IP Library Patent Application 19235886
Patent Application
App. No. 19/235,886

AUDIOVISUAL PRESENCE TRANSITIONS IN A COLLABORATIVE REALITY ENVIRONMENT

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Patent No.
US None
App. No.
19/235,886
Abstract

Examples of systems and methods to facilitate audiovisual presence transitions of virtual objects such as virtual avatars in a mixed reality collaborative environment are disclosed. The systems and methods may be configured to produce different audiovisual presence transitions such as appearance, disappearance and reappearance of the virtual avatars. The virtual avatar audiovisual transitions may be further indicated by various visual and sound effects of the virtual avatars. The transitions may occur based on various colocation or decolocation scenarios.

Claims (58)

1 .- 20 . (canceled)

21 . A computer-implemented method for mixed-reality (MR) collocation of virtual content, comprising:

joining, by a MR system, a colocation session;

transmitting, by the MR system, persistent coordinate data;

receiving, by the MR system, persistent coordinate data;

determining, by the MR system, whether at least one shared instance of persistent coordinate data exists;

determining, by the MR system, whether more than one shared instance of persistent coordinate data exists;

identifying, by the MR system, a preferred shared instance of persistent coordinate data of the more than one shared instance of the persistent coordinate data; and

displaying, by the MR system and using the preferred shared instance of persistent coordinate data, collocated virtual content.

22 . The computer-implemented method of claim 21 , wherein the MR system is invited to join an existing colocation session or the MR system initiates a new colocation system.

23 . The computer-implemented method of claim 21 , wherein the MR system also transmits and receives relational data.

24 . The computer-implemented method of claim 21 , wherein the MR system transmits the persistent coordinate data to other MR systems in the colocation session.

25 . The computer-implemented method of claim 21 , wherein the MR system transmits the persistent coordinate data to one or more remote servers, which transmit the persistent coordinate data to other MR systems in the colocation session.

26 . The computer-implemented method of claim 21 , wherein the MR system receives the persistent coordinate data from one or more MR systems in the colocation session.

27 . The computer-implemented method of claim 21 , wherein the MR system receives the persistent coordinate data which corresponds to one or more MR systems from one or more remote servers.

28 . The computer-implemented method of claim 21 , comprising:

determining whether at least one shared instance of persistent coordinate data exists, comprises:

determining that at least one shared instance of persistent coordinate data does not exist; and

displaying a non-colocated virtual object; and

determining whether more than one shared instance of persistent coordinate data exists, comprises:

determining that more than one shared instance of persistent coordinate data does not exist; and

displaying a colocated virtual object using a single shared instance of persistent coordinate data.

29 . The computer-implemented method of claim 21 , wherein, the preferred shared instance of persistent coordinate data is an instance of persistent coordinate data closed to an MR system.

30 . The computer-implemented method of claim 21 , wherein each MR system of the colocation session displays colocated virtual content relative to a closes instance of shared persistent coordinate data.

31 . A non-transitory, computer-readable medium storing one or more instructions executable by a computer system to perform one or more operations for mixed-reality (MR) collocation of virtual content, comprising:

joining, by a MR system, a colocation session;

transmitting, by the MR system, persistent coordinate data;

receiving, by the MR system, persistent coordinate data;

determining, by the MR system, whether at least one shared instance of persistent coordinate data exists;

determining, by the MR system, whether more than one shared instance of persistent coordinate data exists;

identifying, by the MR system, a preferred shared instance of persistent coordinate data of the more than one shared instance of the persistent coordinate data; and

displaying, by the MR system and using the preferred shared instance of persistent coordinate data, collocated virtual content.

32 . The non-transitory, computer-readable medium of claim 31 , wherein the MR system is invited to join an existing colocation session or the MR system initiates a new colocation system.

33 . The non-transitory, computer-readable medium of claim 31 , wherein the MR system also transmits and receives relational data.

34 . The non-transitory, computer-readable medium of claim 31 , wherein the MR system transmits the persistent coordinate data to other MR systems in the colocation session.

35 . The non-transitory, computer-readable medium of claim 31 , wherein the MR system transmits the persistent coordinate data to one or more remote servers, which transmit the persistent coordinate data to other MR systems in the colocation session.

36 . The non-transitory, computer-readable medium of claim 31 , wherein the MR system receives the persistent coordinate data from one or more MR systems in the colocation session.

37 . The non-transitory, computer-readable medium of claim 31 , wherein the MR system receives the persistent coordinate data which corresponds to one or more MR systems from one or more remote servers.

38 . The non-transitory, computer-readable medium of claim 31 , comprising:

determining whether at least one shared instance of persistent coordinate data exists, comprises:

determining that at least one shared instance of persistent coordinate data does not exist; and

displaying a non-colocated virtual object; and

determining whether more than one shared instance of persistent coordinate data exists, comprises:

determining that more than one shared instance of persistent coordinate data does not exist; and

displaying a colocated virtual object using a single shared instance of persistent coordinate data.

39 . The non-transitory, computer-readable medium of claim 31 , wherein:

the preferred shared instance of persistent coordinate data is an instance of persistent coordinate data closed to an MR system; or

each MR system of the colocation session displays colocated virtual content relative to a closes instance of shared persistent coordinate data.

40 . A computer-implemented system for mixed-reality (MR) collocation of virtual content, comprising:

one or more computers; and

one or more computer memory devices interoperably coupled with the one or more computers and having tangible, non-transitory, machine-readable media storing one or more instructions that, when executed by the one or more computers, perform one or more operations, comprising:

joining, by a MR system, a colocation session;

transmitting, by the MR system, persistent coordinate data;

receiving, by the MR system, persistent coordinate data;

determining, by the MR system, whether at least one shared instance of persistent coordinate data exists;

determining, by the MR system, whether more than one shared instance of persistent coordinate data exists;

identifying, by the MR system, a preferred shared instance of persistent coordinate data of the more than one shared instance of the persistent coordinate data; and

displaying, by the MR system and using the preferred shared instance of persistent coordinate data, collocated virtual content.

Assignments (2)
SECURITY INTEREST Recorded Nov 3, 2025
From: MAGIC LEAP, INC.; MENTOR ACQUISITION ONE, LLC; MOLECULAR IMPRINTS, INC.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 073480/0540 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2025
From: PEJSA, TOMISLAV; MORI, KOICHI; BAILEY, RICHARD
To: MAGIC LEAP, INC.
Reel/Frame 071439/0844 →