Abstract:
Disclosed herein are systems, methods, and non-transitory computer-readable storage media for selectively transcribing messages. Five general approaches are disclosed herein. The first approach is directed to checking for a transcription capable client, which transcribes messages when a client device is capable of receiving transcriptions. The second and third approaches are platform-controlled and user-controlled predefined selective transcription. One aspect of this approach is driven by transcription rules. The fourth approach is user-controlled on-demand selective transcription before the message is stored or deposited for transcription. An example of this is a user transferring an incoming caller to voicemail and indicating that the voicemail be transcribed. The fifth approach is user-controlled on-demand selective transcription after the message is stored. In one embodiment of this approach, a user must specifically request that a stored message be transcribed.
Abstract:
Profile information and other information about users are received from information sources into a unified messaging platform. Multimedia messages and files for users are converted to text using approximation algorithms. Text and multimedia messages and files for users are analyzed using confidence scores and thresholds. Profile information, file keyword information and message keyword information are used to identify and transmit a limited amount of information about users to information consumers and content service providers. Information consumers and content service providers can customize their content that is presented to users.
Abstract:
A method and apparatus for forwarding of fax calls to a messaging service are disclosed. For example, the method receives a call and rings one or more endpoint devices. The method detects an off-hook condition for the one or more endpoint devices and detects a fax tone in the call. The method then informs a network to forward the call towards a messaging service.
Abstract:
A secure payment method includes receiving, at a computer of a payment service, a request from a requester for a one time use transaction identification token for a transaction. The one time use transaction identification token is provided from the payment service computer to the requester. The one time use transaction identification token is received at the payment service from a merchant communications apparatus under the control of a merchant. Electronic payment information for the transaction is issued from the payment service to the merchant upon validating the one time use transaction identification token.
Abstract:
Disclosed herein are systems, methods, and non-transitory computer-readable storage media for communicating information about transcription progress from a unified messaging (UM) server to a UM client. In one embodiment, the transcription progress describes speech to text transcription of speech messages such as voicemail. The UM server authenticates and establishes a session with a UM client, then receives a get message list request from a UM client as of a first time, responds to the get message list request with a view of a state of messages and available transcriptions for transcribable messages in a list of messages associated with the get message list call at the first time, and, at a second time subsequent to the first time, transmits to the UM client a notification that provides an indication of progress for at least one transcription not yet complete in the list of messages. The messages can include video.
Abstract:
A secure payment method, system or computer readable medium for a merchant's interactive voice response system are disclosed. The merchant's interactive voice response system receives customer calls and requests a payment from the customer. The customer responds to the request by providing over a data network authentication information and payment amounts for a payment service. The payment service provides the customer with a token which is communicated to the merchant's interactive voice response system, and the merchant's interactive voice response system transmits the token back to the payment service. Upon validating the token, the payment service issues an electronic payment or payment information to the merchant. The merchant's interactive voice response system announces a successful payment to the customer.
Abstract:
The invention relates to lithium metal/porous metal oxide compositions. These lithium metal compositions are prepared by mixing liquid lithium metal with a porous metal oxide in an inert atmosphere under exothermic conditions sufficient to absorb the liquid lithium metal into the porous metal oxide pores. The lithium metal/porous metal oxide compositions of the invention are preferably loaded with lithium metal up to about 40% by weight, with about 20% to 40% by weight being the most preferred loading. The invention also relates to lithium reagent-porous metal oxide compositions having RLi absorbed into a porous oxide. In formula RLi, R is an alkyl group, an alkenyl group, an alkynyl group, an aryl group, an alkaryl group, or an NR1R2 group; R1 is an alkyl group, an alkenyl group, an alkynyl group, an aryl group, an alkaryl group; and R2 is hydrogen, an alkyl group, an alkenyl group, an alkynyl group, an aryl group, and an alkaryl group. The preparation and use of these compositions are also described.
Abstract:
The invention relates to lithium metal/porous metal oxide compositions. These lithium metal compositions are prepared by mixing liquid lithium metal with a porous metal oxide in an inert atmosphere under exothermic conditions sufficient to absorb the liquid lithium metal into the porous metal oxide pores. The lithium metal/porous metal oxide compositions of the invention are preferably loaded with lithium metal up to about 40% by weight, with about 20% to 40% by weight being the most preferred loading. The invention also relates to lithium reagent-porous metal oxide compositions having RLi absorbed into a porous oxide. In formula RLi, R is an alkyl group, an alkenyl group, an alkynyl group, an aryl group, an alkaryl group, or an NR1R2 group; R1 is an alkyl group, an alkenyl group, an alkynyl group, an aryl group, an alkaryl group; and R2 is hydrogen, an alkyl group, an alkenyl group, an alkynyl group, an aryl group, and an alkaryl group. The preparation and use of these compositions are also described.
Abstract translation:本发明涉及锂金属/多孔金属氧化物组合物。 这些锂金属组合物通过在惰性气氛中将液态锂金属与多孔金属氧化物混合,在足以将液态锂金属吸收到多孔金属氧化物孔中的放热条件下来制备。 本发明的锂金属/多孔金属氧化物组合物优选负载高达约40重量%的锂金属,其中最优选的负载量为约20重量%至40重量%。 本发明还涉及具有吸收到多孔氧化物中的RLi的锂试剂多孔金属氧化物组合物。 在式RLi中,R是烷基,烯基,炔基,芳基,烷芳基或NR 1 R 2 O 2基; R 1是烷基,烯基,炔基,芳基,烷芳基; R 2是氢,烷基,烯基,炔基,芳基和烷芳基。 还描述了这些组合物的制备和用途。