“h) Trial-and-error, and continuous closed-loop automatic control systems (including PID systems) have [e]stablished definitions in the art, are fundamentally different, function on the basis of very different principles, and cannot be combined. Claiming that they can be combined as done in [Professor Rees’ first report], is against scientific principles, is erroneous, and misleads the court.”
“[0005] Some of the prior art on this subject is focused on controlling the patient’s oxygenation, and some is intended to automatically control the breathing frequency and tidal volume. The systems intended for controlling only the oxygen level of the patient on the ventilator, either do not provide the automation of all factors that affect oxygenation and/or they do not provide a reliable and sufficiently robust response against oxygen disturbance.”
“[0007] In one embodiment, the present invention describes a method and apparatus that can reliably and robustly control PEEP (or CPAP) and FiO 2. These are novel features which significantly improve the oxygenation of patients during ventilatory therapy provided by mechanical ventilators as well as respiratory devices such as CPAP machines.”
“1A An apparatus for automatically controlling a ventilator comprising: 1B first means for processing data indicative of at least a measured oxygen level of a patient, and for providing output data indicative of: 1C required concentration of oxygen in inspiratory gas of the patient (FiO 2) and positive end-expiratory pressure (PEEP) for a next breath of the patient; 1D wherein FiO 2 is determined to reduce the difference between the measured oxygen level of the patient and a desired value; 1E wherein PEEP is determined to keep a ratio of PEEP/FiO 2 within a prescribed range and, while keeping the ratio within the prescribed range, to keep the measured oxygen level of the patient above a predefined value; and 1F second means, operatively coupled to the first means, for providing control signals, based on the output data provided by the first means, to the ventilator; 1G wherein the control signals provided to the ventilator automatically control PEEP, and FiO 2, for a next breath of the patient.”
“45A An apparatus for automatically controlling a ventilator comprising: 45B (a) means for providing data indicative of the measured oxygen level of the patient; 45C (b) means for providing data indicative of the measured carbon dioxide level of the patient; 45D (c) means for providing data indicative of respiratory elastance, and respiratory airway resistance of the patient; 45E (d) a programmable controller storing executable instructions that when executed perform the steps of: 45F (I) determining, from the data indicative of the measured oxygen level of the patient provided by (a), a required concentration of oxygen in an inspiratory gas of the patient, FiO 2, to reduce a difference between the measured oxygen level of the patient and a desired value, and providing a data signal indicative of the required FiO 2; 45G (II) determining a required positive end-expiratory pressure, PEEP, and providing a data signal indicative of the required PEEP, wherein the required PEEP maintains a ratio of PEEP/ FiO 2 within a prescribed range, and while the ratio is maintained within the prescribed range, to keep the measured oxygen level of the patient above a predefined value; 45H (III) determining, based upon the data provided by (a), (b), and (c), an optimal breathing frequency, a required ventilation, and a required adjustment in inspiration to expiration time ratio, I:E, for a next breath of the patient, and providing data signals indicative of the same; and, 45I (e) means for providing to the ventilator, based upon the data signals provided by (I), (II) and (III), final data signals for automatically controlling: (i) the required FiO2, the required PEEP, (iii) the optimal breathing frequency, (iv) the required ventilation, (v) the required adjustment in I:E ratio, for a next breath of the patient.”
“167. The claim does not require determination (whether by setting or calculation) of the PEEP/FiO 2 ratio, only that PEEP is determined to keep the ratio within a range. The skilled person would appreciate that if one is presented with values for PEEP and FiO2 then the ratio between them is also known, therefore, prescribing PEEP and FiO2 values also prescribes the ratio (and, naturally, if one has values for the ratio and one of PEEP or FiO 2 then the missing term is still ‘known’ as it is defined by the relationship between them). This means that when PEEP and FiO2 are controlled in relation to one another the ratio between them is controlled. In my opinion, determining PEEP to maintain the ratio of PEEP and FiO2 within a prescribed range, in practice, would be satisfied by a system that manages patient oxygenation within thresholds or set limits, reflecting clinically desirable values of PEEP and FiO 2. This could be achieved by setting PEEP and FiO 2 according to values held in a table or database. In such a system the PEEP/FiO 2 ratio of the desirable values will inevitably be within a set (or prescribed) range of ratios, despite the ratio not actually being calculated as part of the control program. The claim would also be satisfied by a system that simply calculates the PEEP/FiO 2 ratio and compares this to a predetermined maximum and minimum value but I do not think the claim is limited to such a system.”
“[0052] After the determination of the required FiO 2, the procedure of adjusting the PEEP value is started at F in step 282. In this step, the ratio of PEEP/FiO 2 is calculated.”
“213. Anderson discloses a system that determines whether PEEP, FiO2, both or neither should be adjusted based on their relationship to one another as illustrated by the tables in Figure 3 of Anderson. The look-up tables illustrated in Figure 3 are arranged such that change in PEEP moves the settings within a clinically acceptable range towards preferred combinations of PEEP and FiO2 values and therefore the ratio between them. The spread of ratios that would trigger a change in PEEP and FiO2 is quite broad in the table for ‘Threatening’ status; this makes sense as the adjustment is designed to get the patient ‘out of trouble’ and hence it is appropriate that adjustment of both parameters takes place in the majority of cases.”
“98. Look up tables such as the table used in PEFIOS (Figure 1 of Waisel 1995 shown in paragraph 93) are mainly designed for manual use. When these tables are implemented in a computer, the resulting software is a semi-manual, trial and error tool for intermittent adjustment of parameters. Such a system is profoundly different from a continuous closed-loop control system. The system of the Patent and the Intellivent-ASV are continuousclosed-loop control systems that cannot be combined with a semi-manual look uptable referred to as PEFIOS.”
“In the manual control mode, the minute ventilation and the frequency of every breath or alternatively the positive end expiratory pressure ‘peep’ is specified for the respirator by an operator. The end expiratory pressure may also be continuously monitored by additional sensors through the reserved channels of the A/D converter. A system reset is required to restart the controller.”