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    • 91. 发明申请
    • PHASE-COHERENT READ-OUT OF MRI SENSOR NODES
    • WO2022189233A1
    • 2022-09-15
    • PCT/EP2022/055330
    • 2022-03-03
    • KONINKLIJKE PHILIPS N.V.
    • VAN LIERE, FilipsERDIN, CumhurOUZOUNOV, Sotir, Filipov
    • G01R33/36
    • The invention relates to phase-coherent read-out of sensor nodes (3) of a magnetic resonance imaging system (1) with a digital serial communication network (2). According to the invention, the network (2) comprises multiple sensor nodes (3) for detecting a radio frequency signal from a patient who is under examination by the magnetic resonance imaging system (1), and a host node (4) which is connected to the sensor nodes (3) via a network link (5) for merging and processing digital sensor data received from the sensor nodes (3), wherein the host node (4) comprises a receiver (6) connected to the network link (5) for receiving data over the network link (5), and a transmitter (7) connected to the network link (5) for transmitting data over the network link (5), the sensor nodes (3) each comprise an analog-to-digital converter (8) for converting the detected radio frequency signal to the digital sensor data, a receiver (9) connected to the network link (5) for receiving data over the network link (5), a transmitter (10) connected to the network link (5) for transmitting data over the network link (5), and a clock and data recovery unit (11) with a clock device which is configured for running on a preset free-running frequency, the frequency of the data transmission over the network link (5) is set to a fixed frequency relative to the preset free-running frequency of the clock devices, and the clock and data recovery units (11) are configured for generating a recovered clock signal for controlling the analog-to-digital converter (8) of their sensor node by regulating the frequency of the clock device of their sensor node (3) to lock to the frequency of the data transmission over the network link (5). In this way, the possibility of phase coherent sensory data acquisition with a magnetic resonance imaging system (1) is provided in a robust and cost-efficient way.
    • 92. 发明申请
    • METHOD FOR ESTABLISHING A COMMUNICATION PATH BETWEEN A SUBJECT AND A RADIATION MEDICAL DEVICE
    • WO2022189168A1
    • 2022-09-15
    • PCT/EP2022/054767
    • 2022-02-25
    • KONINKLIJKE PHILIPS N.V.
    • VOGTMEIER, GereonBUSSA, NagarajuJOHNSON, Mark ThomasLEUSSLER, Christoph GüntherSREENIVASAN, RitheshWUELBERN, Jan HendrikSISODIA, Rajendra Singh
    • G16H40/63G16H80/00
    • A method for establishing and/or changing a communication path between a subject and a radiation medical device (20, 30) in real time during operation of the radiation medical device (20;30). The method comprises providing, by a data processing unit, a set of communication methods between the subject and the radiation medical device, wherein the communication methods of the set of communication methods differ from each other in terms of the used technology (S 10); transmitting, by the data processing unit, at least one test signal to the subject via at least one communication method of the set of communication methods (S20); receiving, by the data processing unit, at least one response signal from the subject in response to the test signal (S30); assessing, by the data processing unit, the at least one response signal by analyzing it and/or the test signal for one or more response indicators indicating whether the subject is responding to the test signal, and to derive an assessing result therefrom (S40); in case the assessing result is positive: selecting, by the data processing unit, the at least one communication method of the set of communication methods for establishing the communication path (S50); in case the assessing result is negative: transmitting, by the data processing unit, at least one further test signal to the subject via at least one further communication method of the set of communication methods, receiving, by the data processing unit, at least one further response signal from the subject in response to the at least one further test signal, assessing, by the data processing unit, the at least one further response signal by analyzing it and/or the test signal for one or more response indicators indicating whether the subject is responding to the test signal, and to derive a further assessing result therefrom, in case the further assessing result is positive, selecting the at least one further communication method of the set of communication methods for establishing the communication path (S60).
    • 97. 发明申请
    • CONTRAST BOOST BY MACHINE LEARNING
    • WO2022171845A1
    • 2022-08-18
    • PCT/EP2022/053452
    • 2022-02-14
    • KONINKLIJKE PHILIPS N.V.
    • GOSHEN, Liran
    • G06T5/00G06N3/04G06N3/08
    • A training system for a target machine learning model for image enhancement, and related methods. The system comprises a framework of two machine learning models (G1, G2) of the generative type, one such model (G1) being part of the target machine learning model. The training is based on a training data set including at least two types of training imagery, high image quality, IQ, imagery and low IQ imagery, the training input image (I̅) being one of the high IQ type. The generative network (G1) processes the training input image (I̅) of the high IQ type to produce a training output image (I) having reduced IQ. The target machine learning model (TM) further produces, based on the training output image (I) and the training input image (I̅) of the high IQ type, a second training output image (̿I). The second generator network (G2) estimates, from the second training output image (̿I), an estimate of the training input image of the high IQ type. A training controller (TC) adjusts parameters of the machine learning model framework, based a deviation between the estimate of the training input image of the high IQ type, and the said training input image (I̅) of the high IQ type.
    • 100. 发明申请
    • A COMB ATTACHMENT AND A KIT
    • WO2022167263A1
    • 2022-08-11
    • PCT/EP2022/051559
    • 2022-01-25
    • KONINKLIJKE PHILIPS N.V.
    • EIJKELKAMP, Marcus FranciscusDE VRIES, Alwin WilliamPETRELLI, Marcus CornelisHIN, Theodoor René MariaKINGMA, Pieter
    • B26B19/20B26B19/38
    • According to an aspect, there is provided a comb attachment for a blade system, the comb attachment comprising a rack component and a pinion assembly. The rack component is defined by one of a comb and a housing and comprises a rack. The housing is configured to attach to the blade system, and the pinion assembly comprises a pinion component defined by the other of the comb and the housing. The pinion assembly further comprises an axle retained by the pinion component, and a pinion disposed on the axle such that the pinion is rotatable with respect to the pinion component. The rack and the pinion are arranged to cooperate such that rotation of the pinion on the axle induces relative linear movement between the comb and the housing. The comb attachment comprises a locking mechanism configured to rotationally lock the pinion, comprising a protrusion on one of the pinion and the pinion component, and a notch on the other of the pinion and the pinion component, the protrusion and notch being configured to engage to lock the pinion to thereby prevent relative linear movement between the comb and the housing. The pinion is moveable between a locked position, in which the protrusion and the notch are engaged, and an unlocked position, in which the protrusion and the notch are disengaged. The pinion is biased away from the rack and towards the locked position, such that pushing the pinion towards the rack and the unlocked position causes disengagement of the notch and protrusion to permit rotation of the pinion.