Claims
- 1. A method of monitoring an individual for the occurrence of a particular sleep state condition of the individual, comprising:
applying an external probe to an external surface at a peripheral body location on the individual's body for monitoring the peripheral vascular bed volume of the individual at said peripheral body location while applying a predetermined pressure field to the distal end of said peripheral body location, including its distal-most extremity, so as to prevent the occurrence of venous pooling within said peripheral body location, and thereby to produce an output from the probe corresponding to changes in the peripheral arterial bed volume at said peripheral body location; while the individual is in a sleep state, utilizing said probe to detect changes in the peripheral vascular bed volume of the individual at said peripheral body location and to produce an output corresponding thereto; and determining the sleep state condition of the individual according to the output of said external probe.
- 2. The method according to claim 1, wherein said particular sleep state condition is determined as occurring when a predetermined change of the probe output is detected or when a predetermined change in the time course of the response pattern of the probe output is detected.
- 3. The method according to claim 2, wherein changes in the individual's pulse rate and/or pulse amplitude are also monitored while the individual is in the sleep state, and such changes are used with said detected amplitude time course response pattern changes in determining the sleep state condition of the individual.
- 4. The method according to claim 1, wherein said pressure field is extended for a distance from said monitoring site towards the heart side of said peripheral body location such as to prevent the occurrence of venous pooling also thereat.
- 5. The method according to claim 4, wherein said external probe measures changes in the peripheral arterial tone at said peripheral body location.
- 6. The method according to claim 1, wherein said peripheral body location of the individual is a finger., toe or ear lobe of the individual.
- 7. The method according to claim 1, wherein said external probe is a volume measuring device.
- 8. The method according to claim 1, wherein said external probe is an optical density measuring device.
- 9. The method according to claim 1 wherein said particular condition is an arousal during the sleep state, and is indicated at least by a predetermined attenuation in the probe output.
- 10. The method according to claim 9, wherein the time intervals between attenuations in the probe output are also used to determine the sleep state condition of the individual.
- 11. The method according to claim 1, wherein said particular condition is an apnea event and is indicated at least by a predetermined attenuation in the probe output.
- 12. The method according to claim 1, wherein said particular condition is a hypopnea event and is indicated at least by a predetermined attenuation in the probe output.
- 13. The method according to claim 1, wherein said particular condition is an upper airway resistance syndrome (UARS) event and is indicated at least by a predetermined attenuation in the probe output.
- 14. The method according to claim 1, wherein said particular condition is a Cheyne-Stokes breathing pattern and is indicated at least by predetermined attenuations in the probe output.
- 15. The method according to claim 1, wherein said particular condition is a REM (rapid eye movements) sleep stage condition and is indicated at least by predetermined attenuations in the probe output.
- 16. The method according to claim 1, wherein the time intervals between attenuations in the probe output are used to distinguish between arousals related to periodic leg movement syndrome (PLMS) and arousals related to disordered breathing events during sleep.
- 17. The method according to claim 1, wherein the blood oxygen saturation level of the individual is also monitored to produce an output which is used with the output of said external probe to determine the sleep state condition of the individual.
- 18. The method according to claim 1, wherein, the oral-nasal airflow of the individual is also monitored to produce an output which is used with the output of said external probe to determine the sleep state condition of the individual.
- 19. The method according to claim 1, wherein, the ECG pulse of the individual is also monitored to produce an output which is used with the output of said external probe to determine the sleep state condition of the individual and particularly the Pulse Transition Time (PTT).
- 20. The method according to claim 1, wherein changes in the pulse rate and/or pulse amplitude or its time course of the individual are also monitored and used to determine the sleep state condition of the individual.
- 21. The method according to claim 1, wherein:
the individual is an adult male suffering from a functional impotence condition; while the individual is in said sleep state condition, a penile tumescence or rigidity monitoring device is utilized to also detect nocturnal penile erections and to produce an output corresponding thereto; and the outputs of said probe and said penile tumescence monitoring device are utilized in determining whether the impotence condition of the individual is more likely due to an organic cause or a psychogenic cause.
- 22. The method according to claim 1, wherein: the individual is a diabetic patient and the output of said probe is utilized in indicating the probable occurrence of abrupt changes in the glucose level of the patient.
- 23. The method according to claim 1, wherein the individual is a child, and the output of said probe is utilized in detecting a potential obstructive sleep apnea (OSA) condition in the child.
- 24. The method according to claim 1, wherein the individual is a child suffering from Attention Deficit Hyperactive Disorder (ADHD) condition, and the output of said probe is utilized in diagnosing the cause of said AHDH condition of the child.
- 25. The method according to claim 1, wherein the individual is a child, and the output of said probe is utilized in detecting a silent nocturnal asthma condition in the child.
- 26. The method according to claim 1, wherein the individual is a child, and the output of said probe is utilized in distinguishing between sleep terrors and nightmares.
- 27. A method of producing information helpful in diagnosing the cause of a functional impotence condition in a male patient, comprising:
monitoring penile tumescence and/or rigidity of the patient while sleeping to detect nocturnal penile erections; monitoring the sleep state condition of the patient while sleeping to detect frequency of awakenings, episodes of apnea, and/or RFM sleep stages; and utilizing information obtained by said monitoring operations to aid in determining whether the functional impotence condition in the patient is more likely due to an organic cause or to a psychogenic cause.
- 28. The method according to claim 27, wherein said monitoring of the sleep state condition of the patient includes monitoring changes in the peripheral arterial tone of the patient while sleeping.
- 29. The method according to claim 28, wherein said sleep state condition of the patient is monitored while applying a near diastolic pressure over the surface of a finger or toe of the patient to reduce the transmural pressure within the arteries in the finger or toe, thereby freeing the arterial walls of tension and preventing pooling of venous blood in the finger or toe; said near diastolic pressure being applied to extend to the distal end of the finger or toe such as to provide a contiguous buffer region proximal to the site where changes in the peripheral vascular system are detected.
- 30. The method according to claim 28, wherein said peripheral arterial tone is monitored by measuring changes in volume in the patient's finger or toe.
- 31. The method according to claim 28, wherein said peripheral arterial tone is monitored by measuring optical changes in the patient's finger or toe.
- 32. The method according to claim 27, wherein said monitoring of the sleep state condition of the patient includes monitoring the sleep/wake states of the patient.
- 33. The method according to claim 27, wherein said monitoring of the sleep state condition of the patient includes monitoring changes in the blood oxygen saturation level of the patient while sleeping.
- 34. The method according to claim 27, wherein said monitoring of the sleep state condition of the patient includes monitoring changes in the oral or nasal airflow of the patient while sleeping.
- 35. The method according to claim 27, wherein said monitoring of the sleep state condition of the patient includes monitoring changes in the ECG signals of the patient while sleeping.
- 36. A method of monitoring the glucose level condition of a diabetic patient, comprising:
while the patient is sleeping, monitoring the sleep state condition of the patient; and utilizing the results of sleep state monitoring operation in indicating the probable occurrence of abrupt changes in the blood glucose level.
- 37. The method according to claim 36, wherein said monitoring of the sleep state condition of the patient includes monitoring changes in the peripheral vascular system of the patient while sleeping.
- 38. The method according to claim 37, wherein said monitoring of the sleep state condition of the patient includes monitoring the peripheral arterial tone of the patient while applying a near diastolic pressure over the surface of a finger or toe of the patient to reduce the transmural pressure within the arteries in the finger or toe, thereby freeing the arterial walls of tension and preventing pooling of venous blood in the finger or toe; said near diastolic pressure being applied to extend to the distal end of the finger or toe such as to provide a contiguous buffer region proximal to the site where changes in the peripheral vascular system are detected.
- 39. The method according to claim 38, wherein said peripheral arterial tone is monitored by measuring changes in volume in the patient's finger or toe.
- 40. The method according to claim 38, wherein said peripheral arterial tone is monitored by measuring optical density changes in the patient's finger or toe.
- 41. Apparatus for monitoring an individual to detect the occurrence of a particular condition during the sleep state of the individual, comprising:
an external probe to be applied to an external surface at a peripheral body location on the individual's body for monitoring the peripheral vascular bed volume of the individual at said peripheral body location; said external probe including a pressure applicator for applying a predetermined pressure field to the distal end of said peripheral body location including its distal-most extremity to reduce venous pooling and thereby to produce an output signal from the probe corresponding to changes in the peripheral arterial bed volume at said peripheral body location; and a processor for processing said output signal from the probe and for producing a signal indicating said particular sleep state condition when a predetermined change in the output of said probe is detected.
- 42. The apparatus according to claim 41, wherein said signaling device produces a signal indicating said sleep state condition when a predetermined change of the probe output is detected or when a predetermined change in the time course of the response pattern of the probe output is detected.
- 43. The apparatus according to claim 42, wherein said signaling device produces a signal indicating said sleep state condition when a predetermined time interval between attenuations is also detected.
- 44. The apparatus according to claim 42, wherein said signaling device produces a signal indicating said sleep state condition when a predetermined change in the pulse rate and/or pulse amplitude is also detected.
- 45. The apparatus according to claim 41, wherein said probe extends said pressure field for a distance from the signaling device towards the heart side of said peripheral body location such as to prevent the occurrence of venous pooling also thereat.
- 46. The apparatus according to claim 41, wherein said external probe measures changes in the peripheral arterial tone at said peripheral body location.
- 47. The apparatus according to claim 41, wherein said peripheral body location of the individual is a finger, toe or ear lobe of the individual.
- 48. The apparatus according to claim 41, wherein said external probe is a volume measuring device capable of providing an index related to volume.
- 49. The apparatus according to claim 41, wherein said external probe is an optical density measuring device.
- 50. The apparatus according to claim 41, wherein the apparatus further includes a pulse oximeter for monitoring the blood oxygen saturation level of the individual to produce an output which is used by said processor with said external probe output to indicate the sleep state condition of the individual.
- 51. The apparatus according to claim 41, wherein the apparatus further includes an oral-nasal airflow sensor for monitoring the oral-nasal airflow of the individual to produce an output which is used by said processor with said external probe output to indicate the sleep state condition of the individual.
- 52. The apparatus according to claim 41, wherein said individual is an adult male suffering from a functional impotence condition, and said apparatus further comprises: a penile tumescence or rigidity monitoring device for detecting nocturnal penile erections and for producing an output corresponding thereto, said probe and monitoring device outputs being helpful in diagnosing the cause of said functional impotence condition.
- 53. The apparatus according to claim 41, wherein said individual is a diabetic patient, and said processor processes the output of said probe to indicate the probable occurrence of abrupt changes in the blood glucose level of the patient.
- 54. Apparatus for producing information helpful in diagnosing the cause of a functional impotence condition in a male patient, comprising:
a penile tumescence or rigidity monitoring device for monitoring penile tumescence and/or rigidity of the patient while sleeping to detect nocturnal penile erections, and for producing an output corresponding to said detected nocturnal penile erections; a sleep state monitoring device for monitoring the sleep state condition of the patient while sleeping to detect frequency of awakenings, episodes of apnea, and/or REM (rapid eye movement) sleep stages, and for producing an output corresponding to said detected sleep state condition; and a processor for receiving and processing the outputs of said monitoring devices, and for producing an output indicative of detected nocturnal penile erections with respect to said detected sleep state condition to aid in determining whether the functional impotence condition in the patient is more likely due to an organic cause or to a psychogenic cause.
- 55. The apparatus according to claim 54, wherein said sleep state monitoring device includes an external probe to be applied to a peripheral body location of the patient, which probe measures changes in the peripheral vascular bed volume at the peripheral body location of the patient while sleeping.
- 56. The apparatus according to claim 55, wherein said external probe is to be applied to a finger or toe of the patient and includes a pressure applicator for applying a near diastolic pressure over the surface of the finger or toe to reduce the transmural pressure within the arteries in the finger or toe, thereby freeing the arterial walls of tension, and preventing pooling of venous blood in the finger or toe; said pressure applicator extending the pressure field to the distal end of the finger or toe to provide a contiguous buffer region proximal to the detector site.
- 57. The apparatus according to claim 55, wherein said external probe is a volume measuring device.
- 58. The apparatus according to claim 55, wherein said external probe is an optical density measuring device.
- 59. The apparatus according to claim 55, wherein said sleep state monitoring device includes a sleep/wake detector for detecting the sleep/wake states of the patient.
- 60. The apparatus according to claim 55, wherein said sleep state monitoring device includes a pulse oximeter for detecting changes in the blood oxygen saturation level of the patient while sleeping.
- 61. The apparatus according to claim 55, wherein said sleep state monitoring device includes an airflow detector for detecting changes in the oral or nasal airflow of the patient while sleeping.
- 62. The apparatus according to claim 55, wherein said sleep state monitoring device includes an ECG electrode for detecting changes in the ECG signals of the patient while sleeping.
- 63. The apparatus according to claim 55, wherein said sleep state monitoring device includes an ECG electrode for detecting cardiac cycle events derived from the ECG signals of the patient while sleeping; and means for determining the time interval between said cardiac cycle related events and arrival time of pulse wave at the peripheral measurement site for determining the pulse transition time (PTT).
- 64. The apparatus according to claim 63, wherein means for determining the time interval between said cardiac cycle related events and arrival time of pulse wave at the peripheral measurement site for determining the pulse transition time (PTT) also tracks the time course of said PTT.
- 65. Apparatus for monitoring the glucose level condition of a diabetic patient, comprising: a sleep state monitoring device for monitoring the sleep state condition of the patient while sleeping, and for producing an output corresponding thereto;
and a processor for receiving and processing the output of said monitoring device, and for producing an output indicating the probable occurrence of abrupt changes in the blood glucose level of the patient.
- 66. The apparatus according to claim 65, wherein said sleep state monitoring device includes an external probe to be applied to a peripheral body location of the patient, which probe measures changes in the peripheral vascular bed volume at the peripheral body location of the patient while sleeping.
- 67. The apparatus according to claim 66, wherein said external probe is to be applied to a finger or toe of the patient and includes a pressure applicator for applying a near diastolic pressure over the surface of the finger or toe to reduce the transmural pressure within the arteries in the finger or toe, thereby freeing the arterial walls of tension, and preventing pooling of venous blood in the finger or toe; said pressure applicator extending the pressure field to the distal end of the finger or toe to provide a contiguous buffer region proximal to the detector site.
- 68. The apparatus according to claim 66, wherein said external probe is a volume measuring device.
- 69. The apparatus according to claim 66, wherein said external probe is an optical density measuring device.
- 70. The method according to claim 1, wherein said peripheral body location of the individual is a superficial skin region of the individual's body surface.
- 71. The method according to claim 2, wherein said predetermined change of the probe output or said predetermined change in the time course of the response pattern of the probe output is derived from a series of pulse waves for determining the sleep state condition of the individual.
- 72. The method according to claim 2, wherein changes in the individual's pulse rate and/or pulse amplitude are also monitored while the individual is in the sleep state, and such changes are used together with said detected amplitude time course response pattern changes wherein pulse rate and pulse amplitude changes are derived from a series of pulse waves for determining the sleep state condition of the individual.
- 73. The method according to claim 2, wherein said predetermined change of the probe output or said predetermined change in the time course of the response pattern of the probe output is derived from the variability of a series of pulse waves for determining the sleep state condition of the individual.
- 74. The method according to claim 2, wherein changes in the individual's pulse rate and/or pulse amplitude are also monitored while the individual is in the sleep state, and such changes are used together with said detected amplitude time course response pattern changes wherein pulse rate and pulse amplitude changes are derived from the variability of a series of pulse waves for determining the sleep state condition of the individual.
- 75. The method according to claim 1, wherein said particular condition is arousals or respiratory disorders in a CPAP treated patient.
- 76. The condition described in claim 75, wherein said output of the external probe is also used differentiates between respiratory and non-respiratory arousals.
- 77. The apparatus of claim 41, further comprising means for activating or de-activating of the said pressure applicator for applying a predetermined pressure field to the distal end of the peripheral body location of the external probe, wherein said activating or de-activating means are situated at the site of the said external probe itself.
Priority Claims (1)
Number |
Date |
Country |
Kind |
PCT/IL01/00199 |
Mar 2001 |
US |
|
RELATED APPLICATIONS
[0001] This application is the U.S. National Entry of International Application PCT/IL01/00199 filed Mar. 1, 2001, published as WO 01/64101 on Sep. 7, 2001. This application also includes subject matter, and also claims the priority dates, of U.S. Provisional Applications 60/305,197 filed Jul. 16, 2001, and U.S. Provisional Application No. 60/368,136 filed Mar. 29, 2002, the contents of which Provisional Applications are incorporated herein by reference in their entireties.
Provisional Applications (2)
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Number |
Date |
Country |
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60305197 |
Jul 2001 |
US |
|
60368136 |
Mar 2002 |
US |