a transmitter emitting a signal received by at least one primary locating unit receiver which relays that signal to the control center via the VHF towers from the primary locating unit transmitter.

System And Methods For Suturing Guidance

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US Patent:
20230015516, Jan 19, 2023
Filed:
Jan 8, 2021
Appl. No.:
17/790964
Inventors:
- Mansfield MA, US
Arvind K. Ramadorai - Lexington MA, US
Meir Rosenberg - Newton MA, US
Joshua R. Snow - Clinton CT, US
William J. Peine - Ashland MA, US
International Classification:
A61B 34/10
A61B 34/00
Abstract:
A tissue suturing guidance system includes an image capturing device, a display, and a processor in communication with the image capturing device and the display. The image capturing device is configured to capture a suture site. The display is configured to display an image of the suture site. The processor is configured to: determine, based on the image of the suture site, a geometric tissue representation of the suture site; access measured properties of the suture site; determine, based on the measured properties of the suture site, a biomechanical tissue representation of the suture site; and generate, based on the geometric tissue representation and biomechanical tissue representation of the suture site, a suturing configuration for the suture site.

Surgical Robotic Systems And Methods Of Tracking Usage Of Surgical Instruments Thereof

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US Patent:
20210212784, Jul 15, 2021
Filed:
Sep 9, 2019
Appl. No.:
17/272720
Inventors:
- Mansfield MA, US
Arvind Ramadorai - Lexington MA, US
International Classification:
A61B 34/35
A61B 17/072
G06K 9/00
G16H 20/40
G16H 40/40
G16H 40/63
Abstract:
A method of tracking usage of a robotic surgical instrument includes capturing an image of a surgical instrument with an imager during a robotic surgical procedure, identifying a type of the surgical instrument based on the image of the surgical instrument, determining a degree of usage of the surgical instrument based on data acquired by at least one sensor, and determining a stage in a life cycle of the surgical instrument based on the type of surgical instrument identified and the degree of usage determined.

Synthesizing Spatially-Aware Transitions Between Multiple Camera Viewpoints During Minimally Invasive Surgery

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US Patent:
20210029307, Jan 28, 2021
Filed:
Oct 8, 2020
Appl. No.:
17/065580
Inventors:
- Mansfield MA, US
Dwight Meglan - Westwood MA, US
Arvind K. Ramadorai - Lexington MA, US
International Classification:
H04N 5/262
A61B 34/30
A61B 90/00
G06T 7/70
H04N 5/247
Abstract:
Disclosed are systems, devices, and methods for synthesizing spatially-aware transitions between camera viewpoints. An exemplary method includes receiving images of a surgical site from a first camera, tracking a position of a robotic arm including a second camera coupled thereto, tracking the pose of the second camera, receiving images of the surgical site from the second camera that are different from the images received from the first camera as the robotic arm is moved to different positions, comparing a pose from which at least one of the images received from the second camera were captured to a pose from which at least one of the images received from the first camera were captured, generating a transition between the compared images, and displaying the transition when switching between displaying images received from the first and second cameras.

Synthesizing Spatially-Aware Transitions Between Multiple Camera Viewpoints During Minimally Invasive Surgery

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US Patent:
20200169673, May 28, 2020
Filed:
Aug 16, 2018
Appl. No.:
16/636075
Inventors:
- Mansfield MA, US
Dwight Meglan - Westwood MA, US
Arvind Ramadorai - Lexington MA, US
International Classification:
H04N 5/262
G06T 7/70
H04N 5/247
A61B 34/30
A61B 90/00
Abstract:
Disclosed are systems, devices, and methods for synthesizing spatially-aware transitions between camera viewpoints. An exemplary method includes receiving images of a surgical site from a first camera, tracking a position of a robotic arm including a second camera coupled thereto, tracking the pose of the second camera, receiving images of the surgical site from the second camera that are different from the images received from the first camera as the robotic arm is moved to different positions, comparing a pose from which at least one of the images received from the second camera were captured to a pose from which at least one of the images received from the first camera were captured, generating a transition between the compared images, and displaying the transition when switching between displaying images received from the first and second cameras.

Systems, Methods, And Computer-Readable Program Products For Controlling A Robotically Delivered Manipulator

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US Patent:
20190290374, Sep 26, 2019
Filed:
Jun 2, 2017
Appl. No.:
16/306605
Inventors:
- Mansfield MA, US
Arvind RAMADORAI - Lexington MA, US
International Classification:
A61B 34/37
A61B 34/00
G06F 3/0488
G06F 3/01
Abstract:
Systems, methods, and computer-readable media are provided for controlling a robotically delivered manipulator. One system includes a robotic manipulator having a base and a surgical instrument holder configured to move relative to the base, a surgical instrument removably coupled to the surgical instrument holder, a user interface configured to present information related to least one of the robotic manipulator or the surgical instrument, a gesture detection sensor configured to detect a gesture made by a user representing a desired movement of the robotic manipulator, and a controller configured to actuate the robotic manipulator in a predetermined manner corresponding to the detected gesture.
Arvind K Ramadorai from Boston, MA, age ~59 Get Report